首页> 外文会议>First International Conference on Remediation of Contaminated Sediments S1-3, Oct 10-12, 2001, Venice Italy >DEGRADATION AND REMOVAL OF SEDIMENT PCBs USING MICROBIALLY GENERATED IRON SULFIDE
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DEGRADATION AND REMOVAL OF SEDIMENT PCBs USING MICROBIALLY GENERATED IRON SULFIDE

机译:微生物产生的硫化铁对沉积多氯联苯的降解和去除

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This paper describes a method of decontaminating anaerobic sediments from organic micropollutants (polychlorobiphenyls, PCBs) using the controlled growth of the sulfate-reducing bacteria consortia present in the sediment. If iron sulfate is introduced into the sediment, under controlled anaerobic conditions, the sulfate-reducing bacterial consortia will build up over a period of time and produce large quanitities of FeS, which has been shown to be an excellent adsorbent for halogenated hydrocarbons and heavy metals. Evidence is presented that PCBs are first adsorbed, and then electron transfer leads to their breakdown in situ. As the FeS adsorbent is strongly magnetic, it an be removed from the sediment using high-gradient magnetic separation (HGMS) together with the remaining halogenated hydrocarbons and heavy metals which have been adsorbed. HGMS can be done cheaply and on a large scale. The goal of this research is to reduce the polluted sediment disposal and to investigate treatment methods suitable for in situ and in-plant remediation.
机译:本文描述了一种通过控制沉积物中存在的硫酸盐还原菌菌群的生长来净化有机微量污染物(多氯联苯,PCB)中厌氧沉积物的方法。如果在受控的厌氧条件下将硫酸铁引入沉积物中,则减少硫酸盐的细菌菌群将在一段时间内积累并产生大量的FeS,这已被证明是卤代烃和重金属的极佳吸附剂。有证据表明,多氯联苯首先被吸附,然后电子转移导致其原位分解。由于FeS吸附剂具有强磁性,因此可以使用高梯度磁分离(HGMS)将FeS吸附剂与残留的卤代烃和已吸附的重金属一起从沉积物中去除。 HGMS可以廉价且大规模地完成。这项研究的目的是减少污染的沉积物的处置,并研究适用于原位和厂内修复的处理方法。

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