Tampilkan postingan dengan label aquaculture. Tampilkan semua postingan
Tampilkan postingan dengan label aquaculture. Tampilkan semua postingan

Kamis, 23 Juni 2016

Environment

,


Quality of life for the planet


Need for high quality water and other resources


Clean water is the primary pre-requisite to successful aquaculture. A clean environment is therefore critical for its commercial success. Any environmental impact that would compromise the quality of the water used on fish farms must be monitored and minimised through appropriate siting (choice of locations) of farms and production processes.

 In recent years, the development of aquaculture has raised some associated environmental concerns. Like any farming operation on land, fish farm cages produce waste materials. These fall into three categories - uneaten feed, fish faeces and dead fish. Most of the environmental impacts of aquaculture can be managed and minimised through understanding of the processes involved, responsible management and the effective siting of farms.

 Uneaten feed - Should uneaten feed reach the bottom of a cage, processes that break it down can reduce the amount of oxygen in the sediment. In severe cases, oxygen levels in the water above may also decrease, creating "anoxic" conditions in which only a few animal species can survive. Should the feed contain antibiotics used to treat the farmed fish above, bacteria in the sediment and the natural breakdown of waste material might be affected.

In practice, fish farmers do everything they can to prevent such a situation, since the cost of fish feed amounts up to 40 percent of the total production cost. Feed reaching the sediment is lost, and it is in the farmers interest to minimise such waste. On well-managed farms, feeding is carefully regulated to ensure that the maximum amount of food is taken up directly by the fish and farmers aim to ensure that less than 5 percent of the feed is wasted. To improve uptake by fish, feed pellets are manufactured to either float or to sink slowly through the water.

Fish faeces - Unlike land animals, fish do not generally produce compact solid faecal material and more often excrete a loose cloud of faecal material that is easily dispersed by water currents. In still conditions, however, faecal material can build up beneath fish cages. It is, however, not in the farmers interest to let this happen, since the buildup of faecal material can lead to anoxic conditions which affect the fish above. Fish farmers wanting to ensure the health of their fish will frequently check the bottom below their fish cages to ensure that faecal material is not building up. In addition, in many EU Member States, the government employs diving teams to carry out inspections.
If faecal build-up is observed, farmers will be advised to move their cages, allowing the bottom to recuperate for a short period, however full recovery typically takes between three to ten years. In recent years, improved feed formulations have also been introduced that fish digest more efficiently, producing less waste.

Fish farmers generally avoid overly sheltered and stagnant sites, preferring areas that contain a healthy flow of water through the cages. Such flows disperse fish faeces so it can enter the natural food chain.

Dead fish - Dead fish are a loss to the farmer and a potential health hazard to the stock as well as a source of pollution. Fish farmers will, at all times, endeavour to minimise the number of dead fish on their farms and to remove such mortalities where they occur.

Fish farms are required to report significant fish deaths when they occur and are inspected by state agencies at least twice a year.

Shellfish cultivation

Shellfish such as oysters, mussels and clams are filter feeders and take their food directly from the water in which they live. This means that they do not require supplementary food and, if anything, actually improve the quality and clarity of the water. Shellfish farming can only provide the best quality products if practiced in pristine environments with the highest water quality.

Environmental problems can arise on shellfish farms where the animals are held at overly high densities, leading to depletion of food in the water and build-up of faeces below the holding areas. Both effects will harm the outcome for the farmer and hence shellfish farms are generally sited where water exchange is high and the stock is kept at densities that are compatible with the level of water exchange. In many cases, stocking densities on farms are lower than those of clusters of shellfish (e.g. mussels) that occur on natural beds.

Shellfish farms have been thought to disturb wildlife habitats by taking up space on a beach where wading birds feed. It has been shown, however, that wading birds and oyster farms can exist side by side. The fallen oyster or mussel can have a positive impact on a birds feeding pattern.

Other potential impacts include the importation of parasites, pests and diseases onto the shellfish farm which would then spread to other areas. The microscopic oyster parasite Bonamia ostrea, for example, gradually spread through Europe with the spread of oyster farming. Oyster farmers have responded by significantly reducing the density at which their shellfish are farmed.

Some people complain of "visual pollution" caused by large numbers of floating barrels or shellfish trestles in otherwise unspoilt areas. Low-profile and dark-coloured floats have recently been developed to minimise the visual impact.

Pond fish farming

Fish pond systems represent the oldest fish farming activity in Europe, at least dating back to medieval times. Ponds were built in areas where water supply was available and the soil was not suitable for agriculture. The wetlands of Central and Eastern Europe are good examples of this. The total European production from pond farming is approximately 475,000 tonnes. About half of this production is cyprinid fish, such as common carp, silver carp and bighead carp. The main producer countries are the Russian Federation, Poland, Czech Republic, Germany, Ukraine and Hungary.


pondfarming_600.jpg

Typical fish ponds are earthen enclosures in which the fish live in a natural-like environment, feeding on the natural food growing in the pond itself from sunlight and nutrients available in the pond water.

In order to reach higher yields, farmers today introduce nutrients into the pond such as organic manure. This is accompanied by stocking of fingerlings and by water being flushed through the pond. Fish pond production, however, remains ‘extensive or ‘semi-intensive (with supplementary feeding) in most countries, where semi-static freshwater systems play an important role in aquaculture. Chemicals and therapeutics are not usually used in such ponds. Hence the main environmental issue is the use of organic fertilisers, which may cause eutrophication in the surrounding natural waters. The use of organic fertilisers is regulated at national levels.

Extensive fish ponds are usually surrounded by reed belts and natural vegetation, thus providing important habitats for flora and fauna. They play a growing role in rural tourism. Many pond fish farms have been turned into multifunctional fish farms, where various other services are provided for recreation, maintenance of biodiversity and improvement of water management.

In areas where water is scarce, some farm systems recirculate, treat and re-use their water. Such systems are generally self-contained and therefore pose little threat to the environment. Solid waste material produced in such systems is rich in organic compounds and often used as a fertilizer elsewhere. Alternatively, new hydroponic systems have been developed to grow vegetables and other food crops in the nutrient-enriched water. There is much interest in these systems, but their economic viability remains challenging.

Trout farming in flow-through systems

 The most widely-practiced form of inland aquaculture in Europe is trout farming. Water is taken from the river, circulated through the farm and treated before being released downstream. All water in the farm is renewed at least once per day. Where more than one farm exists on the same river, it is in everyones interests that the quality of the outflowing water from one farm is good, as this then becomes the inflowing water for the next farm. Other water sources include spring water or drilled and pumped ground water. In some countries, heated industrial water sources (such as electricity generating plants) are used to increase the water temperature (by heat exchange)
used in the farm, thereby saving energy costs to heat the water. Geothermal water also provides naturally warmed water, thus allowing the farming of new fresh water species (especially eel, sturgeon, perch and tilapia) with low environmental impact.


trout farm


Recirculation Aquaculture Systems


Recirculation Aquaculture Systems (RAS) are land-based systems in which water is re-used after mechanical and biological treatment so as to reduce the needs for water and energy and the emission of nutrients to the environment. These systems present several advantages such as: water and energy saving, a rigorous control of water quality, low environmental impacts, high biosecurity levels and an easier control of waste production as compared to other production systems. The main disadvantages are high capital costs, high operational costs, requirements for very careful management (and thus highly skilled labour forces) and difficulties in treating disease. RAS is still a
small fraction of Europes aquaculture production and has its main relevance in The Netherlands and Denmark. The main species produced in RAS are catfish and eel but other species are already being produced using this type of technology such as turbot, sea bass, pikeperch, tilapia and sole.

recirculation


Other environmental impacts of fish farming - the case of escaped fish

It is inevitable that fish farmed in net pens in either fresh or salt water will sometimes escape into the wild. In some cases, there will be a small but steady release of fish. Sometimes, large numbers will escape due to severe damage to the net pen by way of storms, predator attacks or vandalism.

