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Treatment and generation of electricity from palm oil mill effluent using locally isolated electroactive microbes in microbial fuel cell

机译:使用局部隔离的微生物燃料电池中的电活性微生物处理棕榈油厂废水并产生电力

摘要

Palm oil industries are the largest agricultural based industries in Malaysia and in processing palm oil, high pollutant liquid waste known as palm oil mill effluent (POME) is being generated. Currently, treatment of POME to meet the standard discharge limit and generate environmentally friendly renewable energy has become an important issue. Therefore, this study was conducted to treat final discharge POME in microbial fuel cell (MFC) and generate electricity using electro-active bacteria from palm oil mill sludge (POMS). Double chamber MFC fabricated using polyacrylic sheets with a working volume of 1 L, proton exchange membrane (Nafion 115) and carbon electrodes connected to copper wires attached to a resistor of 10 kO were used. The anodic solution consisted of final discharge pond POME, overnight SRB1 inoculum (10% v/v) and phosphate buffer (pH 7) while the cathodic solution consisted of phosphate buffer (pH 7) and potassium hexacyanoferrate (III). The results showed 58% of COD removal and 60% of colour removal in 8 days. Simultaneously electricity generation was monitored and the maximum voltage, current density, power density and columbic efficiency recorded using a digital multimeter was 942 mV, 89.2 mA/m2, 83.7 mW/m2 and 54% respectively. The SRB1 bacterium that was used to treat the POME and produced electricity was later identified as Pseudomonas aeruginosa strain NCIM 5223 using molecular techniques (16S rDNA analysis). In conclusion SRB1 was able to treat and generate electricity from final pond POME
机译:棕榈油工业是马来西亚最大的以农业为基础的工业,在加工棕榈油时,正在产生称为棕榈油厂废液(POME)的高污染液体废物。当前,对POME进行处理以满足标准排放限值并产生环保的可再生能源已成为重要问题。因此,本研究旨在处理微生物燃料电池(MFC)中的最终排放POME,并使用棕榈油厂污泥(POMS)中的电活性细菌发电。使用由工作量为1 L的聚丙烯酸酯板,质子交换膜(Nafion 115)和连接到铜线的碳电极制成的双室MFC,碳线连接到电阻为10 kO的电阻上。阳极溶液由最终排放池POME,过夜SRB1接种物(10%v / v)和磷酸盐缓冲液(pH 7)组成,而阴极溶液由磷酸盐缓冲液(pH 7)和六氰合铁酸钾(III)组成。结果显示,在8天内,COD去除率为58%,颜色去除率为60%。同时监测发电情况,使用数字万用表记录的最大电压,电流密度,功率密度和哥伦比亚效率分别为942 mV,89.2 mA / m2、83.7 mW / m2和54%。随后使用分子技术(16S rDNA分析)将用于处理POME并产生电的SRB1细菌鉴定为铜绿假单胞菌菌株NCIM 5223。总之,SRB1能够处理最终池塘POME并产生电力

著录项

  • 作者

    Sh. Abdirahman Elmi Hassan;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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