200
C.M.G. van den Berg
Donat JR, Kango RA, Gordon AS (1997) Evaluation of immobilized metal affinity chromatography
(IMAC) for isolation and recovery of strong copper-complexing ligands from marine waters. Mar
Chern 57:1-10
Florence TM, Stauber JL (1986) Toxicity of copper-complexes to the marine diatom Nitzschia
closterium. Aquatic Toxicology 8:11-26
Florence TM, Powell HKJ, Stauber JL, Town RM (1992) Toxicity of lipid-soluble copper(II) complexes
to the marine diatom Nitzschia closterium - amelioration by humic substances. Wat Res 26:1187-1193
Gledhill M, van den Berg CMG (1994) Determination of complexation of iron(III) with natural organic complexing ligands in sea water using cathodic stripping voltammetry. Mar Chern 47:41-54
Hudson RJM, Morel FMM (1990) Iron transport in marine phytoplankton: KiJ;letics of cellular and
medium coordination reactions. Limnol Oceanogr 35=1002-1020
Johnson KS, Gordon RM, Coale KH (1997) What controls dissolved iron concentrations in the world
ocean? Mar Chern 57:137-161
Leal MFC, van den Berg CMG (1998) Evidence for strong copper(I) complexation by organic
complexing ligands in seawater. Aquat Geoch 4:49-75
Le Gall A-C, van den Berg CMG (1998) Folic acid and glutathione in the water column of the North
East Atlantic. Deep-Sea Res I 45=1903-1918
Martin JH, Gordon RM (1988) Northeast Pacific iron distributions in relation to phytoplankton productivity. Deep-Sea Res 35:177-196
Martin JH, Gordon RM, Fitzwater SE, Broenkow WW (1989) VERTEX: Phytoplankton/iron studies in
the Gulf of Alaska. Deep-Sea Res 35:649-680
Martin JH, Gordon RM, Fitzwater SE (1991) The case for iron. Limnol Oceanogr 36:1793-1802
Martin JH, Fitzwater SE, Gordon RM, Hunter CN, Tanner SJ (1993) Iron, primary production and carbon-nitrogen flux studies during the JGOFS North Atlantic Bloom Experiment. Deep-Sea Res II
40:115-134
Morelli E, Scarano G, Ganni M, Nannicini L, Seritti A (1989) Copper binding ability of the extracellular
organic matter released by Skeletonema costatum. Chemical Speciation and Bioavailability 1:71-76
Neilands JB (1967) Hydroxamic acids in nature. Science 156:1443-1447
Reid RT, Butler A (1991) Investigation of the mechanism of iron acquisition by the marine bacterium
Alteromonas luteoviolaceus: Characterization of siderophore production. Limnol Oceanogr
36:1783-1792
Reid RT, Live DG, Faulkner OJ, Butler A (1993) A siderophore from a marine bacterium with an exceptional ferric ion affinity constant. Nature 366:455-458
Rue EL, Bruland KW (1995) Complexation of iron(III) by natural organic ligands in the Central North
Pacific as determined by a new competitive ligand equilibration/adsorptive cathodic stripping
voltammetric method. Mar Chern 50:117-138
Rue EL, Bruland KW (1997) The role of organic complexation on ambient iron chemistry in the equatorial Pacific Ocean and the response of a mesoscale iron addition experiment. Limnol Oceanogr
42: 901-910
Scarano G, Morelli E (1996) Determination of phytochelatins by cathodic stripping voltammetry in
the presence of copper(II). Anal Chim Acta 319:13-19
Sunda WG, Gessner RV (1989) The production of extracellular copper-complexing ligands by marine
and estuarine fungi. Chemical Speciation and Bioavailability 1:65-70
Turner DR, Whitfield M, Dickson AG (1981) The equilibrium speciation of dissolved components in
freshwater and seawater at 25°C at 1 atm pressure. Geochim Cosmochim Acta 45:855-882
van den Berg CMG (1995) Evidence for organic complexation of iron in seawater. Mar Chern 50:139-157
van den Berg CMG, Wong PTS, Chau YK (1979) Measurement of complexing materials excreted from
algae and their ability to ameliorate copper toxicity. J Fish Res B Canada 36:901-905
van den Berg CMG, Boussemart M, Yokoi K, Prartono T, Campos MLAM (1994) Speciation of aluminium, chromium and titanium in the NW Mediterranean. Mar Chern 45:267-282
Zhou M, Wangersky PJ (1989) Study of copper-complexing organic ligands: Isolation by a Sep-pak
C18 column extraction technique and characterization by chromarod thin-layer chromatography.
