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Electrogenic activity and electron losses under increasing organic load of recalcitrant pharmaceutical wastewater

机译:难降解制药废水有机负荷增加下的电活性和电子损失

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Relative change in the electrogenic activity and potential losses during electron transfer in microbial fuel cell (MFC) was elucidated using real-field recalcitrant pharmaceutical wastewater as anolyte by varying substrate/organic load (OL1, 1.98; OL2, 3.96; OL3, 5.93, OL4, 7.98kgCOD/m~3). Increase in organic load showed improvement in electrogenic activity (OL4: 346 mV, 205.61 mW/m~2; OL3: 320 mV, 158.58 mW/m~2; OL2: 290 mV, 112.87 mW/m~2; OL1: 256 mV, 72.60 mW/m~2). Both activation and ohmic losses showed decrement with increase in organic load while concentration losses depicted increment. Improvement in power output was non-linear with increase in organic load due to the anodic over potentials, described as electron transfer resistances and potential losses. Bio-electrochemical analysis also depicted the electron losses in terms of electron discharge and energy generation with the function of varying organic load.
机译:通过改变基质/有机负荷(OL1,1.98; OL2,3.96; OL3,5.93,OL4),通过使用实地难降解制药废水作为阳极电解液,阐明了微生物燃料电池(MFC)中电子传递过程中的电活性和电位损失的相对变化。 ,7.98kgCOD / m〜3)。有机负荷的增加显示出电活性的改善(OL4:346 mV,205.61 mW / m〜2; OL3:320 mV,158.58 mW / m〜2; OL2:290 mV,112.87 mW / m〜2; OL1:256 mV ,72.60 mW / m〜2)。活化损失和欧姆损失都显示出随着有机负荷的增加而减少,而浓度损失则描述为增加。功率输出的改善是非线性的,这是由于阳极过电位引起的有机负荷增加所致,这被描述为电子转移电阻和电位损失。生物电化学分析还根据变化的有机负荷,以电子放电和能量产生来描述电子损失。

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