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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Endocrine disruptive estrogens role in electron transfer: Bio-electrochemical remediation with microbial mediated electrogenesis
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Endocrine disruptive estrogens role in electron transfer: Bio-electrochemical remediation with microbial mediated electrogenesis

机译:内分泌破坏性雌激素在电子转移中的作用:微生物介导的生电作用的生物电化学修复

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摘要

Bioremediation of selected endocrine disrupting compounds (EDCs)/estrogens viz. estriol (E3) and ethynylestradiol (EE2) was evaluated in bio-electrochemical treatment (BET) system with simultaneous power generation. Estrogens supplementation along with wastewater documented enhanced electrogenic activity indicating their function in electron transfer between biocatalyst and anode as electron shuttler. EE2 addition showed more positive impact on the electrogenic activity compared to E3 supplementation. Higher estrogen concentration showed inhibitory effect on the BET performance. Poising potential during start up phase showed a marginal influence on the power output. The electrons generated during substrate degradation might have been utilized for the EDCs break down. Fuel cell behavior and anodic oxidation potential supported the observed electrogenic activity with the function of estrogens removal. Voltammetric profiles, dehydrogenase and phosphatase enzyme activities were also found to be in agreement with the power generation, electron discharge and estrogens removal.
机译:选定的内分泌干扰化合物(EDC)/雌激素的生物修复。雌三醇(E3)和乙炔雌二醇(EE2)在生物电化学处理(BET)系统中同时发电。雌激素补充剂与废水一起记录了增强的电活性,表明它们在生物催化剂和阳极之间作为电子穿梭剂在电子转移中起作用。与添加E3相比,添加EE2对电活性具有更积极的影响。较高的雌激素浓度对BET性能表现出抑制作用。在启动阶段势均力敌显示出对功率输出的边际影响。在基板降解期间产生的电子可能已被用于EDC击穿。燃料电池的行为和阳极氧化电势支持了观察到的具有雌激素去除功能的电活性。还发现伏安曲线,脱氢酶和磷酸酶的活性与发电,电子放电和雌激素的去除一致。

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