 There has been vigorous debate on the potential impact of escaped farmed fish, in particular salmon, on wild populations. On the one hand, it has been suggested that escaped farmed salmon could compete for living space, breeding partners and food resources, spread disease, or interbreed with wild fish, causing "genetic pollution" and thereby weakening the wild strain and reducing its ability to survive . On the other hand, scientists have argued that farmed salmon, which are bred for fast growth in perfect conditions, are less able to compete for food, territory and mate in the wild than their wild colleagues. Therefore, a limited escape of farmed fish would be unlikely to have a serious effect on wild fish populations. Only if very large numbers of fish escape into a small area, would interbreeding occur and the fitness of the local population potentially be reduced.

 In its Aquaculture Europe 2005 conference, the European Aquaculture Society invited the North Atlantic Salmon Conservation Organisation (NASCO) to hold a special workshop on the interactions between wild and farmed salmon. The summary report of this event "Wild and Farmed Salmon - Working Together" drew the following main conclusions:

Through the use of single bay management, single generation sites and synchronised fallowing, real progress is being made in relation to minimising impacts of diseases and parasites, which are key issues for wild fish interests. The development of third-party audited containment management systems may represent a significant step forward. The liaison group should look more at the possibilities of rearing all-female triploid salmon, which could eliminate genetic interaction with the wild stocks, but which need to be balanced by the production cost of these fish, as well as consumer resistance to what could be seen as genetic manipulation.

Restoration programmes can benefit from fish farmers expertise, but habitat protection and restoration have equal or greater importance in species restoration than stocking programmes alone.

CCRES AQUAPONICS
part of NGO
CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)
Read more

Rabu, 15 Juni 2016

Algae separation technology

,
Hen Boele and Marco Brocken, the founders of Evodos, explain the advantages of the Evodos separation technology. 
Examples are given on the robustness of the Evodos machines combined with its high effectiveness.
 They make clear how you can try Evodos at your own premises during 4 months for a net cost of only 6.0000 euro. 
CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)
More info www.evodos.eu or info@evodos.eu
Read more

Sabtu, 11 Juni 2016

Chinampa Aquaponics

,

Photo via CCRES AQUAPONICS


The Chinampas of Mexico

Chinampa is a method of ancient Mesoamerican agriculture which used small, rectangle-shaped areas of fertile arable land to grow crops on the shallow lake beds in the Valley of Mexico.

 

Foto via Anthony Morgan and his blog at: bcr-8history.blogspot.com


Mexico City, a thriving metropolis of 20 million, is built on and around the ancient Aztec city of Tenochtitlan.  Founded in 1325, this city was at its greatest a sophisticated and technologically-advanced city of 200,000 inhabitants nestled in the valley of Mexico and surrounded by a series of connected lakes.

The market district, Tlateloco was estimated by Spanish explorer Bernal Diaz del Castillo to be twice the size of Seville and bustling with over 60,000 shoppers and traders. The produce and goods for this market and several others in the city came mostly from the intricate and efficiently irrigated gardens created by the Aztecs in the shallow lakes surrounding the city.  These gardens, called chinampas , were artificial island plots of 30 x 2.5-3 meters.  These “floating gardens”  produced 3 crops a year and grew at least a half to two-thirds of the food consumed by the 200,000 residents of Tenochtitlan.

  
Foto via Anthony Morgan and his blog at: bcr-8history.blogspot.com

 The earliest fields that have been securely dated are from the Middle Postclassic period, 1150 – 1350 CE. Chinampas were used primarily in Lakes Xochimilco and Chalco near the springs that lined the south shore of those lakes. The Aztecs not only conducted military campaigns to obtain control over these regions but, according to some researchers, undertook significant state-led efforts to increase their extent.[4] Chinampa farms also ringed Tenochtitlán, the Aztec capital, which was considerably enlarged over time. Smaller-scale farms have also been identified near the island-city of Xaltocan and on the east side of Lake Texcoco. With the destruction of the dams and sluice gates during the Spanish conquest of Mexico, many chinampas fields were abandoned, although remnants are still in use today in what remains of Lake Xochimilco.

Among the crops grown on chinampas were maize, beans, squash, amaranth, tomatoes, chili peppers, and flowers.[5] It is estimated that food provided by chinampas made up one-half to two-thirds of the food consumed by the city of Tenochtitlán. Chinampas were fertilized using lake sediments as well as human excrement.

 Irrigated by the surrounding lake water, the chinampas were fertilized by digging up the nutrient-rich mud from the bottom of the canals and also by using human waste from the city itself.  In this way, Tenochtitlan was able to better fertilize its crops while treating its wastewater? creating a healthier living environment for all. Crops were easily transported to market along the many canals and lakes surrounding the chinampas.  When the Spaniards arrived it did not take them long to dimantle the complex system and put in place traditional monocropping.  Today, some chinampas survive in the Xochimilo area close to Mexico City.  They are cared for in the traditional way and create both food and an opportunity for a healthy tourist industry.  Mexico city is currently trying to create a waste-water treatment system incorporating the use of chinampas similar to the ones used by the Aztecs so long ago.


  Foto via Wikipedia

 More information on the chinampas of Mexico. 

 CCRES special thanks to Anthony Morgan and his blog at: bcr-8history.blogspot.com.

CCRES AQUAPONICS
 part of 
CROATIAN CENTER of  RENEWABLE ENERGY SOURCES (CCRES)
Read more

Selasa, 31 Mei 2016

Should You Attempt Fish Farming

,

 

Considerations for Prospective Fish Growers


Louis A. Helfrich, Fisheries Extension Specialist, and George S. Libey, Associate Professer, Aquaculture; Department of Fisheries and Wildlife Sciences, Virginia Tech

Introduction

Fish farming is an ancient practice that can provide many profitable opportunities today. The raising and selling of fish on a commercial basis has proven to be economically successful throughout the United States. In Croatia, fish farming is growing in popularity. Increasing recognition that fish is a healthy food, low in calories and cholesterol levels, but rich in protein has increased consumer demand in both restaurants and supermarkets.
Fish are excellent animals to rear. They can convert feed into body tissue more efficiently than most farm animals, transforming about 70 percent of their feed into flesh. Fish also have excellent dress-out qualities, providing an average of 60 percent body weight as marketable product and a greater proportion of edible, lean tissue than most livestock. Fish can be intensively cultured in relatively small amounts of water. In Virginia, they can be farmed at densities near 2,000 pounds/acre with careful management. Farm-reared fish offer a new alternative agricultural crop that can potentially replace those which are declining in popularity or profitability. Healthy farm-reared fish, guaranteed free of diseases, pesticides, and other harmful toxicants, are a more desirable substitute for wild fish from potentially polluted waters.

Fish farming is, like most other types of farming, a risky business that requires special knowledge, skills, and careful considerations. Some of the most important factors to consider in determining whether you should begin a fish farming business are listed below. Answering yes to all or most questions does not insure success. Similarly, answering no to all or most questions does not guarantee failure. Individuals with little or no experience in fish farming and few resources available can become successful fish farmers, but they should start small and expand slowly, and be willing to invest lots of time and effort.

