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Reduction of toxic hexavalent chromium by Ochrobactrum intermedium strain SDCr-5 stimulated by heavy metalsSULTAN, Sikander; HASNAIN, Shahida.Bioresource technology. 2007, Vol 98, Num 2, pp 340-344, issn 0960-8524, 5 p.Article

Characterization of an Ochrobactrum intermedium strain STCr-5 manifesting high level Cr(VI) resistance and reduction potentialSULTAN, Sikander; HASNAIN, Shahida.Enzyme and microbial technology. 2006, Vol 39, Num 4, pp 883-888, issn 0141-0229, 6 p.Article

The effectiveness of ferrous iron and sodium dithionite for decreasing resin-extractable Cr(VI) in Cr(VI)-spiked alkaline soilsCHENG, Chia-Jung; LIN, Tzu-Huei; CHEN, Chiou-Pin et al.Journal of hazardous materials (Print). 2009, Vol 164, Num 2-3, pp 510-516, issn 0304-3894, 7 p.Article

Cr(VI) Resistance and Removal by Indigenous Bacteria Isolated from Chromium-Contaminated SoilDONGYAN LONG; XIANJIN TANG; KUAN CAI et al.Journal of microbiology and biotechnology. 2013, Vol 23, Num 8, pp 1123-1132, issn 1017-7825, 10 p.Article

Isolation and characterization of a Cr(VI)-reduction Ochrobactrum sp. strain CSCr-3 from chromium landfillZHIGUO HE; FENGLING GAO; TAO SHA et al.Journal of hazardous materials (Print). 2009, Vol 163, Num 2-3, pp 869-873, issn 0304-3894, 5 p.Article

Isolation, identification and characterization of a Hypocrea tawa strain with high Cr(VI) reduction potentialMORALES-BARRERA, Liliana; GUILLEN-JIMENEZ, Flor De Maria; ORTIZ-MORENO, Alicia et al.Biochemical engineering journal. 2008, Vol 40, Num 2, pp 284-292, issn 1369-703X, 9 p.Article

Effect of stable weak magnetic field on Cr(VI) bio-removal in anaerobic SBR systemXU, Y. B; SUN, S. Y.Biodegradation (Dordrecht). 2008, Vol 19, Num 3, pp 455-462, issn 0923-9820, 8 p.Article

Mechanism study of selective heavy metal ion removal with polypyrrole-functionalized polyacrylonitrile nanofiber matsJIANQIANG WANG; CHAO LUO; GENGGENG QI et al.Applied surface science. 2014, Vol 316, pp 245-250, issn 0169-4332, 6 p.Article

Stripping of copper coatings from steel in Cr(VI)-free commercial bathSIMKA, Wojciech; NAWRAT, Ginter; NIEUZYLA, Lukasz et al.Journal of hazardous materials (Print). 2009, Vol 168, Num 1, pp 193-196, issn 0304-3894, 4 p.Article

Identification and hexavalent chromium reduction characteristics of Pannonibacter phragmitetusYAN SHI; LIYUAN CHAI; ZHIHUI YANG et al.Bioprocess and biosystems engineering (Print). 2012, Vol 35, Num 5, pp 843-850, issn 1615-7591, 8 p.Article

Reduction of high concentrations of chromate by Leucobacter sp. CRB1 isolated from Changsha, ChinaWENJIE ZHU; ZHIHUI YANG; ZEMIN MA et al.World journal of microbiology & biotechnology. 2008, Vol 24, Num 7, pp 991-996, issn 0959-3993, 6 p.Article

Comparison of in vitro Cr(VI) reduction by CFEs of chromate resistant bacteria isolated from chromate contaminated soilSARANGI, Abhipsa; KRISHNAN, Chandraraj.Bioresource technology. 2008, Vol 99, Num 10, pp 4130-4137, issn 0960-8524, 8 p.Article

Modulation of tolerance to Cr(VI) and Cr(VI) reduction by sulfate ion in a Candida yeast strain isolated from tannery wastewaterGUILLEN-JIMENEZ, Flor De Maria; MORALES-BARRERA, Liliana; MORALES-JIMENEZ, Jesus et al.Journal of industrial microbiology & biotechnology. 2008, Vol 35, Num 11, pp 1277-1287, issn 1367-5435, 11 p.Conference Paper

