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Feasibility Study of Azo Dye Treatment by Decolorized Metabolites-Assisted Salt-Bearing Microbial Fuel Cells

机译:脱色代谢物辅助含盐微生物燃料电池处理偶氮染料的可行性研究

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Prior findings mentioned that -OH and -NH_2 substitute-containing auxochrome compounds (e.g., 2-aminophenol and 1,2-dihydroxybenzene) could act as electron shuttles (ESs) for simultaneous dye decolorization and bioelectricity generation (DD&BG) in microbial fuel cells (MFCs). This feasibility study used decolorized intermediates (DIs) of reactive blue 171, reactive blue 5, reactive red 198 to show such significant electron-shuttling capabilities. Cyclic voltammetric inspections clearly revealed that some of DIs could act as ESs to enhance dye-decolorizing and bioelectricity-generating capabilities without dispute. However, electron transfer (ET) efficiency significantly reduced ca. 40% at higher salt conditions. With supplementation of DIs, ET efficiency was apparently augmented for highly efficient DD and BG. Meanwhile, significant stimulation of ET characteristics also overcame osmotic pressure-gradients between intracellular and extracellular compartments for promising DD and BG. Accumulation of DIs was kinetically favorable for expression of dye-decolorizing capabilities. Of course, such accumulation of DIs autocatalytically enhanced DD and MFC-assisted treatment was technically appropriate for ET-based bioremediation.
机译:先前的发现提到含-OH和-NH_2取代基的辅助色素化合物(例如2-氨基苯酚和1,2-二羟基苯)可以充当电子穿梭(ESs),用于同时在微生物燃料电池中进行染料脱色和生物发电(DD&BG)( MFC)。该可行性研究使用了反应性蓝171,反应性蓝5,反应性红198的脱色中间体(DI),以显示出如此显着的电子穿梭能力。循环伏安法检查清楚地表明,一些DI可以充当ES,毫无疑问地增强了染料的脱色和生物电生成能力。但是,电子传输(ET)效率大约降低了。在高盐条件下为40%。通过添加DI,显然可以提高高效DD和BG的ET效率。同时,对ET特性的显着刺激还克服了有前途的DD和BG的细胞内和细胞外区室之间的渗透压梯度。 DI的积累在动力学上有利于表达染料的脱色能力。当然,DI的这种自动催化增强的DD和MFC辅助处理的积累在技术上适用于基于ET的生物修复。

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