Answer Yes or No

Economics:
1.
Do you have sufficient financial resources available?
2. Do you own suitable land with a good source of high-quality water?
3. Do you own enough land and water necessary for a profitable venture?
4. Is there a high demand and sufficient market for your product?
5. Do you have the equipment and machinery necessary?
6. Is expected profit from fish farming greater than other land uses?
7. Can you really devote the money, time, and labor necessary?
8. Do you know the costs involved with the following items:
Capital CostsLand & buildings
Building ponds/raceways
Trucks & tractors
Plumbing & pipes
Tanks & aerators
Oxygen meters
Nets & boots
Operating CostsPurchasing eggs/fingerlings
Fish feed
Electricity & fuel
Labor & maintenance
Chemicals & drugs
Taxes & insurance
Telephone & transportation
Marketing:
l.
Is there an established market for your fish?
2. Is the market demand sufficient year-round?
3. Do you have an alternative marketing strategy to rely on?

Physical:
l.
Do you have a continuous source of clean, high-quality water?
2. Does your soil have enough clay content to hold water?
3. Is the water temperature optimal for the fish species reared?
4. Do you have space sufficient to build enough ponds or raceways?
5. Do you have good and easy pond access for feeding and harvesting?
6. Are the pipes sufficient in size for quick draining & easy filling?
7. Is your residence near enough for direct observation and security?
Production:
l.
Have you had your water tested (chemical and bacteriological)?
2. Do you have a reliable source of fingerlings or eggs at affordable prices?
3. Do you have a reliable source of feed at reasonable cost?
4. Do you have dependable labor available at affordable wages?
5. How long is your growing season (days/year)?
6. Whats your production capacity (pounds/year)?
7. Whats the best fish species for you to grow?
8. Are you aware of fish reproductive biology and nutritional needs?

Legal:
l.
Are you aware of the federal and state laws about fish farming?
2. Do you know where to apply for the necessary permits and licenses?
3. Are you familiar with the personal liability concerns involved?

Risk Assessment:
l.
Can you afford to lose your entire fish crop?
2. Can you conduct water quality tests?
3. Is fish-disease diagnostic-help readily available?
4. Do you know about off-flavor and its causes?
5. Is pesticide, metal,or oil contamination possible?
6. Can you deal with poachers and vandals?
7. Do you know where to go for information and help?

Fish Farming Publications

Magazines/ Newsletters
Aquaculture Digest
9434 Kearney Mesa Rd.
San Diego, CA 92126
Monthly--$50/yr.

Aquaculture Magazine
P.O. Box 2329
Asheville, NC 28802
Bimonthly--$15/yr.

Aquafarm Letter
3400 Neyrey Drive
Metairie, LA 70002
Bi-weekly--$70/yr.
Arkansas Aquafarming
University of Arkansas
Cooperative Extension Service
Box 391
Little Rock, AR 72203
Quarterly--Free

California Aquaculture
University of California
Cooperative Extension Service
Aquaculture Extension
Davis, CA 95616
Monthly--Free
Canadian Aquaculture
4652 William Head Rd.
Victoria, British Columbia
Canada, V8X3W9
Quarterly--$14/yr.

Carolina Aquaculture News
P.O. Box 1294
Garner, NC 27529
Bimonthly--$12/yr.

Farm Pond Harvest
Professional Sportsman Pub.Co.
Box AA
Momence, Illinois 60954
Bimonthly-$10/yr.

Fish Farmer
Business Press International
205 E. 42nd St.
New York, NY 10017
Bimonthly-$56/yr.

Fish Farming International
Heighway House
87 Blackfriars Road
London SE 1814B England
Monthly--$35/yr.

Fish Farming International
110 Fleet St.
London EC4A England

For Fish Farmers
Mississippi State University
Cooperative Extension Service
Mississippi State, MS 39762
Monthly--Free
Georgia Fish Farmer
University of Georgia
Cooperative Extension Service
Athens, GA 30602
Quarterly--Free

Salmonid Magazine
U.S. Trout Farming Asso.
506 Ferry St.
Little Rock, AR 72203
Quarterly--Free

South Carolina Aquaculturist
Clemson University
Cooperative Extension Service
Room 102, Long Hall
Clemson, SC 29631
Quarterly--Free

Texas Aquaculture
Texas A&M University
Cooperative Extension Service
102 Nagle Hall
College Station, TX 77843
Quarterly--Free


The Catfish Journal
Catfish Farmers of America
P.O. Box 1700
Clinton, MS 39056
Monthly--$20/yr.

Timely Tips-Fisheries
University of Tennessee
Cooperative Extension Service
P.O. Box 1071
Knoxville, TN 37901-1071
Quarterly--Free

Water Farming Journal
3400 Neyrey Drive
Metairie, LA 70002
Monthly--$15/yr.

World Aquaculture News
P.O. Box 150129
Arlington, TX 76015
Monthly--$20/yr.
Journals/ Technical Publications
Aquaculture
American Elsevier Scientific Pub. Co.
52 Vanderbilt Ave.
New York, NY 10017
32 issues/yr.--$640/yr.

Aquaculture Engineering
Elsevier Applied Science
52 Vanderbilt Avenue
New York, NY 10017
Monthly--$132/yr.

Journal of Shellfish Research
National Shellfisheries Association
Oyster Biology Section
Gulf Coast Research Lab.
Ocean Springs, MS 39564

Journal of the World Aquaculture Society
178 Pleasant Hill
Louisiana State University
Baton Rouge, LA 70803

Progressive Fish Culturist
American Fisheries Society
5410 Grosvenor Lane, Suite 110
Bethesda, MD 20814-2199
Quarterly--$16/yr.

Transactions of the American Fisheries Society
American Fisheries Society
5410 Grosvenor Lane, Suite 110
Bethesda, MD 20814

Selected Fish Farming Books

  • A Guide to Integrated Warm Water Aquaculture. D. Little and J. Muir. Institute of Aquaculture, University of Stirling, Stirling FK9 4LA, Scotland.
  • Aquaculture Engineering. 1977. F.E. Wheaton. R.E. Krieger Publishing Company, Kreiger Dr., Malabar, FL 32950.
  • Aquaculture: The farming and husbandry of freshwater and marine organisms. 1972. John Wiley & Sons, Inc. New York, NY.
  • Cage Aquaculture. 1987. M. Beveridge. Unipub, 4611-F Assembly Drive, Landham, MD 20706-4391. Phone (301) 459-7666. ($38)
  • Commercial Catfish Farming. 1973. Interstate Printers and Publishers. Danville, Il.
  • Crustacean and Mollusk Aquaculture in the United States. J.V. Huner and E.E. Brown. AVI Publishing Co., Inc., 250 Post Road East, P.O. Box 831, Westport, CT 06881.
  • Fish Farming Handbook. 1980. AVI Publishing Co., Inc., Westport, Ct. 06881.
  • Fish Hatchery Management. 1986. American Fisheries Society, 5410 Grosvenor Lane, Suite 110, Bethesda, MD 20814.
  • Guidelines for Striped Bass Culture. 1976. American Fisheries Society, 5410 Grosvenor Lane, Suite 110, Bethesda, MD 20814-2199.
  • Principles and Practices of Pond Aquaculture. 1986. American Fisheries Society, 5410 Grosvenor Lane, Suite 110, Bethesda, MD 20814-2199, Phone (301) 897-8616. ($39.95)
  • Principles of Warmwater Aquaculture. 1979. John Wiley & Sons, Inc. New York, NY.
  • Principles of Warmwater Aquaculture. 1979. American Fisheries Society, 5410 Grosvenor Lane, Suite 110, Bethesda, MD 20814-2199. Phone (301) 897-8616 ($39.95)
  • Recent Advances in Aquaculture. J. Muir and R. Roberts. Westview Press Inc., 5500 Central Ave., Boulder, CO 80301.
  • The Aquaculture of Striped Bass. 1984. Maryland Sea Grant Program, 1224 Patterson Hall, Univ. of Maryland, College Park, MD 20742.
  • Trout and Salmon Culture (Hatchery Methods). 1980. California Fish Bulletin Number 164. University of California, Berkeley, CA 94720.
  • Trout Farming Handbook. 1973. Scholtum International Inc. Flushing, NY.
  • Water Quality in Warmwater Fish Ponds. 1984. C.E. Boyd. Auburn University, Auburn, AL 36830. ($8)

