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Improvement of onsite wastewater treatment by use of electrically conductive carbon cloth.

机译:通过使用导电碳布改善现场废水处理。

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摘要

The purpose of this research is primarily focused on carbon oxidation in domestic septic systems. Small-scale septic waste reactors utilizing electrically conductive carbon cloth were assessed for improving carbon oxidation and therefore the overall efficiency of on-site wastewater treatment systems.;A bioelectrochemical system was developed to enhance carbon oxidation in septic systems using electrically conductive carbon cloth as an anode/cathode bridge to transfer electrons from strictly anoxic septic wastewater to an oxic system outside of the septic reactor. This "septic snorkel" (so named since the system "breathes" via the carbon cloth extends into an aerobic zone) was designed to lower the carbon loading on the leach field, while being simple to deploy at the field level, which would be necessary for regulatory and stakeholder approval. The concept is predicated on previously published work that demonstrated Fe(III) amendment to septic wastewater increased carbon mineralization.;Data with Fe(III) amendment (an analogous system) demonstrated that mineralization of 14C-labeled acetate, lactate, propionate, starch, glucose, and oleic acid increased by as much as 100%, while completely suppressing methane production. Bench scale results using different carbon cloth setups suggested that complete and open circuit configurations improved soluble COD removal by 25% and 23% respectively. Select 14C-labeled compounds were also tested using the carbon cloth system. Interestingly, reactors with carbon cloth alone (no circuitry) showed the highest mineralization for all 14C-labeled compounds. Increases in mineralization ranged from 16% to 82%.
机译:这项研究的目的主要集中在家庭化粪池系统中的碳氧化。评估了使用导电碳布的小型化粪池废物反应器,以改善碳氧化,从而改善现场废水处理系统的整体效率。;开发了一种生物电化学系统,以提高使用导电碳布作为化粪池系统的碳氧化。阳极/阴极桥将电子从严格缺氧的化粪池废水转移到化粪池反应器外部的含氧系统中。这种“化粪通气管”(之所以命名,是因为通过碳布的“呼吸”系统延伸到好氧区)的目的是降低沥滤田的碳负荷,同时易于在田间进行部署,这是必要的以获得监管和利益相关者的批准。该概念基于先前发表的工作,该工作表明对化粪池废水的Fe(III)修正增加了碳的矿化作用。Fe(III)修正的数据(类似的系统)表明14C标记的乙酸盐,乳酸盐,丙酸盐,淀粉,葡萄糖和油酸最多增加了100%,同时完全抑制了甲烷的产生。使用不同碳布设置的基准规模结果表明,完整和开路配置分别将可溶性COD去除率提高了25%和23%。还使用碳布系统测试了选择的14C标记的化合物。有趣的是,仅用碳布(没有电路)的反应器显示出所有14C标记化合物的最高矿化度。矿化的增加范围从16%到82%。

著录项

  • 作者

    Weber, Christopher Daniel.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Environmental.
  • 学位 M.S.
  • 年度 2013
  • 页码 56 p.
  • 总页数 56
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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