首页> 外文会议>International conference on the Israel society for ecology and environmental quality sciences >Determination of the optimum loading strategies for monochloro-, trichloro-, and 2,4-dichlorophenoxyacetic acids to anaerobic cultures
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Determination of the optimum loading strategies for monochloro-, trichloro-, and 2,4-dichlorophenoxyacetic acids to anaerobic cultures

机译:确定一氯,三氯和2,4-二氯苯氧基乙酸厌氧培养物的最佳上样策略

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With respect to their adverse health and environmental effects, halogenated organic compounds (HOCs) are among the most important priority pollutants. HOCs cannot be easily biodegraded. However, if suitable microbial cultures are acclimated to these compounds properly, and the optimum operating conditions are achieved, HOCs can be removed with biological methods. Recently, great interest has focused on reductive anaerobic dehalogenation for the removal of these compounds. This process yields lower halogenated compounds which are less toxic and more amenable to further biodegradation. Chloroacetic (CAA), trichloroacetic (TCAA), and 2,4-dichlorophenoxyacetic acids (2,4-D) are significant industrial compounds mainly used in herbicide, pesticide, and dye manufacturing. The objective of this study was to: (i) investigate the inhibitory effects of CAA, TCAA, and 2,4-D; and (ii) determine the optimum loading strategy of these HOCs to anaerobic cultures. To this purpose Anaerobic Toxicity Assay (ATA) and Optimum Loading Strategy experiments were conducted for CAA, TCAA, and 2,4-D. The results of this study are expected to develop an optimum loading strategy of HOCs to anaerobic systems and contribute to more effective use of anaerobic reductive dehalogenation of HOCs.
机译:就其对健康和环境的不利影响而言,卤代有机化合物(HOC)是最重要的优先污染物之一。 HOC不容易被生物降解。但是,如果合适的微生物培养物适当地适应了这些化合物,并且达到了最佳操作条件,则可以使用生物学方法去除HOC。最近,人们非常关注还原性厌氧脱卤以去除这些化合物。该方法产生较低卤代的化合物,其毒性较小并且更易于进一步生物降解。氯乙酸(CAA),三氯乙酸(TCAA)和2,4-二氯苯氧基乙酸(2,4-D)是重要的工业化合物,主要用于除草剂,农药和染料生产。这项研究的目的是:(i)研究CAA,TCAA和2,4-D的抑制作用; (ii)确定这些HOC对厌氧培养的最佳装载策略。为此,对CAA,TCAA和2,4-D进行了厌氧毒性试验(ATA)和最佳装载策略实验。预期这项研究的结果将开发一种最佳的HOCs厌氧系统的装载策略,并有助于更有效地利用HOCs的厌氧还原性脱卤作用。

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