Mar Chern 26:21-40
C.M.G. van den Berg
Donat JR, Kango RA, Gordon AS (1997) Evaluation of immobilized metal affinity chromatography
(IMAC) for isolation and recovery of strong copper-complexing ligands from marine waters. Mar
Chern 57:1-10
Florence TM, Stauber JL (1986) Toxicity of copper-complexes to the marine diatom Nitzschia
closterium. Aquatic Toxicology 8:11-26
Florence TM, Powell HKJ, Stauber JL, Town RM (1992) Toxicity of lipid-soluble copper(II) complexes
to the marine diatom Nitzschia closterium - amelioration by humic substances. Wat Res 26:1187-1193
Gledhill M, van den Berg CMG (1994) Determination of complexation of iron(III) with natural organic complexing ligands in sea water using cathodic stripping voltammetry. Mar Chern 47:41-54
Hudson RJM, Morel FMM (1990) Iron transport in marine phytoplankton: KiJ;letics of cellular and
medium coordination reactions. Limnol Oceanogr 35=1002-1020
Johnson KS, Gordon RM, Coale KH (1997) What controls dissolved iron concentrations in the world
ocean? Mar Chern 57:137-161
Leal MFC, van den Berg CMG (1998) Evidence for strong copper(I) complexation by organic
complexing ligands in seawater. Aquat Geoch 4:49-75
Le Gall A-C, van den Berg CMG (1998) Folic acid and glutathione in the water column of the North
East Atlantic. Deep-Sea Res I 45=1903-1918
Martin JH, Gordon RM (1988) Northeast Pacific iron distributions in relation to phytoplankton productivity. Deep-Sea Res 35:177-196
Martin JH, Gordon RM, Fitzwater SE, Broenkow WW (1989) VERTEX: Phytoplankton/iron studies in
the Gulf of Alaska. Deep-Sea Res 35:649-680
Martin JH, Gordon RM, Fitzwater SE (1991) The case for iron. Limnol Oceanogr 36:1793-1802
Martin JH, Fitzwater SE, Gordon RM, Hunter CN, Tanner SJ (1993) Iron, primary production and carbon-nitrogen flux studies during the JGOFS North Atlantic Bloom Experiment. Deep-Sea Res II
40:115-134
Morelli E, Scarano G, Ganni M, Nannicini L, Seritti A (1989) Copper binding ability of the extracellular
organic matter released by Skeletonema costatum. Chemical Speciation and Bioavailability 1:71-76
Neilands JB (1967) Hydroxamic acids in nature. Science 156:1443-1447
Reid RT, Butler A (1991) Investigation of the mechanism of iron acquisition by the marine bacterium
Alteromonas luteoviolaceus: Characterization of siderophore production. Limnol Oceanogr
36:1783-1792
Reid RT, Live DG, Faulkner OJ, Butler A (1993) A siderophore from a marine bacterium with an exceptional ferric ion affinity constant. Nature 366:455-458
Rue EL, Bruland KW (1995) Complexation of iron(III) by natural organic ligands in the Central North
Pacific as determined by a new competitive ligand equilibration/adsorptive cathodic stripping
voltammetric method. Mar Chern 50:117-138
Rue EL, Bruland KW (1997) The role of organic complexation on ambient iron chemistry in the equatorial Pacific Ocean and the response of a mesoscale iron addition experiment. Limnol Oceanogr
42: 901-910
Scarano G, Morelli E (1996) Determination of phytochelatins by cathodic stripping voltammetry in
the presence of copper(II). Anal Chim Acta 319:13-19
Sunda WG, Gessner RV (1989) The production of extracellular copper-complexing ligands by marine
and estuarine fungi. Chemical Speciation and Bioavailability 1:65-70
Turner DR, Whitfield M, Dickson AG (1981) The equilibrium speciation of dissolved components in
freshwater and seawater at 25°C at 1 atm pressure. Geochim Cosmochim Acta 45:855-882
van den Berg CMG (1995) Evidence for organic complexation of iron in seawater. Mar Chern 50:139-157
van den Berg CMG, Wong PTS, Chau YK (1979) Measurement of complexing materials excreted from
algae and their ability to ameliorate copper toxicity. J Fish Res B Canada 36:901-905
van den Berg CMG, Boussemart M, Yokoi K, Prartono T, Campos MLAM (1994) Speciation of aluminium, chromium and titanium in the NW Mediterranean. Mar Chern 45:267-282
Zhou M, Wangersky PJ (1989) Study of copper-complexing organic ligands: Isolation by a Sep-pak
C18 column extraction technique and characterization by chromarod thin-layer chromatography.
Mar Chern 26:21-40
