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A review on slurry bioreactors for bioremediation of soils and sediments

机译:用于土壤和沉积物生物修复的浆料生物反应器的综述

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摘要

The aim of this work is to present a critical review on slurry bioreactors (SB) and their application to bioremediation of soils and sediments polluted with recalcitrant and toxic compounds. The scope of the review encompasses the following subjects: (i) process fundamentals of SB and analysis of advantages and disadvantages; (ii) the most recent applications of SB to laboratory scale and commercial scale soil bioremediation, with a focus on pesticides, explosives, polynuclear aromatic hydrocarbons, and chlorinated organic pollutants; (iii) trends on the use of surfactants to improve availability of contaminants and supplementation with degradable carbon sources to enhance cometabolism of pollutants; (iv) recent findings on the utilization of electron acceptors other than oxygen; (v) bioaugmentation and advances made on characterization of microbial communities of SB; (vi) developments on ecotoxicity assays aimed at evaluating bioremediation efficiency of the process.From this review it can be concluded that SB is an effective ad situ and ex situ technology that can be used for bioremediation of problematic sites, such as those characterized by soils with high contents of clay and organic matter, by pollutants that are recalcitrant, toxic, and display hysteretic behavior, or when bioremediation should be accomplished in short times under the pressure and monitoring of environmental agencies and regulators. SB technology allows for the convenient manipulation and control of several environmental parameters that could lead to enhanced and faster treatment of polluted soils: nutrient N, P and organic carbon source (biostimulation), inocula (bioaugmentation), increased availability of pollutants by use of surfactants or inducing biosurfactant production inside the SB, etc. An interesting emerging area is the use of SB with simultaneous electron acceptors, which has demonstrated its usefulness for the bioremediation of soils polluted with hydrocarbons and some organochlorinated compounds. Characterization studies of microbial communities of SB are still in the early stages, in spite of their significance for improving reactor operation and design optimization.We have identified the following niches of research needs for SB in the near and mid term future, inter alia: (i) application of SB with sequential and simultaneous electron acceptors to soils polluted with contaminants other than hydrocarbons (i.e., pesticides, explosives, etc.), (ii) evaluation of the technical feasibility of triphasic SB that use innocuous solvents to help desorbing pollutants strongly attached to soils, and in turn, to enhance their biodegradation, (iii) gaining deeper insight of microbial communities present in SB with the intensified application of molecular biology tools such as PCR-DGGE, PCR-TGGE, ARDRA, etc., (iv) development of more representative ecotoxicological assays to better assess the effectiveness of a given bioremediation process.
机译:这项工作的目的是对浆液生物反应器(SB)及其在对顽固性和有毒化合物污染的土壤和沉积物进行生物修复中的应用进行重要的综述。审查范围包括以下主题:(i)SB的流程基础以及优缺点的分析; (ii)SB在实验室规模和商业规模土壤生物修复中的最新应用,重点是农药,炸药,多核芳香烃和氯化有机污染物; (iii)使用表面活性剂改善污染物利用率和补充可降解碳源以增强污染物代谢的趋势; (iv)关于利用除氧以外的电子受体的最新发现; (v)生物强化和表征SB微生物群落的研究进展; (vi)旨在评估该过程的生物修复效率的生态毒性测定方法的发展。通过本综述可以得出结论,SB是一种有效的异位和异位技术,可用于对有问题的部位(例如以土壤为特征的部位)进行生物修复含有顽固的,有毒的,表现出滞后行为的污染物,或者在环境机构和监管机构的压力和监督下应在短时间内完成生物修复的情况下,含有高含量的粘土和有机物。 SB技术可以方便地控制和控制几个环境参数,这些参数可以提高和更快地处理污染的土壤:氮,磷和有机碳源(生物刺激),接种物(生物强化),通过使用表面活性剂提高污染物的利用率有趣的新兴领域是带有同时电子受体的SB的使用,这已经证明了其对碳氢化合物和某些有机氯化合物污染的土壤进行生物修复的有用性。尽管SB微生物群落的表征研究对于改善反应堆运行和优化设计具有重要意义,但它们仍处于早期研究阶段。我们已经确定了SB在近期和中期的以下研究需求,其中包括: i)将SB与顺序和同时的电子受体一起应用在被碳氢化合物以外的污染物(例如,农药,炸药等)污染的土壤中;(ii)评估使用无害溶剂帮助强力解吸污染物的三相SB的技术可行性(iii)通过加强应用诸如PCR-DGGE,PCR-TGGE,ARDRA等分子生物学工具来更深入地了解SB中存在的微生物群落,(iii) )开发更具代表性的生态毒理学检测方法,以更好地评估给定生物修复过程的有效性。

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