Modification of cyanobacterial bloom-derived biomass using potassium permanganate enhanced the removal of microcystins and adsorption capacity toward cadmium (II).
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Liang Peng | Genyi Wu | S. Luo | J. Gu | Huili Luo | Zhiyong Yan | Jidong Gu | J. Shao
[1] H Zhao,et al. Mechanism and application of solid phase adsorption toxin tracking for monitoring microcystins. , 2013, Journal of chromatography. A.
[2] Lionel Ho,et al. Impact of potassium permanganate on cyanobacterial cell integrity and toxin release and degradation. , 2013, Chemosphere.
[3] S. Valiyaveettil,et al. Apple peels--a versatile biomass for water purification? , 2013, ACS applied materials & interfaces.
[4] Jyothi Miranda,et al. Removal of Pb2+ from aqueous system by live Oscillatoria laete-virens (Crouan and Crouan) Gomont isolated from industrial effluents , 2012, World journal of microbiology & biotechnology.
[5] Junlian Qiao,et al. Immediate and long-term impacts of potassium permanganate on photosynthetic activity, survival and microcystin-LR release risk of Microcystis aeruginosa. , 2012, Journal of hazardous materials.
[6] R. Philippis,et al. Exopolysaccharide-producing cyanobacteria in heavy metal removal from water: molecular basis and practical applicability of the biosorption process , 2011, Applied Microbiology and Biotechnology.
[7] Q. Huang,et al. Binding characteristics of copper and cadmium by cyanobacterium Spirulina platensis. , 2011, Journal of hazardous materials.
[8] J. Parga,et al. Thermodynamic Studies of Chromium Adsorption on Iron Species Generated by Electrocoagulation , 2010 .
[9] T. Pradeep,et al. novel cellulose – manganese oxide hybrid material by in situ soft chemical ynthesis and its application for the removal of Pb ( II ) from water , 2010 .
[10] F. Barbosa,et al. Evaluation of the potential of microalgae Microcystis novacekii in the removal of Pb2+ from an aqueous medium. , 2010, Journal of hazardous materials.
[11] B. Gao,et al. Adsorption kinetics and desorption of Cu(II) and Zn(II) from aqueous solution onto humic acid. , 2010, Journal of hazardous materials.
[12] Seung-Mok Lee,et al. Removal Behavior of Surface Modified Sand for Cd(II) and Cr(VI) from Aqueous Solutions , 2010 .
[13] Kan Wang,et al. Biosorption of Copper by Cyanobacterial Bloom-Derived Biomass Harvested from the Eutrophic Lake Dianchi in China , 2010, Current Microbiology.
[14] Renhui Li,et al. Physiological responses of Microcystis aeruginosa PCC7806 to nonanoic acid stress , 2009, Environmental toxicology.
[15] B. Wei,et al. Alcohol-assisted room temperature synthesis of different nanostructured manganese oxides and their pseudocapacitance properties in neutral electrolyte , 2008 .
[16] J. Meriluoto,et al. Oxidation of MC-LR and -RR with chlorine and potassium permanganate: toxicity of the reaction products. , 2008, Water research.
[17] H. Lüthi,et al. Topology and enhanced toxicity of bound microcystins in Microcystis PCC 7806. , 2008, Toxicon : official journal of the International Society on Toxinology.
[18] Jussi Meriluoto,et al. Oxidation of microcystins by permanganate: reaction kinetics and implications for water treatment. , 2007, Water research.
[19] H. Seki,et al. Biosorption of chromium(VI) and arsenic(V) onto methylated yeast biomass. , 2005, Journal of colloid and interface science.
[20] Liu Yongding,et al. Mechanical removal of heavy cyanobacterial bloom in the hyper-eutrophic lake Dianchi , 2004 .
[21] L. Rai,et al. Copper removal by immobilized Microcystis aeruginosa in continuous flow columns at different bed heights: study of the adsorption/desorption cycle , 2001 .
[22] R. Brown,et al. Cellulose in cyanobacteria. Origin of vascular plant cellulose synthase? , 2001, Plant physiology.
[23] E. Hoiczyk,et al. Cyanobacterial Cell Walls: News from an Unusual Prokaryotic Envelope , 2000, Journal of bacteriology.
[24] E. Hoiczyk. Structural and Biochemical Analysis of the Sheath of Phormidium uncinatum , 1998, Journal of bacteriology.
[25] J. M. Brady,et al. Binding of hard and soft metal ions to Rhizopus arrhizus biomass , 1995 .