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Recent Technical Advances in Marine Flatfish Farming

Published online by Cambridge University Press:  05 December 2011

N. M. Kerr
Affiliation:
Chief Technical Officer, White Fish Authority, Edinburgh.
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Synopsis

Progress in the development of marine flatfish farming suggests that, for two species, commercial viability is becoming a real possibility.

Dover sole can be reared in tanks on shore supplied with warmed water from the cooling of coastal power stations. Turbot can be reared likewise, or in cages floating in the sea.

The main area in which problems remain is in the controlled production of juveniles in hatcheries on shore, but recent progress has been good.

There is a good potential in the UK for marine fish farming, with probable sites available for an annual output of all species of up to around 50,000 tonnes p.a. At this level, or even at 25% of this level, the requirement for the catching of fish as farm fodder would become significant to the fishing industry.

This paper describes only those aspects of progress or outstanding problems which, in the author's opinion, are of major significance in economic terms.

Type
Research Article
Copyright
Copyright © Royal Society of Edinburgh 1976

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References

REFERENCES

1Gross, F. V., 1947. An experiment in marine fish cultivation: I Introduction. V. Fish growth in fertilised sea loch (Loch Craiglin). Proc. Roy. Soc. Edinb. (B), 63, 12, 56–95.Google Scholar
2Shelbourne, J. E., 1975. Marine fish cultivation: pioneering studies on the culture of the larvae of the plaice and the sole. Fishery Invest. Lond., (II), 27, No. 9.Google Scholar
3Eddie, G. C., 1970. An engineer's account of recent experiments in marine fish farming in the U.K. Can. Fish. Rep., 15, 363374.Google Scholar
4Hoshiai, H., 1973. Industrial fish culture using warm water—especially waste thermal water. Chem. Econ. Engng Rev., 5 (7), 2634.Google Scholar
5Howard, K. T., 1974. Feasibility study for commercial finned fish farming. W.F.A. Fish Ind Rev., 4, 3.Google Scholar
6Howard, K. T., 1974. Trials on rearing systems for marine flatfish cultivation. Fish Farming Int., 3.Google Scholar
7Howard, K. T. and Kingwell, S. J., 1975. Marine Fish Farming: Development of Holding Facilities (with particular reference to the work of the W.F.A. on the Scottish West Coast (Oceanology International Conference, Brighton).Google Scholar
8Kerr, N. M., 1974. Marine Fin Fish Farming (Fish Farming in Europe, Conference sponsored by Fish Farming International, London).Google Scholar
9Kingwell, S. J., 1974. The use of artificially warmed water for marine fish cultivation (Technical Meeting, Energy and the Environment, Pro Aqua Pro Vita, Basle).Google Scholar
10Palfreman, D. A., 1973. The economics of marine fish farming. Fish Farming Int., 1, 4752.Google Scholar
11Shepherd, C. J., 1973. Studies on the biological and economic factors involved in fish culture, with special reference to Scotland. Ph.D. Thesis, Stirling Univ.Google Scholar
12, S.S.E.B., 1972. Hunterston ‘A’ Nuclear Power Station (South of Scotland Electricity Board).Google Scholar
13Thain, B. P. and Urch, M. J., 1973. Reducing waste in fish farm foods. Fishing News Int., 11 (3).Google Scholar
14Thain, B. P. and Urch, M. J., 1973. Marine fish foods: problems in an intensive system. Fish Farming Int., 1, 106110.Google Scholar
15, W.F.A. & , C.E.G.B., 1972. Engineering studies of warm water fish cultivation: progress report based on 1971 data. C.E.G.B. Ref. No. PL-SP/GSG/3.Google Scholar
16Jones, A., 1972. Marine Fish Farming. Leafl. Minist. Agric. Fish. Fd, 24.Google Scholar
17Purdom, C. E., 1974. Fish genetics in aquaculture. Fish Farming Int. 2, 117121.Google Scholar
18Kerr, N. M., 1976. Farming marine flatfish using waste heat from sea-water cooling (Conference organised by Institute of Fuel, Southampton).Google Scholar
19Muir, J. P., 1975. Water re-cycling systems in fish farming. Fish Farming Int., 2, 1416.Google Scholar
20Purdom, C. E., Jones, A. and Lincoln, R. F., 1972. Cultivation trials with turbot. Aquaculture, 1,213230.CrossRefGoogle Scholar
21, W.F.A., 1970. Preference test on wild and farmed Dover sole and plaice. Trials Rec, 49.Google Scholar
22, W.F.A., 1974. Acceptability of ‘plate-sized’ turbot in London restaurants. Tech. Rep., 119.Google Scholar
23, W.F.A., 1975. Further acceptability trials with farmed turbot. Tech. Rep., 126.Google Scholar
24Kerr, N. M. and Howard, K. T., 1975. The potential for marine cultivation in the U.K. (Royal Society of Arts Conference, London).Google Scholar