Biotechnological potential of Microcystis sp. in Cu, Zn and Cd biosorption from single and multimetallic systems
Explore this paper's citation graph
Summary
Results suggest that Microcystis holds great potential for metal biosorption from mixture, especially at relatively higher concentrations of interfering metal ion.
- Type
- article
- Published
- 2001-03-01
- Cited by
- 49
- References
- 31
- OpenAlex
- https://openalex.org/W192646859
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:39176681
Keywords
Biosorption, Metal, Chemistry, Adsorption, Microcystis
References
- Chemistry of the solid-water interface
- Uptake of Metal Ions by Rhizopus arrhizus Biomass
- Concise inorganic chemistry
- Bacterial sorption of heavy metals
- Sorption of metal ions by whole cells of bacillus and micrococcus
- Biosorption of Heavy Metals
- Considerations on the use of commercially available yeast biomass for the treatment of metal-containing effluents
- Behaviour of lignocellulosic apple residues in the sorption of trace metals in packed beds
- Modeling Multi-Metal Ion Exchange in Biosorption
- ADSORPTION AND UPTAKE OF COPPER BY THE GREEN ALGA SCENEDESMUS SUBSPICATUS (CHLOROPHYTA) 1
- Binding of Cu(II) to the Surface and Exudates of the Alga Dunaliella tertiolecta in Seawater.
- Interactions of metals and protons with algae.
- Application of multicomponent adsorption isotherms to simultaneous biosorption of iron(III) and chromium(VI) on C. vulgaris
- Biosorption of lead and nickel by biomass of marine algae
- Polyethyleneimine adduct of poly(vinyl benzaldehyde): A highly selective sorbent for iron(III)
- Sorption and desorption of Cu and Cd by macroalgae and microalgae.
- The simultaneous biosorption of Cr(VI), Fe(III) and Cu(II) on Rhizopus arrhizus
- Biosorption of heavy metals (Cd, Cu, Ni, Pb, Zn) by chemically-reinforced biomass of marine algae
- STUDIES ON THE BIOSORPTION OF HEAVY METALS ONTO CHLORELLA VULGARIS
- Uptake of cadmium and zinc by yeast: Effects of co-metal ion and physical/chemical treatments
Cited by
- Multimetal biosorption modeling of Zn2+, Cu2+ and Ni2+ by Sargassum ilicifolium
- Differential pulse polarography: a method for the direct study of biosorption of metal ions by live bacteria from mixed metal solutions
- 중증장애인의 직업생활 참여를 위한 근로지원인 제도 정착과 과제
- Biosorption of uranium by lake-harvested biomass from a cyanobacterium bloom.
- Kinetic and equilibrium adsorption of Cu(II) and Cd(II) ions on Eichhornia crassipes in single and binary systems
- Molecular characterization of some novel marine Alicyclobacillus strains, capable of removing lead from a heavy metal contaminated sea spot.
- Biosorption of heavy metals from industrial waste water by Geobacillus thermodenitrificans.
- Characterization of various functional groups present in the capsule of Microcystis and study of their role in biosorption of Fe, Ni and Cr.
- Optimization studies on Biosorption of Copper (II) by Crab Shell Using Response Surface Methodology(RSM)
- Selectivity in the heavy metal removal by exopolysaccharide‐producing cyanobacteria
- Influence of Nickel and Cadmium Resistant PGPB on Metal Accumulation and Growth Responses of Lycopersicon esculentum Plants Grown in Fly Ash Amended Soil
- Testing the photosynthetic bacterium Rhodobacter sphaeroides as heavy metal removal tool.
- Toxicity of metal mixtures to a tropical freshwater alga (Chlorella sp.): The effect of interactions between copper, cadmium, and zinc on metal cell binding and uptake
- Nostoc, Microcoleus and Leptolyngbya inoculums are detrimental to the growth of wheat (Triticum aestivum L.) under salt stress
- Effects of anions on the biosorption of microelement cations by macroalga Enteromorpha prolifera in single- and multi-metal systems
- Removal of lead and copper ions from aqueous solutions by bacterial strain isolated from soil
- Heavy metal ion influence on the photosynthetic growth of Rhodobacter sphaeroides.
- Role of metal resistant plant growth promoting bacteria in ameliorating fly ash to the growth of Brassica juncea.
- Biosorption of antimony(V) by freshwater cyanobacteria Microcystis biomass: Chemical modification and biosorption mechanisms
- Biosorption of nickel and cadmium by metal resistant bacterial isolates from agricultural soil irrigated with industrial wastewater.
Related papers
- Surfactant Adsorption Isotherms: A Review
- Study on adsorption of Co~(2+), Cd~(2+) on humic acid
- Biosorption Kinetics and Isotherm Studies of Cd(II) by Dried Enteromorpha compressa Macroalgae Cells from Aqueous Solutions
- Study on Adsorption of Bacteria on Anion Exchange Resins
- Removal of Methyl Violet by Adsorption onto Activated Carbon Derived from Coffee Residues
- Modeling of adsorption isotherms on the addition of an inhibitor Myrmecodia Pendans extract with temperature variation
- Adsorption properties of magnetic chitosan nanoparticle for humic acid and heavy metal ions
- Biosorption performance of thiosalicylic acid modified isatis tinctoria for Pb(II) and Cd(II) ions: batch and column studies
- Cellulose-Based Native and Surface Modified Fruit Peels for the Adsorption of Heavy Metal Ions from Aqueous Solution: Langmuir Adsorption Isotherms