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Immobilization of cesium-resistant bacterial cells by radiation polymerization and their bioremoval efficiency

机译:通过辐射聚合固定耐铯的细菌细胞及其生物缺钙效率

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摘要

Biological approaches for the removal of heavy metals and radionuclides from contaminated water are reported. The present study was carried out with the objective of identifying bacterial strains for the uptake of cesium that could be used for bioremediation. Polymer carriers prepared by radiation polymerization were used for the immobilization of bacteria and the efficiency of free cells and immobilized cells for the removal of cesium was evaluated. Thirty-five bacterial isolates were screened for resistance to cesium and five bacterial isolates based on resistance to cesium (BR-3, BR-6, BR-21, BR-39, BR-40) were selected for immobilization. Polymer carriers were prepared using 10, 20, 30, 40 and 50% acrylamide at different doses of 1 to 5 kGy gamma radiation. The polymer carriers prepared using 30% and 40% acrylamide at 5 kGy were found to be suitable based on gel fraction and absorption capacity for the immobilization of bacterial cells. Bioremoval of cesium by free and immobilized bacterial cells was evaluated. Significant reductions of 76-81% cesium were observed with bacterial cells immobilized by radiation polymerization.
机译:报道了除去污染水的重金属和放射性核素的生物方法。本研究采用了鉴定可用于生物化的细菌菌株的细菌菌株进行。通过辐射聚合制备的聚合物载体用于固定细菌,评价游离细胞和固定化细胞用于除去铯的效率。筛选三十五个细菌分离株用于对铯的耐药性,并选择基于对铯的耐药性的五种细菌分离株(BR-3,BR-6,BR-21,BR-39,BR-40)进行固定化。使用10,20,30,40和50%丙烯酰胺以不同剂量的1至5kGyγ辐射制备聚合物载体。使用30%和40%丙烯酰胺在5kGy中制备的聚合物载体基于凝胶分数和用于固定细菌细胞的吸收能力。评价通过自由和固定的细菌细胞的铯的生物缺钙。通过通过辐射聚合固定的细菌细胞观察到76-81%铯的显着降低。

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