Vandermaesen Johanna, Horemans Benjamin, Bers Karolien, Vandermeeren Pieter, Herrmann Steffi, Sekhar Aswini, Seuntjens Piet, Springael Dirk
Division of Soil and Water Management, KU Leuven, Kasteelpark Arenberg 20, 3001, Heverlee, Belgium.
Environmental Modelling, Vlaamse Instelling voor Technologisch Onderzoek (VITO), Boeretang 200, 2400, Mol, Belgium.
Appl Microbiol Biotechnol. 2016 Sep;100(17):7361-76. doi: 10.1007/s00253-016-7709-z. Epub 2016 Jul 30.
In recent years, the application of pesticide biodegradation in remediation of pesticide-contaminated matrices moved from remediating bulk soil to remediating and mitigating pesticide pollution of groundwater and surface water bodies. Specialized pesticide-degrading microbial populations are used, which can be endogenous to the ecosystem of interest or introduced by means of bioaugmentation. It involves (semi-)natural ecosystems like agricultural fields, vegetated filter strips, and riparian wetlands and man-made ecosystems like on-farm biopurification systems, groundwater treatment systems, and dedicated modules in drinking water treatment. Those ecosystems and applications impose challenges which are often different from those associated with bulk soil remediation. These include high or extreme low pesticide concentrations, mixed contamination, the presence of alternative carbon sources, specific hydraulic conditions, and spatial and temporal variation. Moreover, for various indicated ecosystems, limited knowledge exists about the microbiota present and their physiology and about the in situ degradation kinetics. This review reports on the current knowledge on applications of biodegradation in mitigating and remediating freshwater pesticide contamination. Attention is paid to the challenges involved and current knowledge gaps for improving those applications.
近年来,农药生物降解在农药污染基质修复中的应用已从修复整块土壤转向修复和减轻地下水及地表水体的农药污染。人们使用专门的农药降解微生物种群,这些种群可以是目标生态系统内源性的,也可以通过生物强化引入。它涉及(半)自然生态系统,如农田、植被过滤带和河岸湿地,以及人造生态系统,如农场生物净化系统、地下水处理系统和饮用水处理中的专用模块。这些生态系统和应用带来了一些挑战,这些挑战往往与整块土壤修复所面临的挑战不同。这些挑战包括农药浓度过高或极低、混合污染、存在替代碳源、特定水力条件以及空间和时间变化。此外,对于各种上述生态系统,关于其中存在的微生物群落及其生理学以及原位降解动力学的知识有限。本综述报告了目前关于生物降解在减轻和修复淡水农药污染方面应用的知识。文中关注了所涉及的挑战以及改善这些应用的当前知识空白。