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Biosorption of lead and nickel by biomass of marine algae

Biotechnology and Bioengineering · 1994 · Vol. 43(11) · pp. 1001–1009
Z. R. HolanBohumil Volesky

Abstract

Screening tests of different marine algae biomas types revealed a high passive biosorptive uptake of lead up to 270 mg Pb/g of biomass in some brown marine algae. Members of the order Fucales perfomed particularly well in this descending sequence: Fucus > Ascophyllum > Sargassum. Although decreasing the swelling of wetted biomass particles, their reinforcement by crosslinking may significantly affect the biosorption performance. Lead uptakes up to 370 mg Pb/g were observed in crosslinked Fucus vesiculosus and Ascophyllum nodosum. At low equilibrium residual concentrations of lead in solution, however, ion exchange resin Amberlite IR-120 had a higher lead uptake than the biosorbent materials. An order-of-magnitude lower uptake of nickel was observed in all of the sorbent materials examined. (c) 1994 John Wiley & Sons, Inc.

Adsorption and biosorption for pollutant removalHeavy metals in environmentPhosphorus and nutrient managementFucus vesiculosusAscophyllumBrown algaeAlgaeFucalesBiosorptionBiomass (ecology)ChemistryEnvironmental chemistryBotany
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References
Uronic acid sequence in alginate from different sources
Carbohydrate Research · 1974 · 491 citations
Heavy metal biosorption by fungal mycelial by-products: mechanisms and influence of pH
Applied Microbiology and Biotechnology · 1992 · 721 citations
Biosorption of cadmium by biomass of marine algae
Biotechnology and Bioengineering · 1993 · 484 citations
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