Hexavalent chromium removal in vitro and from industrial wastes, using chromate-resistant strains of filamentous fungi indigenous to contaminated wastesACEVEDO-AGUILAR, Francisco Javier; ESPINO-SALDANA, Angeles Edith; LIZZULI LEON-RODRIGUEZ, Ireri et al.Canadian journal of microbiology. 2006, Vol 52, Num 9, pp 809-815, issn 0008-4166, 7 p.Article

Hexavalent Chromium Removal by Candida sp. in a Concentric Draft-Tube Airlift BioreactorGUILLEN-JIMENEZ, Flor De Maria; NETZAHUATL-MUNOZ, Alma Rosa; MORALES-BARRERA, Liliana et al.Water, air and soil pollution. 2009, Vol 204, Num 1-4, pp 43-51, issn 0049-6979, 9 p.Article

Isolation and characterization of Cr(VI) reducing Cellulomonas spp. from subsurface soils : Implications for long-term chromate reductionVIAMAJALA, Sridhar; SMITH, William A; SANI, Rajesh K et al.Bioresource technology. 2007, Vol 98, Num 3, pp 612-622, issn 0960-8524, 11 p.Article

Removal of hexavalent chromium using distillery sludgeSELVARAJ, K; MANONMANI, S; PATTABHI, S et al.Bioresource technology. 2003, Vol 89, Num 2, pp 207-211, issn 0960-8524, 5 p.Article

The effectiveness of four organic matter amendments for decreasing resin-extractable Cr(VI) in Cr(VI)-contaminated soilsCHIU, Chien-Chih; CHENG, Chia-Jung; LIN, Tzu-Huei et al.Journal of hazardous materials (Print). 2009, Vol 161, Num 2-3, pp 1239-1244, issn 0304-3894, 6 p.Article

Immobilization and reduction of hexavalent chromium in the interlayer space of positively charged kaolinitesMATUSIK, Jakub; BAJDA, Tomasz.Journal of colloid and interface science. 2013, Vol 398, pp 74-81, issn 0021-9797, 8 p.Article

Comparative Study of Chromium Biosorption by Mesorhizobium amorphae Strain CCNWGS0123 in Single and Binary MixturesPIN XIE; XIULI HAO; OSAMA ABDALLA MOHAMAD et al.Applied biochemistry and biotechnology. 2013, Vol 169, Num 2, pp 570-587, issn 0273-2289, 18 p.Article

Influence of magnetic field on Cr(VI) adsorption capability of given anaerobic sludgeXU, Y. B; DUAN, X. J; YAN, J. N et al.Biodegradation (Dordrecht). 2010, Vol 21, Num 1, pp 1-10, issn 0923-9820, 10 p.Article

Adsorption Mechanism of Cr(VI) onto Coir PithMAKEHELWALA, Madhubhashini; JINADASA, K. B. S. N; TANAKA, Norio et al.Bioremediation journal. 2009, Vol 13, Num 4, pp 188-197, issn 1088-9868, 10 p.Article

Potential-pH diagram for Leucobacter sp. Ch-1-Cr-H2O systemLIYUAN CHAI; ZHIHUI YANG; YUNYAN WANG et al.Journal of hazardous materials. 2008, Vol 157, Num 2-3, pp 518-524, issn 0304-3894, 7 p.Article

Development of a new Cr(VI)-biosorbent from agricultural biowastePARK, Donghee; LIM, Seong-Rin; YUN, Yeoung-Sang et al.Bioresource technology. 2008, Vol 99, Num 18, pp 8810-8818, issn 0960-8524, 9 p.Article

Facile additive-free synthesis of iron oxide nanoparticles for efficient adsorptive removal of Congo red and Cr(VI)TAO HAO; CHAO YANG; XUEHUI RAO et al.Applied surface science. 2014, Vol 292, pp 174-180, issn 0169-4332, 7 p.Article

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