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Bioreduction of hexavalent chromium by Bacillus cereus isolated from chromite mine overburden soil

机译:由枯草芽孢杆菌覆盖土壤中芽孢杆菌铬菌的生物测量

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The presence of soluble Cr(VI) particularly in the overburden soil samples of the chromite mines area is about 300-500mg Cr(VI)/kg. The level of Cr(VI) in final effluents needs to be reduced to the permissible limit <0.05mg/L (USEPA) using appropriate technology before it is discharged into the soil. Out of 12 bacterial isolates from the mine samples, CSB-9 was proven effective in reducing hexavalent chromium to its trivalent form with its inherent ability to survive proficiently in 200ppm Cr(VI). The isolate, confirmed to be Bacillus cereus, was characterised as gram-positive and capsule forming with the optimum growth at pH 7.0 and 35°C. The process of bioreduction of Cr(VI) using B. cereus was optimized with various parameters, viz., pH, initial concentration, dosage of adsorbent, temperature. The bacterium gave 90% reduction from lOOppm Cr(VI) aqueous feed in 120h at pH 7.0, 35°C using 1% (v/v) cells/mL.
机译:溶解的Cr(VI)的存在特别是在铬铁矿地区的覆盖层土壤上,约为300-500mg Cr(VI)/ kg。在将其排出到土壤中之前,需要将最终流出物中的Cr(VI)的水平降低到允许的限度<0.05mg / L(USEPA)。从矿井样品中的12个细菌分离物中,CSB-9有效地将六价铬还原成其三价形式,其具有纯粹在200ppm Cr(VI)中的固有能力。确认为芽孢杆菌的分离物表征为革兰氏阳性和胶囊,在pH7.0和35℃下的最佳生长。使用B.Cereus的Cr(VI)的生物测量方法用各种参数,viz进行了优化,pH,初始浓度,吸附剂剂量,温度。使用1%(v / v)细胞/ ml,细菌在pH7.0,35℃下以120h的LOPPM Cr(VI)水性进料中的90%降低90%。

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