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Bioremediation, Biostimulation and Bioaugmention: A Review

机译:生物修复,生物刺激和生物强化:综述

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Bioremediation uses microbial metabolism in the presence of optimum environmental conditions and sufficient nutrients to breakdown contaminants notably petroleum hydrocarbons. We reviewed technologies for carrying out bioremediation and observed that biotechnological approaches that are designed to carry out remediation have received a great deal of attention in recent years. Biostimulation (meaning the addition of limiting nutrients to support microbial growth) and Bioaugmentation (meaning the addition of living cells capable of degradation) studies have enjoyed a heavy presence in literature and reviews of these technologies focusing on the technical aspects are very few if at all available. At times, nutrient application alone or augmenting with microbes is not sufficient enough for remediation leading to a simultaneous approach. Recent studies show that a combination of both approaches is equally feasible but not explicitly more beneficial. Evidently, selection of a technology hinges on site specific requirements such as availability of microorganisms capable of degradation in sufficient quantities, nutrient availability to support microbial growth and proliferation as well as environmental parameters such as temperature in combination with duration of exposure. This review focuses on these technologies and efforts are directed towards eventual manipulation of the processes of remediation all geared towards making bioremediation technically and economically viable for comprehensive treatment of petroleum hydrocarbon contaminated soils.
机译:生物修复在最佳环境条件和足够的营养素存在下利用微生物代谢来分解污染物,尤其是石油碳氢化合物。我们审查了进行生物修复的技术,并观察到,旨在进行修复的生物技术方法近年来受到了广泛的关注。生物刺激(意味着添加有限的营养以支持微生物生长)和生物增强(意味着添加能够降解的活细胞)的研究在文献中占据了很大的份额,而针对这些技术的综述仅关注很少的技术方面。可用。有时,单独施用营养物或增加微生物含量不足以进行补救,导致同时采取措施。最近的研究表明,两种方法的组合同样可行,但显然没有更多好处。显然,技术的选择取决于特定地点的要求,例如能够大量降解的微生物的可用性,支持微生物生长和繁殖的营养物的可用性以及诸如温度与暴露持续时间相结合的环境参数。这篇综述的重点是这些技术,并且致力于最终操纵修复过程,旨在使生物修复在技术和经济上都可行,从而能够对石油烃污染的土壤进行综合处理。

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