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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biocatalyst behavior under self-induced electrogenic microenvironment in comparison with anaerobic treatment: Evaluation with pharmaceutical wastewater for multi-pollutant removal
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Biocatalyst behavior under self-induced electrogenic microenvironment in comparison with anaerobic treatment: Evaluation with pharmaceutical wastewater for multi-pollutant removal

机译:与厌氧处理相比,自诱导的电微环境下的生物催化剂行为:制药废水中多污染物去除的评估

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摘要

Biocatalyst behavior was comparatively evaluated under diverse microenvironments viz., self-induced electrogenic (bioelectrochemical treatment, BET) and anaerobic treatment (AnT) microenvironments, with real-field pharmaceutical wastewater. Relatively higher treatment efficiency was observed with BET (COD removal, 78.70%) over AnT (32%) along with the power output. Voltammetric profiles of AnT showed persistent reduction behavior, while BET depicted simultaneous redox behavior. BET operation documented significantly higher bio-electrocatalytic activity (k_(app), 245.22s~(-1)) than AnT (k_(app), 7.35s~(-1)). The electron accepting conditions due to the presence of electrode in the BET might contributed to higher electrogenesis leading to enhanced substrate degradation along with the removal of multiple pollutants accounting for the effective reduction of toxicity levels of wastewater. Even at higher organic loads, BET operation showed good treatment efficiency without process inhibition. Introduction of electrode-membrane assembly in anaerobic microenvironment showed significant change in the electrocatalytic behavior of biocatalyst resulting in enhanced treatment of complex wastewater.
机译:在各种微环境下,即在现场制药废水的作用下,在自诱导的电生(生物电化学处理,BET)和厌氧处理(AnT)微环境下,对生物催化剂的行为进行了比较评估。 BET(COD去除率为78.70%)比AnT(32%)和功率输出相对更高。 AnT的伏安曲线显示出持续的还原行为,而BET描述了同时的氧化还原行为。 BET操作证明其生物电催化活性(k_(app),245.22s〜(-1))明显高于AnT(k_(app),7.35s〜(-1))。由于在BET中存在电极,电子接受条件可能有助于更高的电生成,从而导致底物降解增强,同时去除多种污染物,从而有效降低了废水的毒性水平。即使在较高的有机负荷下,BET操作也显示出良好的处理效率,而没有过程抑制。厌氧微环境中电极-膜组件的引入表明生物催化剂的电催化行为发生了显着变化,从而增强了对复杂废水的处理。

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