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Bioremediation of multi-metal contaminated soil using biosurfactant - a novel approach

机译:使用生物表面活性剂对多金属污染土壤进行生物修复-一种新方法

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An unconventional nutrient medium, distillery spent wash ((1:3) diluted) was used to produce di-rhamno-lipid biosurfactant by Pseudomonas aeruginosa strain BS2. This research further assessed the potential of the biosurfactant as a washing agent for metal removal from multi-metal contaminated soil (Cr-940 ppm; Pb-900 ppm; Cd-430 ppm; Ni- 880 ppm; Cu-480 ppm) Out of the treatments of contaminated soil with tap water and rhamnolipid biosurfactant, the latter was found to be potent in mobilization of metal and decontamination of contaminated soil Within 36 hours of leaching study, di-rhamnolipid as compared to tap water facilitated 13 folds higher removal of Ci from the heavy metal spiked soil whereas removal of Pb and Cu was 9-10 and 14 folds higher respectively. Leaching of Cd and Ni was 25 folds higher from the spiked soil This shows that leaching behavior of biosurfactant was different for different metals. The use of wastewater for production of biosurfactant and its efficient use in metal removal make it a strong applicant for bioremediation.
机译:非常规营养培养基,酿酒厂用过的洗液((1:3)稀释)被用于生产铜绿假单胞菌菌株BS2的鼠李糖脂生物表面活性剂。这项研究进一步评估了生物表面活性剂作为清洗剂从多金属污染土壤中去除金属的潜力(Cr-940 ppm; Pb-900 ppm; Cd-430 ppm; Ni-880 ppm; Cu-480 ppm)。用自来水和鼠李糖脂生物表面活性剂处理受污染的土壤,发现后者对金属的动员和对污染土壤的去污有效。在浸出研究的36小时内,与鼠李糖相比,二鼠李糖脂的去除率高13倍从重金属掺入土壤中去除,而铅和铜的去除率分别是9-10和14倍。从尖刺土壤中,镉和镍的浸出率要高25倍。这表明生物表面活性剂的浸出行为对于不同的金属是不同的。废水用于生产生物表面活性剂及其在金属去除中的有效利用使其成为生物修复的强有力的申请者。

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