Références Bibliographiques
50
Naylor, R. & Goldburg, R. & Primavera, J. & Kautsky, N. & Beveridge, M. & Clay,
J. & Folke, C. & Lubchenco, J. & Mooney, H. & Troell, M. (2000). Effect of aquaculture
on world fishsupplies. Nature, 405, p. 1017-1024.
Neori, A. & Cohen, 1. & Gordm, H. (1991). Ulva lactuca as a biofilters for marine fishpond
effluents. II. Growth rate, yield and C : N ratio. Bot. Marina, 34, p. 483-489.
Neori, A. & Michael, D. & Krom, D. & Steve, P. & Claude, E. & Boyd, d. &Ruth, J. &
Rabinovitch. (1995). Seaweed biofilters as regulators of water quality in integrated fishseaweed culture units. Aquuculture 141 (1996), p. 183-199.
Neori, A. & Chopin, T. & Troell, M. & Buschmann, A. & Kraemer, G. & Halling, C.&
Shpigel, M. & Yarish, C. (2004). Integrated aquaculture: rationale, evolution and state of
the art emphasizing seaweed biofiltration in modern mariculture. Aquaculture, p. 123-240.
Nobre, A. & Robertson-Andersson, D. & Neori, A. & Sankar, K. (2010). Ecological–
economic assessment of aquaculture options: comparison between abalone monoculture and
integrated multi-trophic aquaculture of abalone and seaweeds. Aquaculture 306, p. 116–126.
Olesen, I. & Myhr, A. & Rosendal, G. (2011). Sustainable aquaculture: are we getting
thereEthical perspectives on salmon farming. J. Agric. Environ. Ethics 24 (4), p. 381–408.
Osako, K. & Ohashi, S. & Hossain, M. & Kuwahara, K. & Okamoto, A. & Nozaki, Y.
& Furukawa, M. (2004). The aptitude of sea lettuce (Ulva pertusa) as a diet for abalone,
from a nutritional viewpoint. Suisanzoshoku, p. 401–406.
Pagand, P. & Blancheton, J.P. & Lemoalle, J. & Casellas, C. (2000). The use of high rate
algal ponds for the treatment of marine effluent from a recirculating fish rearing system.
Aquac. Res. 31, p. 729–736.
Risso. (1827). Biologie du mulet Liza Ramada. [En ligne]. Consulté le [12/01/2015].
Disponible sur le web : < www.wikipedia.goov.fr >.
RYTHER, J. & H, CORWIN. & DEBUSK T, A. & WILLIAMS, L. (1981). Nitrogen
uptake and storage by red algae Gracilaria tikvahiae (McLachlan, 1979).Aquaculture, N°26,
p. 107-115.
Sheldon, R. & Prakash, W. Sutcliffe, Jr. (1972). Limnology and Oceanography, Vol. 17,
No. 3 .1972, p. 327-340.
Shi-Yang Zhang. & Gu Li. & Hui-Bi, W. & Xing-Gu, L. & Yan-Hong, W. & Ling, T.
& Huang Liu. (2011). An integrated recirculating aquaculture system (RAS) for land-based
fish farming: The effects on water quality and fish production. Aquacultural Engineering 45,
p. 93– 102.
Troell, M. & Kautsky, N. & Folke, C. (1999). Applicability of inte-grated coastal
aquaculture systems. Ocean Coast. Manag, p. 63 – 69.
Troell, M. & Halling, C. & Neori, A. & Chopin, T. & Buschmann, A. & Kautsky, N. &
Yarish, C. (2003). Integrated mariculture: asking the right questions. Aquaculture 226, p.
69–90.
Yi Zhou, Z. (2005).Bioremediation potential of the macroalga Gracilaria lemaneiformis
(Rhodophyta) integrated into fed fish culture in coastal waters of north China. Aquaculture
252, p. 264 – 276.
Ziemann, D. & Walsh, W. & Saphore, E. & Fulton-Bennett, K. (1992). A survey of water
quality characteristicsof effluents from Hawaiian aquaculture facilities. J. World Aquacult.
Sot., 23,p. 180- 191.
