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Biosurfactant-facilitated remediation of metal-contaminated soils.

机译:生物表面活性剂促进了对金属污染土壤的修复。

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摘要

Bioremediation of metal-contaminated wastestreams has been successfully demonstrated. Normally, whole cells or microbial exopolymers are used to concentrate and/or precipitate metals in the wastestream to aid in metal removal. Analogous remediation of metal-contaminated soils is more complex because microbial cells or large exopolymers do not move freely through the soil. The use of microbially produced surfactants (biosurfactants) is an alternative with potential for remediation of metal-contaminated soils. The distinct advantage of biosurfactants over whole cells or exopolymers is their small size, generally biosurfactant molecular weights are less than 1500. A second advantage is that biosurfactants have a wide variety of chemical structures that may show different metal selectivities and thus, metal removal efficiencies. A review of the literature shows that complexation capacities of several bacterial exopolymers was similar to the complexation capacity of a rhamnolipid biosurfactant produced by Pseudomonas aeruginosa ATCC 9027.
机译:已经成功地证明了金属污染的废物流的生物修复。通常,全细胞或微生物外聚合物用于浓缩和/或沉淀废物流中的金属,以帮助去除金属。金属污染土壤的类似修复更为复杂,因为微生物细胞或大型外聚物无法在土壤中自由移动。使用微生物生产的表面活性剂(生物表面活性剂)是一种替代方法,具有修复金属污染土壤的潜力。生物表面活性剂比全细胞或外聚合物的独特优势是它们的体积小,通常生物表面活性剂的分子量小于1500。第二个优势是生物表面活性剂具有多种化学结构,这些化学结构可能表现出不同的金属选择性,从而具有较高的金属去除效率。文献综述显示,几种细菌外聚合物的络合能力与铜绿假单胞菌ATCC 9027生产的鼠李糖脂生物表面活性剂的络合能力相似。

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