Copper accumulation by two bivalve molluscs: Salinity effect is independent of cupric ion activity
暂无分享,去创建一个
[1] C. Zamuda,et al. The importance of dissolved organic compounds in the accumulation of copper by the american oyster, crassostrea virginica , 1985 .
[2] D. Wright,et al. Factors affecting trace metal accumulation by estuarine oysters Crassostrea virginica , 1985 .
[3] R. Schenck. Copper deficiency and toxicity in Gonyaulax tamarensis (Lebour) , 1984 .
[4] W. Sunda,et al. Free Cupric Ion Activity in Seawater: Effects on Metallothionein and Growth in Crab Larvae , 1983, Science.
[5] W. Fitzgerald,et al. The capacity of marine plankton, macrophytes and particulate matter to adsorb Cu2+ in the presence of Mg2+ , 1983 .
[6] M. Ahsanullah,et al. The significance of temperature, salinity and zinc as lethal factors for the mussel Mytilus edulis in a polluted estuary , 1982 .
[7] C. Zamuda,et al. Bioavailability of dissolved copper to the American oyster Crassostrea virginica. I. Importance of chemical speciation , 1982 .
[8] G. Denton,et al. Influence of temperature and salinity on the uptake, distribution and depuration of mercury, cadmium and lead by the black-lip oyster Saccostrea echinata , 1981 .
[9] K. Oberholser,et al. Nature of bonding between metallic ions and algal cell walls , 1981 .
[10] S. Pierce,et al. Control mechanisms of amino acid‐mediated cell volume regulation in salinity‐stressed molluscs , 1981 .
[11] D. Phillips. Seasonal Variation and Inherent Variability of Trace Elements in Oysters and Their lmplications for Indicator Studies , 1981 .
[12] F. Morel,et al. AQUIL: A CHEMICALLY DEFINED PHYTOPLANKTON CULTURE MEDIUM FOR TRACE METAL STUDIES 1 2 , 1979 .
[13] J. P. Riley,et al. The complexation of metals with humic materials in natural waters , 1978 .
[14] F. Morel,et al. Copper sensitivity of Gonyaulax tamarensis 1 , 1978 .
[15] D. Sutcliffe,et al. Effects of pollutants on aquatic organisms , 1978 .
[16] T. L. Coombs,et al. THE EFFECT OF SALINITY ON THE UPTAKE OF CADMIUM BY THE COMMON MUSSEL, MYTILUS EDULIS (L.) , 1978 .
[17] D. Phillips. Effects of salinity on the net uptake of zinc by the common mussel Mytilus edulis , 1977 .
[18] S. Shumway. Effect of salinity fluctuation on the osmotic pressure and Na+, Ca2+ and Mg2+ ion concentrations in the hemolymph of bivalve molluscs , 1977 .
[19] G. Morrison,et al. Effects of environmental factors on radiocadmium uptake by four species of marine bivalves , 1977 .
[20] D. Wright. The Effect of Salinity on Cadmium Uptake by the Tissues of the Shore Crab Carcinus Maenas , 1977 .
[21] D. Phillips. The common mussel Mytilus edulis as an indicator of pollution by zinc, cadmium, lead and copper. I. Effects of environmental variables on uptake of metals , 1976 .
[22] J. Frazier. The dynamics of metals in the American oyster, Crassostrea virginica . II. Environmental ef , 1976 .
[23] J. Frazier. The dynamics of metals in the American oyster, Crassostrea virginica . I. Seasonal effects , 1975 .
[24] W. Sunda. The relationship between cupric ion activity and the toxicity of copper to phytoplankton , 1975 .
[25] Rj Williams,et al. Heavy metals in cultivated oysters (Crassostrea commercialis = Saccostrea cucullata) from estuaries of New South Wales , 1975 .
[26] M. Schulz-Baldes. Lead uptake from sea water and food, and lead loss in the common mussel Mytilus edulis , 1974 .
[27] W. Carson,et al. Prediction of incipient lethal levels of copper to juvenile Atlantic Salmon in the presence of humic acid by cupric electrode , 1973, Bulletin of environmental contamination and toxicology.
[28] B. Bøhle. Effects of adaptation to reduced salinity on filtration activity and growth of mussels (Mytilus edulis L.) , 1972 .
[29] Sachio Yamamoto,et al. A pH‐DEPENDENT MODEL FOR THE CHEMICAL SPECIATION OF COPPER, ZINC, CADMIUM, AND LEAD IN SEAWATER , 1972 .
[30] G. Bryan,et al. Adaptation of the polychaete Nereis diversicolor to estuarine sediments containing high concentrations of heavy metals. I. General observations and adaptation to copper , 1971, Journal of the Marine Biological Association of the United Kingdom.
[31] M. Romeril. The uptake and distribution of 65Zn in oysters , 1971 .
[32] Arthur E. Martell,et al. Stability constants of metal-ion complexes , 1964 .