Organizations

American Fisheries Society
5410 Grosvenor Lane
Suite 110
Bethesda, MD 20814-2199
301-897-8616

Catfish Farmers of America
P.O. Box 36
Jackson, MS 39205
601-353-7916
National Ornamental Goldfish Growers Asso.
6916 Blacks Mill Rd.
Thurmont, MD 21788
301-272-7475

National Shellfisheries Association
Edwin Thodes
National Marine Fisheries Service
212 Rogers Ave.
Milford CT 06460
203-783-4200

Shellfish Institute of North America
National Fisheries Institute
2000 M Street, NW, Suite 580
Washington, DC 20036
202-296-5170

U.S. Trout Farmers Association
515 Rock Street
Little Rock, AR 72202
501-372-3595

World Aquaculture Society
341 Pleasant Hall
Baton Rouge, LA 70803
504-388-3137

CCRES AQUAPONICS special thanks to Michelle Davis, Research Associate, Fisheries and Wildlife

Virginia Cooperative Extension materials are available for public use, re-print, or citation without further permission, provided the use includes credit to the author and to Virginia Cooperative Extension, Virginia Tech, and Virginia State University.
Read more

Kamis, 19 Mei 2016

Aquaculture Cage Culture

,

An instructional video about fish farming.
 The program covers the recommended practices and guidelines for starting a successful cage culture operation. The video was supported by Purdue Extension, RMA, & Sea Grant Illinois-Indiana.
Read more

INVE Aquaculture

,
CCRES AQUAPONICS





http://www.inve.com

INVE Aquaculture was founded in 1983 as a spin-off from the University of Gent. Now almost 30 years later, the company has grown from a pioneer in Artemia research to a global player in the aquaculture industry, with a product portfolio covering both nutritional and health products for shrimp and shellfish hatcheries, as well as farms.

CCRES AQUAPONICS
Read more

Minggu, 01 Mei 2016

Europska aquakultura

,
 
 
Važnost o?uvanja
Provjere od strane službenika za kontrolu ribarstva sprje?avaju prekomjerno izlovljavanje ribe.
Ribarska industrija EU-a druga je po veli?ini u svijetu. Godišnje osigurava oko 7.3 milijuna tona ribe. Ribarstvo i industrija prerade  ribe zapošljavaju više od 400.000 ljudi.
Prioritet ribarske politike EU-a je posti?i ravnotežu izme?u osiguravanja konkurente ribarske industrije s jedne i održivih ribljih zaliha te održivog pomorskog eko-sustava s druge strane.
Za razdoblje od 2007.-2013. godine, Europski ribarski fond ima na raspolaganju 3.85 milijardi eura koje se mogu potrošiti na prioritete postavljene od strane zemalja ?lanica, temeljene na njihovim vlastitim odlukama o tome što im je naviše potrebno. Novac se može iskoristiti za morsko i slatkovodno ribarstvo, akvakulturu, organizacije proizvo?a?a, sektor procesiranja i marketinga, te za ekonomsku diverzifikaciju u ribarskim zajednicama.
 
Nužna je dobra provedba
Kako bi osigurala poštivanje ograni?enja vezanih za ribarstvo, postavljenih u interesu dugoro?nog o?uvanja zaliha ribe, EU je 2005. godine osnovala Agenciju za kontrolu ribarstva Zajednice. Agencija, ?ije je trenutno sjedište u Bruxellesu, trebala bi se u 2008. godini preseliti na svoju stalnu lokaciju u Vigo u Španjolskoj, europsku vode?u ribarsku luku. Agencija koordinira provedbu pravila za sprje?avanje prekomjernog izlovljavanja ribe i zaštitu drugih oblika morskog života. Osim toga, ona osigurava obuku za inspektore i organizira zajedni?ko postavljanje inspektora iz više država ?lanica Unije.
 
Me?unarodna suradnja i pomo?
Ribarski sporazumi sa zemljama izvan EU-a i pregovori unutar regionalnih i me?unarodnih ribarskih organizacija osiguravaju sprje?avanje prekomjernog izlovljavanja ribe, ne samo u vodama EU-a, ve? i u onima iz ?itavog svijeta. Istovremeno, ribarima EU-a pružaju pristup ribi u udaljenim vodama. Zemljama u razvoju EU pla?a za pravo pristupa, a novac dobiven tim putem uvelike se ulaže u ribarske industrije tih zemalja te u izgradnju njihovih ribljih zaliha.
 
Razvijanje akvakulture
Akvakulturom se može nadoknaditi smanjenje zaliha divlje ribe. Ve? sada 20% ukupnog izlova Europske unije dolazi iz uzgajališta riba. Mekušci, školjke, poto?na pastrva i losos spadaju u najvažnije proizvode akvakulture, no u nekim zemljama važno mjesto zauzimaju i šaran i deverika.
Akvakulturna industrija EU-a raste sporije od industrije ostatka svijeta. Europska komisija razmatra uvo?enje dodatnih koraka za razvoj potencijala ove industrije. Klju?ni izazovi uklju?uju manjak prostora i vode dobre kvalitete, te visoke standarde zaštite javnog zdravlja i okoliša. Europska aquakultura prednja?i u održivom razvoju u svijetu, i po pitanju socijalnih u?inaka i u?inaka na okoliš, no to otežava tržišno natjecanje s proizvo?a?ima iz drugih zemalja, posebice iz Azije i južne Amerike.
 
Pomorska dimenzija
EU ima više mora nego kopna te predstavlja najve?i svjetski pomorski teritorij. Ima ukupno 1200 luka, a oko 90% ukupne vanjske trgovine i 40% unutarnje obavlja se morskim putem. Trgova?ka flota Europske unije najve?a je na svijetu.
Pomorske regije sa?injavaju više od 40% bruto doma?eg proizvoda EU-a, a u njima živi 60% populacije Unije. Oko 5% BDP-a dolazi izravno iz pomorskih industrija i usluga. Broj je puno ve?i kada se uzmu u obzir neizravni doprinosi iz drugih sektora, poput turizma.
Kako su ribarska politika i politika zaštite okoliša ve? neko vrijeme percipirane kao dvije strane iste medalje, EU sada preuzima šire gledište kako bi obuhvatila sve koristi našeg pomorskog prostora. Cilj je oja?ati europska pomorska istraživanja, tehnologiju i inovacije. To se uklapa u Lisabonsku agendu za ve?i broj kvalitetnijih poslova i rast, te u Unijinu posve?enost osiguravanju da gospodarski razvoj ne ugrožava održivost okoliša. Integrirana pomorska politika obuhva?a pomorski prijevoz, konkurentnost kompanija u pomorskom sektoru, zapošljavanje, znanstvena istraživanja, ribarstvo i zaštitu morskog okoliša.
Kako bi naglasila važnost ovog sektora, Europska komisija je 20. svibnja proglasila Europskim danom pomorstva. Prvi Europski dan pomorstva obilježen je 2008. godine. 

