Suppr超能文献

利用生物电芬顿系统通过降解药草废水中的有机物来发电。

Electricity generation through degradation of organic matters in medicinal herbs wastewater using bio-electro-Fenton system.

作者信息

Birjandi Noushin, Younesi Habibollah, Ghoreyshi Ali Asghar, Rahimnejad Mostafa

机构信息

Department of Environmental Science, Faculty of Natural Resources, Tarbiat Modares University, Imam Reza Street, Noor, P.O. Box: 46414-356, Iran.

Department of Environmental Science, Faculty of Natural Resources, Tarbiat Modares University, Imam Reza Street, Noor, P.O. Box: 46414-356, Iran.

出版信息

J Environ Manage. 2016 Sep 15;180:390-400. doi: 10.1016/j.jenvman.2016.05.073. Epub 2016 Jun 1.

Abstract

In the present study, the potential application of the bio-electro-Fenton (BEF) process for the treatment of medicinal herbs wastewater in a mediator-less microbial fuel cell (MFC) system is investigated. This process is operated in a dual-chamber MFC with anaerobic seed sludge as biocatalyst in an anode chamber under conditions of neutral pH, an aerobic cathode chamber equipped with a Fe@Fe2O3/graphite composite cathode and a Nafion membrane as a separator. The performance of the MFC is determined in three different mixed liquor suspended solids (MLSS) loadings, Nafions (112, 115) and a salt bridge in an air-cathode BEF process, in terms of power generation, chemical oxygen demand (COD) removal efficiency, columbic and energy efficiencies. Under optimal conditions, the batch experiment results show that the cathode chamber of the BEF reactor, equipped with Nafion 112 and inoculated with seed sludge at 3000 mg L(-1) MLSS concentration, produces the maximum power density of 49.76 mW m(-2), 0.56 mg L(-1) and 29 mol L(-1) of H2O2 and Fe(2+), respectively. Under these conditions, the MFC achieves COD removal 78.05% in the anaerobic anode chamber and 84.02% as a result of aerobic processes from the air-cathode BEF chamber, whilst the maximum voltage εcb and εE values are 600 mV, 4.09% and 1.37%, respectively.

摘要

在本研究中,对生物电芬顿(BEF)工艺在无介质微生物燃料电池(MFC)系统中处理药草废水的潜在应用进行了研究。该工艺在双室MFC中运行,阳极室以厌氧种子污泥作为生物催化剂,在中性pH条件下,好氧阴极室配备Fe@Fe2O3/石墨复合阴极和作为分离器的Nafion膜。在空气阴极BEF工艺中,根据发电、化学需氧量(COD)去除效率、库仑效率和能量效率,在三种不同的混合液悬浮固体(MLSS)负荷、Nafions(112、115)和盐桥条件下测定MFC的性能。在最佳条件下,批次实验结果表明,配备Nafion 112且在3000 mg L(-1) MLSS浓度下接种种子污泥的BEF反应器阴极室,分别产生最大功率密度49.76 mW m(-2)、0.56 mg L(-1)的H2O2和29 μmol L(-1)的Fe(2+)。在这些条件下,MFC在厌氧阳极室实现COD去除率78.05%,由于空气阴极BEF室的好氧过程,整体COD去除率达到84.02%,同时最大电压εcb和εE值分别为600 mV、4.09%和1.37%。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验