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Improved performance output of microbial fuel cell by supplements of ionic and non-ionic osmolytes using pressmud as inoculum

机译:通过使用压制物作为接种物的离子和非离子渗透物的补充剂改善微生物燃料电池的性能输出

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The study reports beneficial effects of adding combination of NaCl and sucrose in different ratios to the feedwater in the anodic chamber of dual chamber microbial fuel cell (DMFC). Dilute distillery wastewater was used as substrate with its native microbes serving as inoculum in a short-term study (7 h). Maximum open circuit voltage (OCV) of 0.57 V was generated in the MFC when 0.2% and 0.3% of salt and sucrose (2:3 ratio) were added to the substrate. In a long-term experiment (22d), using pressmud as a new inoculum source, and 2:3 NaCl-sucrose ratio, the maximum OCV increased to 0.88 V with a maximum power density generation of 129 mW/m~(3). The novel approach of using combined osmolyte NaCl-sucrose supplement to the distillery waste-feedwater suggests excellent promotional influence on output of the MFC, while using native microbes of distillery wastewater, and more prominently on using the new pressmud inoculum source.
机译:该研究报告了在双腔微生物燃料电池(DMFC)阳极腔室中的不同比例中添加NaCl和蔗糖组合的有益效果。 稀蒸馏废水用作底物,其天然微生物用作鞘内的inoculum(7小时)。 当向基材中加入0.2%和0.3%的盐和蔗糖(2:3比)时,在MFC中产生0.57V的最大开路电压(OCV)。 在长期实验(22d)中,使用压模作为新的接种源,2:3 NaCl-蔗糖比,最大OCV增加到0.88V,最大功率密度产生129mW / m〜(3)。 使用联合Osmolyte NaCl-蔗糖补充剂对酿酒料废水的新方法对MFC的产量提供了出色的促进影响,而使用酿酒废水的天然微生物,并且更突出地使用新的新闻的接种源。

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