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Original Articles

Nutrient and chlorophyll a variability at six stations associated with mussel farming in Pelorus Sound, 1984–85

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Pages 197-211 | Received 13 Aug 1991, Accepted 03 Feb 1992, Published online: 29 Mar 2010

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Read on this site (10)

Niall Broekhuizen, David R. Plew, Matt. H. Pinkerton & Mark. G. Gall. (2021) Sea temperature rise over the period 2002–2020 in Pelorus Sound, New Zealand – with possible implications for the aquaculture industry. New Zealand Journal of Marine and Freshwater Research 55:1, pages 46-64.
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Lincoln MacKenzie & Janet Adamson. (2004) Water column stratification and the spatial and temporal distribution of phytoplankton biomass in Tasman Bay, New Zealand: Implications for aquaculture. New Zealand Journal of Marine and Freshwater Research 38:4, pages 705-728.
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M. Gibbs, A. Ross & M. Downes. (2002) Nutrient cycling and fluxes in Beatrix Bay, Pelorus Sound, New Zealand. New Zealand Journal of Marine and Freshwater Research 36:4, pages 675-697.
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JonathanP. A. Gardner & RaymondJ. Thompson. (2001) Naturally low seston concentration and the net energy balance of the greenshell mussel (Perna canaliculus) at Island Bay, Cook Strait, New Zealand. New Zealand Journal of Marine and Freshwater Research 35:3, pages 457-468.
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M. R. James, M. A. Weatherhead & A. H. Ross. (2001) Size‐specific clearance, excretion, and respiration rates, and phytoplankton selectivity for the mussel Perna canaliculus at low levels of natural food. New Zealand Journal of Marine and Freshwater Research 35:1, pages 73-86.
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Roger Proctor & Mark Hadfield. (1998) Numerical investigation into the effect of freshwater inputs on the circulation in Pelorus Sound, New Zealand. New Zealand Journal of Marine and Freshwater Research 32:3, pages 467-482.
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P. J. H. Sutton & M. G. Hadfield. (1997) Aspects of the hydrodynamics of Beatrix Bay and Pelorus Sound, New Zealand. New Zealand Journal of Marine and Freshwater Research 31:2, pages 271-279.
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M. M. Gibbs & W. N. Vant. (1997) Seasonal changes in factors controlling phytoplankton growth in Beatrix Bay, New Zealand. New Zealand Journal of Marine and Freshwater Research 31:2, pages 237-248.
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M. M. Gibbs. (1993) Morphometrically induced estuarine phytoplankton patchiness in Pelorus Sound, New Zealand. New Zealand Journal of Marine and Freshwater Research 27:2, pages 191-199.
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Articles from other publishers (17)

Bradley M. Skelton & Andrew G. Jeffs. (2021) The loss of spat following seeding onto coastal Greenshell™ mussel (Perna canaliculus) farms. Aquaculture 544, pages 737115.
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Jenny Weitzman, Laura Steeves, Jessica Bradford & Ramón Filgueira. 2019. World Seas: An Environmental Evaluation. World Seas: An Environmental Evaluation 197 220 .
Nigel B. Keeley, Catriona K. Macleod, David Taylor & Reid Forrest. (2017) Comparison of three potential methods for accelerating seabed recovery beneath salmon farms. Aquaculture 479, pages 652-666.
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J Atalah, H Rabel & BM Forrest. (2017) Modelling long-term recruitment patterns of blue mussels Mytilus galloprovincialis: a biofouling pest of green-lipped mussel aquaculture in New Zealand. Aquaculture Environment Interactions 9, pages 103-114.
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A. Delegrange, D. Vincent, M. Duret & R. Amara. (2015) The use of mussels for mitigating the noxious effect of phytoplankton spring blooms on farmed fish. Aquacultural Engineering 66, pages 52-61.
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JR Zeldis, MG Hadfield & DJ Booker. (2013) Influence of climate on Pelorus Sound mussel aquaculture yields: predictive models and underlying mechanisms. Aquaculture Environment Interactions 4:1, pages 1-15.
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Jeremy G. Helson, Shirley Pledger & Jonathan P.A. Gardner. (2007) Does differential particulate food supply explain the presence of mussels in Wellington Harbour (New Zealand) and their absence on neighbouring Cook Strait shores?. Estuarine, Coastal and Shelf Science 72:1-2, pages 223-234.
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Jeffrey S. Ren & Alex H. Ross. (2005) Environmental influence on mussel growth: A dynamic energy budget model and its application to the greenshell mussel Perna canaliculus. Ecological Modelling 189:3-4, pages 347-362.
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N.D. Hartstein. (2005) Acoustical and Sedimentological Characterization of Substrates in and Around Sheltered and Open-Ocean Mussel Aquaculture Sites and Its Bearing on the Dispersal of Mussel Debris. IEEE Journal of Oceanic Engineering 30:1, pages 85-94.
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D.R. Plew, C.L. Stevens, R.H. Spigel & N.D. Hartstein. (2005) Hydrodynamic Implications of Large Offshore Mussel Farms. IEEE Journal of Oceanic Engineering 30:1, pages 95-108.
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Shaun C Ogilvie, Steve P Fox, Alex H Ross, Mark R James & David R Schiel. (2004) Growth of cultured mussels (Perna canaliculus Gmelin 1791) at a deep-water chlorophyll maximum layer. Aquaculture Research 35:13, pages 1253-1260.
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K.J Paterson, M Schreider & K.D Zimmerman. (2003) Effect of catchment disturbance on seston quality and quantity in Brisbane Water, NSW. Estuarine, Coastal and Shelf Science 56:2, pages 355-368.
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Jonathan P.A Gardner. (2002) Effects of seston variability on the clearance rate and absorption efficiency of the mussels Aulacomya maoriana, Mytilus galloprovincialis and Perna canaliculus from New Zealand. Journal of Experimental Marine Biology and Ecology 268:1, pages 83-101.
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M R Brown & M A McCausland. (2000) Increasing the growth of juvenile Pacific oysters Crassostrea gigas by supplementary feeding with microalgal and dried diets . Aquaculture Research 31:8-9, pages 671-682.
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M R Brown & M A McCausland. (2000) Increasing the growth of juvenile Pacific oysters Crassostrea gigas by supplementary feeding with microalgal and dried diets. Aquaculture Research 31:8-9, pages 671-682.
Crossref
Shaun C Ogilvie, Alex H Ross & David R Schiel. (2000) Phytoplankton biomass associated with mussel farms in Beatrix Bay, New Zealand. Aquaculture 181:1-2, pages 71-80.
Crossref
Malcolm R Brown, Malcolm A McCausland & Kris Kowalski. (1998) The nutritional value of four Australian microalgal strains fed to Pacific oyster Crassostrea gigas spat. Aquaculture 165:3-4, pages 281-293.
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