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Electro-bioremediation of Contaminated Sediment by Electrode Enhanced Capping

机译:电极增强封盖技术对污染泥沙进行电生物修复

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摘要

In-situ capping often eliminates or slows natural degradation of hydrocarbon due to the reducing conditions in the sediments. The purpose of this research was to demonstrate a reactive capping technique, an electrode enhanced cap, to produce favorable conditions for hydrocarbon degradation and evaluate this reactive capping technique for contaminated sediment remediation. Two graphite electrodes were placed horizontally at different layers in a cap and connected to external power of 2 V. Redox potentials increased and pH decreased around the anode. Phenanthrene concentration decreased and PAH degradation genes increased in the vicinity of the anode. Phenanthrene concentrations at 0–1 cm sediment beneath the anode decreased to ~50% of initial concentration over ~70 days, while phenanthrene levels in control reactor kept unchanged. A degradation model of electrode enhanced capping was developed to simulate reaction-diffusion processes, and model results show that a reaction-dominated region was created in the vicinity of the anode. Although the degradation dominated region was thin, transport processes in a sediment cap environment are typically sufficiently slow to allow this layer to serve as a permeable reactive barrier for hydrocarbon decontamination.
机译:由于沉积物中的还原条件,原位封盖通常会消除或减缓烃类的自然降解。这项研究的目的是证明一种反应性封盖技术,一种电极增强封盖,可为烃降解提供有利条件,并评估这种反应性封盖技术用于污染沉积物的修复。将两个石墨电极水平放置在盖中的不同层上,并连接到2 V的外部电源。阳极周围的氧化还原电势增加而pH降低。在阳极附近,菲浓度降低,PAH降解基因增加。在约70天之内,阳极下方0–1 cm沉积物中的菲浓度降低至初始浓度的〜50%,而对照反应器中的菲含量保持不变。建立了电极增强封盖的降解模型,以模拟反应扩散过程,模型结果表明,在阳极附近形成了反应主导区。尽管降解占主导的区域很薄,但在沉积物帽盖环境中的运输过程通常足够缓慢,以使该层可用作碳氢化合物净化的可渗透反应性屏障。

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