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首页> 外文期刊>RSC Advances >Improved biodegradation of total organic carbon and polychlorinated biphenyls for electricity generation by sediment microbial fuel cell and surfactant addition
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Improved biodegradation of total organic carbon and polychlorinated biphenyls for electricity generation by sediment microbial fuel cell and surfactant addition

机译:沉积物微生物燃料电池和添加表面活性剂可改善总有机碳和多氯联苯的生物降解能力,从而发电

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摘要

The biodegradation of total organic carbon (TOC) and polychlorinated biphenyls (PCBs) in sediment was studied in different treatments. This study showed that the combined application of a sediment microbial fuel cell (SMFC) and surfactant led to the highest removal efficiencies (58.91% of TOC and 43.26% of PCBs) after 60 days of operation, and produced the maximum power output (0.821 V of voltage and 18.30 W m(-3) of power density). TOC and PCBs can diffuse between sediment and overlying water. The overlying water of natural anaerobic degradation sediment led to the greatest increase in PCB concentration (4.43 ng L-1), following the addition of 6 mg kg(-1) PCBs into sediments. Considering the enhanced degradation and high power output, the combined application of the SMFC and surfactant addition offered a more efficient and promising way to purify the contaminated sediment and overlying water.
机译:研究了不同处理方法对沉积物中总有机碳(TOC)和多氯联苯(PCBs)的生物降解。这项研究表明,沉淀微生物燃料电池(SMFC)和表面活性剂的组合使用可在运行60天后带来最高的去除效率(TOC的58.91%和PCB的43.26%),并产生最大的功率输出(0.821 V电压和18.30 W m(-3)的功率密度)。 TOC和PCB可以在沉积物和上覆水之间扩散。在沉积物中添加6 mg kg(-1)多氯联苯后,天然厌氧降解沉积物的上层水导致PCB浓度最大增加(4.43 ng L-1)。考虑到降解的增强和高功率输出,SMFC和表面活性剂添加的组合应用提供了一种更有效和有希望的方法来净化受污染的沉积物和上覆水。

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