Branka Kalle 
Predsjednica Savjeta 
Hrvatskog Centra Obnovljivih Izvora Energije (HCOIE)
Read more

Jumat, 22 April 2016

CCRES AQUAPONICS Cooperating Institutions

,
All the food CCRES produced during the year is given to poor families.

 CCRES AQUAPONICS Cooperating Institutions

International Fish Farming Technologies provides a novel technology for the inland production of seawater fish. IFFTs innovative and environmentally friendly Closed Loop Mariculture (CLM) offers an alternative to conventional fish farming. By uncoupling from the environment and under stable rearing conditions they present the new perspective for sustainable and environmentally friendly fish farming.

Agro Ittica Lombarda S.p.A. : CALVISIUSâ Original Caviar Malossol is the registered trade mark of Agroittica Lombardas farmed White Sturgeon Caviar. Agroittica Lombarda, based in Brescia (Italy) runs the largest sturgeon farm in Europe producing 500 tonnes/year of meat and 20 tonnes/year of top quality caviar. Experienced since 1991 in farmed caviar processing, Agroittica has gained a worldwide reputation for the freshness, granulometry (min.2.8mm) flavour and hygiene of its sturgeon roe: a real Malossol with a very low salt content. This has been made possible because CALVISIUSâ is extracted from October through March thus avoiding high salting for longer preservation.

We, the Acadian Sturgeon and Caviar Inc. , produce and sell sturgeon stocking material - Atlantic (Acipenser oxyrhynchus) and shortnose sturgeon (Acipenser brevirostrum) for aquaculture, restocking and research. We also offer consulting and R&D services in the field of sturgeon aquaculture and ecology. We are developing the production of sturgeon meat and caviar as well as a gene bank for both those sturgeon species in Carters Point, New Brunswick, Canada.

The GoConsult is an independent consultancy involved with ship-mediated biological invasions and species introductions for aquaculture purposes since 1999. Dr. Gollasch was chairman of the ICES Working Group on Introductions and Transfers of Marine Organisms (2001-2006). This group commented on the project to re-import sturgeons from North America to the Baltic countries and also monitors through country reports the importation of life specimens for trade and aquaculture, including sturgeons. Todays work is focussed also on the development of risk assessment and ballast water management scenarios for Europe as well as on specific efficacy tests of ballast water treatment systems.

The Holsten-Stör Fishfarm produces caviar from the Siberian sturgeon, Acipenser baeri, in closed recirculating systems. The caviar is sold under trademark "Baerioska".

The main objectives of the International Sturgeon Research Institute (ISRI) in Rasht (Iran) relate to conservation and sustainable use of sturgeon stocks in the Caspian Sea while also fostering regional and international cooperation to conduct sturgeon research in joint projects along the following thematic subject areas:

A) Specific Research topics:
  • Sturgeon Ecology in natural waters and under ponds conditions
  • Controlled reproduction, Sturgeon rehabilitation and restocking of sturgeon populations
  • Stock assessment and improved catch technology
  • General physiology and biochemistry of sturgeons
  • Genetics and breeding, biotechnology and population genetics of sturgeons
  • Sturgeon aquaculture
  • Ecotoxicology studies using sturgeons as target species
  • Processing technology and development of sturgeon products
  • Sturgeon pathology and disease control
B) Involvement in Regional and International Cooperation:
  • Cooperation with international organizations to conserve valuable stocks of sturgeons in the Caspian Sea and other endangered populations of sturgeon species in the world. eg. CITES ( Asia representative in Animal Committee), IUCN (Chairman of Sturgeon Specialist Group), Member of Foundation Committee and Board in WSCS
  • Exchange scientific and technical information as well as research experts with other organizations and universities
  • Conduct long term and short term training courses at different academic levels
  • Hosting international conferences on management and conservation of sturgeon stocks. (Chairman of ISS5)

The North Atlantic Salmon Conservation Organization (NASCO) is an international organization established under the Convention for the Conservation of Salmon in the North Atlantic Ocean which entered into force on 1 October 1983. The objective of the Organization is to contribute through consultation and cooperation to the conservation, restoration, enhancement and rational management of salmon stocks subject to the Convention taking into account the best scientific evidence available to it. The Convention applies to the salmon stocks which migrate beyond areas of fisheries jurisdiction of coastal States of the Atlantic Ocean north of 36N latitude throughout their migratory range. Contracting partners include Canada, Denmark, the European Union, Iceland, Norway, Russian Federation and the United States of America. NASCO has three regional commissions. NASCO can be contacted through the Secreatariat at NASCO / 11 Rutland Square / Edinburgh, EH1 2AS / United Kingdom

CRM-Coastal Research & Management is a private association of experts in the fields of Marine Research and Environmental Consulting, Integrated Coastal Zone Management and Marine Biotechnology. CRM elaborates science-based planning and decision tools, that help to avoid ecological or economical failures. Since 1993 CRMs interdisciplinary team supplies services for coastal industries (aquaculture, harbor, shipping, tourism) and is partner in international scientfic projects. The first seaweed farm in Germany was established by CRM in order to develop new value added products for cosmetic, medical and biotechnological use.

Leibniz Institute for Zoo and Wildlife Research (IZW) of the Forschungsverbund Berlin e.V. The IZW conducts integrated biological and veterinary research on wildlife. Our work is focused on the mechanisms and functions of evolutionary adaptations that ensure the survival and reproduction of individuals in free-ranging and captive populations of wildlife, and the limits that may affect the viability and persistence of such populations. For this purpose, we study the behavioural and evolutionary ecology, wildlife diseases, and reproduction of mostly larger mammals and birds. A special group around Dr. A. Ludwig studies in particular sturgeon genetics in relation to their phylogeny and distribution but also in light of trade control of caviar. The institute was recently the co-organizer of the 2nd Status Workshop on Identification of Acipenseriformes Species in Trade

Department of Ecotoxicology (Institute for Ecological Research and Technology, Technical University of Berlin. Major research areas are: Fisheries and ecological status of habitats. Effects Monitoring (freshwater and marine) and the study of detoxification processes using modern methods to assess DNA damages (Genotoxicity, Xenoestrogens, Immunosuppression, Phagocytosis). Development of modern bioanalytical systems and (on-line) monitoring systems, entire cell bio-sensors. Development and testing of cost efficient screening methods (genotoxic potential, endocrine effects and immunosuppression) in inland and coastal waters. Landscape scale ecotoxicology in respect to the Water Frame Work Directive and REACH. Risk assessment, -communication and -management in constructions and materials.

The European Aquaculture Society (EAS) is an international non-profit association that promotes contacts and disseminates information among all involved or interested in aquaculture in Europe. EAS has members in more than 60 countries and participates in various initiatives to contribute to the sutainable development of European aquaculture.

From the start DIECKMANN & HANSEN has always been and still is a caviar import/export company and has therefore global experience in this trade and its quality control. DIECKMANN & HANSEN was founded in 1869 and is the oldest existing caviar trading company worldwide.