50
Naylor, R. & Goldburg, R. & Primavera, J. & Kautsky, N. & Beveridge, M. & Clay,
J. & Folke, C. & Lubchenco, J. & Mooney, H. & Troell, M. (2000). Effect of aquaculture
on world fishsupplies. Nature, 405, p. 1017-1024.
Neori, A. & Cohen, 1. & Gordm, H. (1991). Ulva lactuca as a biofilters for marine fishpond
effluents. II. Growth rate, yield and C : N ratio. Bot. Marina, 34, p. 483-489.
Neori, A. & Michael, D. & Krom, D. & Steve, P. & Claude, E. & Boyd, d. &Ruth, J. &
Rabinovitch. (1995). Seaweed biofilters as regulators of water quality in integrated fishseaweed culture units. Aquuculture 141 (1996), p. 183-199.
Neori, A. & Chopin, T. & Troell, M. & Buschmann, A. & Kraemer, G. & Halling, C.&
Shpigel, M. & Yarish, C. (2004). Integrated aquaculture: rationale, evolution and state of
the art emphasizing seaweed biofiltration in modern mariculture. Aquaculture, p. 123-240.
Nobre, A. & Robertson-Andersson, D. & Neori, A. & Sankar, K. (2010). Ecological–
economic assessment of aquaculture options: comparison between abalone monoculture and
integrated multi-trophic aquaculture of abalone and seaweeds. Aquaculture 306, p. 116–126.
Olesen, I. & Myhr, A. & Rosendal, G. (2011). Sustainable aquaculture: are we getting
thereEthical perspectives on salmon farming. J. Agric. Environ. Ethics 24 (4), p. 381–408.
Osako, K. & Ohashi, S. & Hossain, M. & Kuwahara, K. & Okamoto, A. & Nozaki, Y.
& Furukawa, M. (2004). The aptitude of sea lettuce (Ulva pertusa) as a diet for abalone,
from a nutritional viewpoint. Suisanzoshoku, p. 401–406.
Pagand, P. & Blancheton, J.P. & Lemoalle, J. & Casellas, C. (2000). The use of high rate
algal ponds for the treatment of marine effluent from a recirculating fish rearing system.
Aquac. Res. 31, p. 729–736.
Risso. (1827). Biologie du mulet Liza Ramada. [En ligne]. Consulté le [12/01/2015].
Disponible sur le web : < www.wikipedia.goov.fr >.
RYTHER, J. & H, CORWIN. & DEBUSK T, A. & WILLIAMS, L. (1981). Nitrogen
uptake and storage by red algae Gracilaria tikvahiae (McLachlan, 1979).Aquaculture, N°26,
p. 107-115.
Sheldon, R. & Prakash, W. Sutcliffe, Jr. (1972). Limnology and Oceanography, Vol. 17,
No. 3 .1972, p. 327-340.
Shi-Yang Zhang. & Gu Li. & Hui-Bi, W. & Xing-Gu, L. & Yan-Hong, W. & Ling, T.
& Huang Liu. (2011). An integrated recirculating aquaculture system (RAS) for land-based
fish farming: The effects on water quality and fish production. Aquacultural Engineering 45,
p. 93– 102.
Troell, M. & Kautsky, N. & Folke, C. (1999). Applicability of inte-grated coastal
aquaculture systems. Ocean Coast. Manag, p. 63 – 69.
Troell, M. & Halling, C. & Neori, A. & Chopin, T. & Buschmann, A. & Kautsky, N. &
Yarish, C. (2003). Integrated mariculture: asking the right questions. Aquaculture 226, p.
69–90.
Yi Zhou, Z. (2005).Bioremediation potential of the macroalga Gracilaria lemaneiformis
(Rhodophyta) integrated into fed fish culture in coastal waters of north China. Aquaculture
252, p. 264 – 276.
Ziemann, D. & Walsh, W. & Saphore, E. & Fulton-Bennett, K. (1992). A survey of water
quality characteristicsof effluents from Hawaiian aquaculture facilities. J. World Aquacult.
Sot., 23,p. 180- 191.