Polar and Marine research are central themes of Global system and Environmental Science. The Alfred Wegener Institute conducts research in the Arctic, the Antarctic and at temperate latitudes. It coordinates Polar research in Germany and provides both the necessary equipment and the essential logistic back up for polar expeditions. Recent additional research themes include North Sea Research, contributions to Marine Biological Monitoring, Marine Pollution Research, Investigation of naturally occuring marine substances, marine aquaculture and technical marine developments.

The European Association of Fish Pathologists was established on 25th October 1979 in Munich, Germany. it is an interdisciplinary society, embracing all aspects of aquatic disease in fish and shellfish, in aquaculture and in wild stocks. Members come from all disciplines, biologists, microbiologists, veterinarians, fish farmers and aquaculture engineers. The objective of the EAFP is to promote the rapid exchange of experience and information on aquatic disease problems and related topics. These aims are pursued mainly through regular regional and international meetings, support for training courses in laboratory techniques and the publication of the Bulletin of the European Association of Fish Pathologists, a fully citeable journal listed in ASFA, Current Contents and Science Citation Index.

Blackwell Publishing GermanyBlackwell Verlag is the German subsidiary of the company Blackwell Publishing whose headquarters are located in Oxford, UK. At the heart of Blackwells publishing service is an organisation with international reach, publishing over 660 journals and collaborating with more than 500 learned societies. In 2002 Blackwell published over 600 books. With revenues of approximately 230 million euros, Blackwell is the largest privately owned publisher world wide.

Leibnitz-Institute of Freshwater Ecology and Inland FisheriesThe Leibniz Institute of Freshwater Ecology and Inland Fisheries is one of the principal German centres for research on limnic ecosystems, and unites hydrologists, chemists, microbiologists, fish ecologists and fish biologists. A combination of fundamental and applied research supports our long-term goal of management of aquatic ecosystems, via restoration, development and protection. Our research activities are primarily oriented to the analysis of the widespread structures and functions of freshwater ecosystems. Our subsidiary focus is the study of unique regional environments such as the Berlin river-lake system where numerous shallow lakes are interconnected by dominant rivers, and turbulence is a major influence.

Sander OzonizersErwin Sander Elektroapparatebau GmbH: Ozone Generators for Laboratory and Industry - Typical Applications: Potable Water, Waste Water, Waste Air, Bottling Industry, Sterilisation, Swimming Pools, Laboratories, Material Tests, Petro Chemistry, Bio Chemistry, Water Chemistry, Climatic Technology, Cooling Towers, Test Cases, Aquaculture, Public Aquaria, Medicine, School, University

Global Information System FishBaseFishBase is a relational database with information to cater to different professionals such as research scientists, fisheries managers, zoologists and many more. FishBase on the web contains practically all fish species known to science. FishBase was developed at the WorldFish Center in collaboration with the Food and Agriculture Organization of the United Nations (FAO) and many other partners, and with support from the European Commission (EC). Since 2001 FishBase is supported by a consortium of seven research institutions.

Deutsche SeeDeutsche See is the market leader for fish and seafood in Germany. Pleasure oriented foods and excellent service are the core competences - and this is demonstrated to customers and partners everday. The real cornerstones lie in the international sourcing of fresh and carefully selected products, their processing in the custom built "Deutsche See" factory in Bremerhaven and the groundbreaking Quality Management. Furthermore, "Deutsche See" offers a high degree of local presence and delivery all over Germany through a network of 26 "Deutsche See" branches.

aquafutureaquaFUTURE e.K. - Aquaculture Equipment, Consulting, Fishfarming, Recirculated Systems

Vancouver Island UniversityVancouver Island University  Known as a centre of excellence for teaching and learning, Vancouver Island University (VIU) is producing high calibre graduates who are in demand by employers across the country and around the world. Through its ongoing evolution and growth, VIU is proud to have contributed to the development of Vancouver Island and British Columbias culture, economy and knowledge base. VIU, formerly Malaspina University-College, has evolved from a small community college to a dynamic, internationally known university supporting a student population in excess of 18,000 full-and part-time learners and employing over 2,000 faculty and staff.

Society to Save the Sturgeon e.V.Founded in 1994, the Society to Save the Sturgeon is engaged in the restoration of the European sturgeon Acipenser sturio. Scientists, fishfarmers und nature conservationists work closely together in this ambitious project, supported by international experts and organisations, aming at the reintroduction of the species in the mayor German rivers. Accompanied by international cooperations, these stocks should be expended to neighboring areas. On our homepage, we want to give experts and interessted layman some insights to the project and the sturgeon - its biology and its way of life.

Freshwater Fisheries Society of BCThe Freshwater Fisheries Society of B.C. (FFSBC) is a non-profit society that delivers all of the services formerly provided the by Provincial Governments Fish Culture Section (Provincial Hatcheries). The society works in partnership with the province to deliver the provincial fish stocking program as well as providing conservation fish culture services that support steelhead and sturgeon recovery programs. The Freshwater Fisheries Society is also responsible for the promotion and marketing of freshwater fishing in the province. One of the main objectives is to offer anglers the most comprehensive website for lake and stream sports fishing information in British Columbia.

fishartgalleryTeom Lim is an award winning carver with a unique perspective. He is an artist, avid fisherman and fisheries biologist rolled up in one. His meticulous attention to detail and university background produces carvings that are beautiful and anatomically correct. These attributes coupled with his love for fishing have enabled Teom to create pieces of art that capture a moment in nature.

Sturgeon AquaFarmsSturgeon AquaFarms, LLC (SAF) is a company that is dedicated to restoring the worlds resources of sturgeon. The company was established in order to start an aquaculture operation in Florida, USA that would farm various sturgeon species for commercial production of sturgeon meat and caviar - beluga, osetra, sevruga.
Sturgeon AquaFarms, LLC. was established in order to farm sturgeon species Huso huso, Acipenser gueldenstaedtii, Acipenser stellatus, Acipenser baerii, and Acipenser ruthenus. The company has been researching this proposal for the past seven years. During that time we have negotiated with the United States Department of Agriculture, Division of Aquaculture, Food & Drug Administration, Conservation Commission, Department of Fisheries, Water Management organization and Aquatic Services. We have corresponded with these agencies in an attempt to successfully fulfill all requirements for our proposal.

AquaBioTech GroupAquaBioTech Group is a leading independent aquaculture, fisheries and environmental consulting, development, testing, research and training company operating throughout the world.

ABT Aquaculture is a leading aquaculture consulting and technical support company that forms part of the AquaBioTech Group. The company has grown to become one of the largest dedicated independent aquaculture consulting company`s operating on a truely global scale. With clients and projects in over twenty-nine (29) countries and a team of over twenty-five (25) highly qualified and experienced staff and personnel, the company draws on a wealth of experience and expertise covering all aspects of aquaculture planning, feasibility, development and operation.

ZwyerCaviar LLCZwyerCaviar LLC is an family owned enterprise, seated in the heart of Swiss alps. As an innovative company we are determined to succeed and differentiate ourselves in the highly competitive and growing luxury fine food market worldwide. We are socially and ecologically conscientious of everything we do. Our approach is led by sustainability. Caviar is about trust. ZwyerCaviar comes from a sustainable controlled and responsible aqua farming environment and meets the highest health and quality standards in the world. A high priority is given to the protection and conservation of the sturgeon species in the wild. The sturgeons of ZwyerCaviar live in an untouched natural reserve, far from civilization and pollution. ZwyerCaviar is a clima-neutral company and proud member of the World Sturgoen Conservation Society eV.

Apart from the corporate website there is a blog named Caviarist you may want to visit, which is a mix between a corporate (of ZwyerCaviar LLC) and a privat (Roger Zwyer) blog.

Aller Aqua GroupAller Aqua Group:  With more than 40 years in the sector, Aller Aqua is one of the most experienced suppliers of fish feed for freshwater and saltwater species.
Aller Aqua has a wide range of fish feed for freshwater and saltwater fish  for example fish feed for carp, catfish, rainbow trout, cod, turbot, rockfish, salmon, seabass, seabream and sturgeon.

All our fish feed products are produced by means of extrusion. The fish feed must cover the basic metabolism of the fish and ensure healthy growth. In order to meet these requirements the fish feed composition must meet all needs for nutrients, vitamins and minerals. Aller Aqua fish feed meet all these requirements and have been adapted to various sizes of fish and feeding strategies. The feed have been developed in cooperation with customers and undergo continuous tests, in selected test stations and fish farms.
Fish feed from Aller Aqua are produced at our factories in Denmark, Poland and Germany.

Fish Farm Giaveri RodolfoThe Fish Farm Giaveri Rodolfo  was created in 1979 as an eel farm. Thanks to realization of an efficient system of modern aquaculture, with an advanced plant, it has become the leader in this field among the top European fish farms. For almost 30 years the focus of the farms eel production has been to satisfy traditional kitchen requests in the South of our Peninsula and Sardinia, while trade in the foreign market has been mainly in smoked eel. Furthermore, already in the early 80s, the breeding was diversified introducing alternative species as Carps, Tenches and especially the Sturgeon. At the beginning, bred for sport fishing and then for its meat, it became the new and real protagonist of Giaveri production. Sturgeon inspires a lot of interest for the high quality of its resulting caviar also covering a particular role for variety of exemplars of Acipenser which are present in the plant.

EmpirikaEmpirika  

Mottra CaviarMOTTRA Ltd  are the purveyors of exceptional quality farmed black caviar from Latvia. Established in 2002 and founded by a group of Russian and Latvian caviar experts, MOTTRA combines a new environmental and scientific approach resulting in the production of the purest CITES certified caviar that will delight the most discerning connoisseur.

Mottra produces Osetra (Acipenser baerii) and Sterlet (Acipenser ruthenus) caviar all year long, no matter what the season, due to the Mottra caviar pools being totally enclosed and insulated under carefully controlled temperatures using unique technology. This allows Mottra to be in full control of the process of caviar ripeness as the water at the farm is not susceptible to climate change and the caviar can be collected when it is at its best. Mottra does not use any preservatives, chemical or medical additions to the fish nor to the caviar; only salt is added. The caviar is malossol, grain-to-grain. Unlike many farms, the Mottra sturgeon are "stripped" of their eggs and are allowed to mature rather than being culled, as for each year that the fish lives the superior the quality, and thus all round caviar experience.

Tropenhaus FrutigenThe Tropenhaus Frutigen  represents a new tourist attraction in the Bernese Oberland. 100 litres of mountain water flows out of the Ltschberg Base Railway Tunnel every second. This heat energy is put to good use in the Tropenhaus: Fish and plants that love a warm climate are cultivated in the extensive facility, which is open to the public, and the Tropenhaus has around 80 employees from the local area. The facility is run by the Tropenhaus Frutigen AG, with Hans Peter Schwarz as the Chairman of the Board of Directors.

The Tropenhaus Frutigen is an attractive excursion destination for both individuals and groups. Visitors experience at first hand how the waste heat from the Ltschberg Base Tunnel is made use of: Exotic plants thrive in the Tropenhaus, while heat-loving fish swim about in the large basins. The food that is produced on-site comes fresh onto the tables of the operations own restaurants. The Tropenhaus is also a suitable location for events of all kinds, such as wedding receptions, company events or meetings. A wide range of tourist attractions are also available in the immediate vicinity.

TU Berlin Department of Ecological Impact Research and EcotoxicologyBerlin Institute of Technology (BIT) Department Ecological Impact Research and Ecotoxicology  Research for a Sustainable Future of our Ecosystems: Our research line in the field of ecological impact research and ecotoxicology aims to understand changes in an ecosystem from molecule, cells, organisms up to population effects and landscape structure. Within this goal the aquatic-terrestrial connectivity is one of the main back bones. Beside anthropogenic caused changes, we are investigating natural compounds, such as cyanobacterial toxins, which also cuase changes in an ecosystem.

A sustainable protection of our ecosystems can only be achieved, if single ecosystem function are investigated in order to help achieving the goal to protect the ecosystems.

Fischzucht Rh?nforelle GmbH & Co. KGFischzucht Rhnforelle  is among the pioneers of sturgeon farming in Germany. In 1990 Peter Gross imported the first thousand small Siberian sturgeon juveniles from Konakowo (Volga River) to Gersfeld (Germany). Since than, he gradually converted the former trout farm into a sturgeon farm. Today, the Siberian sturgeon is reproduced year round and fertilized eggs are exported world-wide, including to the former origin in Russia. Today, juvenile production includes the highly endangered species Huso huso.
CCRES AQUAPONICS
 project of NGO
CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)
Read more

Sabtu, 09 April 2016

How Do I Get Started in Aquaculture

,




CCRES AQUAPONICS

           

As part of our aquaculture initiative, the Croatian Center of Renewable Energy Sources (CCRES) has started the CCRES aquaponics  program. This Web site is part of that program. We have attempted to include as much information as possible for beginning and experienced fish farmers. While the information compiled here is not all-inclusive, we have tried to be as thorough as possible, covering all the various types of aquaculture relevant to Croatia. If you would like to submit any information for our Web site, please contact us.

Specal thanks to :
Indiana Soybean Alliance
5730 W 74th Street
Indianapolis, IN 46278
1-800-735-0195
for giving us great source of informations.

How Do I Get Started in Aquaculture?   

The most important activity anyone considering fish farming should conduct is developing and writing a business plan.

Here are some of the basic steps.

Business Planning    

Writing a business plan is the single most important step a farmer can take when determining if aquaculture is something they want to explore as a viable economic investment. A well-developed business plan will cover all aspects of an aquaculture business, from species and production systems, to economics and marketing. Failing to complete a business plan is one of the primary reasons for business failure!

Feed Management   

Feed management, from buying the correct feed and proper feeding rates to properly storing feed, is essential to managing fish health and growth. Excellent feed managers not only save money by not wasting feed, they also optimize production potential on their farms. Every farm will likely have a different feed management strategy as production criteria like feeding rates and growth rates will be impacted by species selection, production system, environmental conditions, among other things. Proper feed management should be implemented as part of an overall best management practices plan.

Financing      

Aquaculture in Croatia doesn’t have a well-established track record like other forms of agriculture, so acquiring funds and insurance from traditional farm sources can be difficult.  Lenders and insurers will want to see a well-developed business plan with income and cash flow statements before they consider funding/insuring an aquaculture operation.  They may also want to see a best management practices plan.  Please visit the other sections to get more information covering these and other topics.


Economics

          
Filling out financial statements is one of the critical steps in developing a viable business plan. The following spreadsheets were developed to help new producers manage a business venture in aquaculture. There are different spreadsheets available depending on production system: Recirculating (RAS), pond or cage. There are examples provided as well, but these should only be used as a guide as many of the numbers will vary depending on your business specifics. The following material can be used to help plan and build a successful business in aquaculture.


Fish Health
          
Animal health is perhaps more of a challenge in aquaculture than any other type of livestock agriculture. There are very few veterinarians actively involved in fish health, thus it is often difficult for fish producers to obtain veterinary services. There are also few approved drugs available to treat sick fish. For these reasons, it is critical for fish farmers to implement a best management practices (BMP) plan that encourages fish health. The most common cause of fish disease is stress, and a well-developed BMP will help farmers minimize stress to their livestock.

Marketing
          
As with most specialty and niche crops, fish farmers in Croatia typically have to market their own product. This can be done in a variety of ways from local farmers markets and restaurants, to ethnic markets and restaurants in large metropolitan cities. Farmers should always have more than one market identified for their fish to be sure that they will always be able to sell product. This is especially critical for farmers who want to acquire funds from traditional agricultural lenders. Another option is for a group of farmers to start a marketing cooperative that can allow them to enter larger markets that would not be open to individual farmers because of the smaller scale of their business.


Production Systems

More information about specific production systems :

Cage Systems           

Cage farming is simply raising fish in a large, submerged cage that can be used in a pond that otherwise might not be ideal for farming. An ideal location for a cage production farm would be in a pond/private lake that is too large for traditional pond aquaculture or is unsuitable for another reason (perhaps it is too deep, or cannot be drained). Cages can be floated throughout the pond and accessed either via a dock or boat.

160fs - What is Cage Culture.pdf
161fs - Cage Site Selection Water Quality.pdf
162fs - Cage Construction Placement Aeration.pdf
163fs - Cage Species Suitable.pdf
164fs - Cage Handling and Feeding.pdf
165fs - Cage Problems.pdf
166fs - Cage Harvesting Economics.pdf
281fs - Cage Tilapia.pdf
FA04800 - Cage Management.pdf
tb110-CageCultureNCR.pdf


Larval Feed
          
Feeding larval fish can be difficult and depending on the species of fish, commercially formulated diets might not be available. Many fish farmers rely on feeding live feed to their larval fish until they are big enough to start eating formulated feeds. Farmers can rely on the natural productivity of ponds to grow their live feed, or they can utilize indoor production systems. These production systems are often smaller and specialized for raising small, often microscopic, live feed organisms.

701fs - Larval Feed.pdf
702fs - Artemia.pdf



Pond Systems           

Pond aquaculture is the most traditional type of aquaculture in the world. It has been producing fish in Asia and Africa for thousands of years. Most of the available fish farming information is based on pond aquaculture.

100fs - Levee Pond Site Selection.pdf
101fs - Levee Pond Construction.pdf
102fs - Watershed Pond Site Selection.pdf
103fs - Calculating Area Volume.pdf
280fs Pond Tilapia.pdf
395fs - Pond Inventory Assessment.pdf
460fs - Pond Clay Turbidity.pdf
462fs - Pond Nitrite.pdf
463fs - Pond Ammonia.pdf
464fs - Pond Water Quality Considerations.pdf
466fs - Pond Algae Blooms.pdf
468fs - Pond Carbon Dioxide.pdf
469fs - Fertilizing Fry Ponds.pdf
470fs - Pond Effluents.pdf
471fs - Pond Fertilization.pdf
700fs - Pond Zooplankton Larval Feed.pdf
Aquatic Weed Control in Ponds.pdf
FA00800 - Pond Copper Use.pdf
FA02100 - Pond Aeration.pdf
FA02800 - Pond Lime Use.pdf
FA03200 Pond Potassium Permanganate.pdf
PONDS.pdf
TB114 - Plankton Management.pdf
wrac-104 - Pond Fertilization.pdf
wrac-106 - Settling Basin.pdf




Recirculating Aquaculture Systems
          
Recirculating aquaculture systems (RAS) are the newest form of fish farming production system. RAS are typically an indoor system that allows for farmers to control environmental conditions year round. While the costs associated with constructing a RAS are typically higher than either pond or cage culture, if the system is managed properly to produce fish on a year round basis, the economic returns can make it worth the increased investment. RAS are the most complex aquaculture systems and beginners should plan on making a significant time commitment to learning how to operate a system.

103fs - Calculating Area Volume.pdf
451fs - RAS Critical Considerations.pdf
452fs - RAS Management.pdf
453fs - RAS Component Options.pdf
455fs - RAS Pond Systems.pdf
456fs - RAS Economic Spreadsheet.pdf
AA21200 - Energy Costs.pdf
FA05000 - RAS Principles.pdf
facts5 - RAS Prudence Pays.pdf



Barn Conversion
          
There has been a lot of interest in converting livestock buildings to fish production. While a “model” has yet to be developed, the material below has been presented at several different workshops focusing on converting livestock barns to aquaculture.

Barn Conversions for Aquaculture 3-8-07.asx
Chuck-IPVideoWorkshop.pdf
Hicks-Workshop.ppt
hogbarn.ppt
Laura-HogbarnWorkshop.pdf
Shawn-BarnConversion.pdf

 CCRES AQUAPONICS
part of
CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)
Read more

Minggu, 03 April 2016

Species protection and conservation

,


Fish farming can contribute to the protection and restoration of endangered fish populations living in the wild through the efficient provision of juveniles for release or stocking.
An increasing number of fish are finding their way onto the CITES lists of endangered species. The production of juvenile fish and shellfish in hatcheries is far more efficient (in terms of survival) than in the wild. These juveniles may not only be grown on as food, but also for the conservation and restoration of fish populations (through release or restocking) and the provision of fish for angling.

This technique, also known as "stock enhancement" or "enhancement aquaculture" has an economic advantage in that production costs are much lower, and has proven to be successful for a variety of marine fish species, mainly in Norway, Japan and the USA.

Sturgeons are among the worlds most valuable wildlife resources and can be found in large river systems, lakes, coastal waters and inner seas throughout the northern hemisphere. For people around the world, caviar, i.e. unfertilized sturgeon roe, is a delicacy. Sturgeons are also a major source of income and employment, as well as an important element of the local food supply. Current trends in illegal harvest and trade put all these benefits at risk. Since 1998, international trade in all species of sturgeons has been regulated under CITES owing to concerns over the impact of unsustainable harvesting of and illegal trade in sturgeon populations in the wild.

Sturgeon

Photo: Juvenile sturgeon for restocking.
Source Aquaculture Europe Vol 32 (3). September 2007. Courtesy M. Chebanov.

The Ramsar Declaration on Global Sturgeon Conservation recognises the importance of aquaculture in the preservation of sturgeon species, specifically mentioning the importance of captive broodstock programmes to prevent loss of genetic variety; the monitoring of stocked juvenile fish to assess the cost-effectiveness of stocking strategies; the cultivation of sturgeon for meat and caviar products - especially with due involvement of the lowincome local fishing community who need alternative livelihoods; and the need for internationally agreed standards on culture technology and general husbandry, adequate nutrition, disease prevention and product quality control.

More information is available at www.wscs.info - the site of the World Sturgeon Conservation Society.

Different trout species have been restocked in Europes rivers for decades. Prior to the Second World War, the UK production of trout juveniles was exclusively to stock rivers in England and Scotland to support natural populations and for recreational fishing. It was only in the 1950s that technology was introduced to produce fish for the table. This is the case across much of Europe, where trout remains the top aquaculture production species within European Member States, and where restocking accounts for a significant proportion of total trout fry production.

restocknivelleriver_600.jpg

Photo showing 2007 re-population in the river Nivelle in the Basque region of France.
Photo courtesy of Dr. Jacques Dumas, INRA.



CCRES AQUAPONICS
project of NGO
CROATIAN CENTER of RENEWABLE ENERGY SOURCES 
Read more
 

Aquaponics Build Copyright © 2016 -- Powered by Blogger