土壤分离外电的生化和分子表征及其在单室无介质微生物燃料电池上的电化学性能评价

Q3 Materials Science
Parvaiz Ahmad Dar, Wan Zaireen Nisa Yahya, Azmat Ali Khan, Amit Kumar, Sharad Agrawal
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引用次数: 0

摘要

微生物燃料电池在电微生物学中用于清洁废水和发电。在厌氧方面,mfc在阳极室中利用微生物催化作用转化储存在有机和无机分子键中的化学能。利用土壤样品,分离出四种外电。四种单室无介质微生物燃料电池设计分别用于注入提取的土壤外电。一种营养培养基用于每15天分批操作反应器。产电效果最好的是ISO4(解淀粉芽孢杆菌菌株NSB4),其次是ISO3(蜡样芽孢杆菌菌株BXC6)、ISO2(芽孢杆菌菌株4N)和ISO1(银葡萄球菌菌株D7)。平均而言,能量产生数据显示,具有ISO4的mfc在1024 mV外部电阻时具有最大电压和功率密度(1 kΩ),其次是ISO3在609 mV, ISO2在560 mV, ISO1在487 mV。ISO4、ISO3、ISO2和ISO1的分离物功率密度分别为41.281 mW/m2、29.241、12.723和3.552 mW/m2。研究发现,MFC反应器的能量输出受外电底物的影响。循环伏安法(CV)实验表明,外电通过细胞色素和其他与细胞膜相关的物质直接将电子传递到阳极表面。以前很难从纯粹的隔离物中产生能量,但新的研究表明,这不再是一个问题。用于产生电流的外电子的纯培养物也显示出广泛的底物利用谱,这与先前的研究一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biochemical and Molecular Characterization of Soil-Isolated Exoelectrogens and Evaluation of Their Electrochemical Properties via Single-Chambered Mediator-Free Microbial Fuel Cell

Microbial fuel cells are utilized in electromicrobiology for the purpose of cleaning wastewater and producing electricity. Anaerobically, MFCs use microbial catalysis in the anodic compartment to transform the chemical energy stored in organic and inorganic molecular bonds. Using the soil sample, four exoelectrogens are isolated. Each of the four single-chambered mediator-less microbial fuel cell design are used to inject the extracted soil exoelectrogens. A nutritional medium is used to operate the reactors in batches of 15 days. The exoelectrogen ISO4 (Bacillus amyloliquefaciens strain NSB4), followed by ISO3 (cereus strain BXC6), ISO2 (Bacillus sp. (in: Bacteria) strain 4N), and ISO1 (Staphylococcus argenteus strain D7) achieve the best growth rates. On average, data on energy generation shows that MFCs with ISO4 have the maximum voltage and power density at 1024 mV external resistance (1 kΩ), followed by ISO3 at 609 mV, ISO2 at 560  mV, and ISO1 at 487 mV. Power densities of isolates are recorded as: 41.281 mW/m2, 29.241, 12.723, and 3.552 mW/m2 for ISO4, ISO3, ISO2, and ISO1, respectively. The research finds that the energy output of MFC reactors is affected by the exoelectrogen substrates. Cyclic voltammetry (CV) experiment demonstrates that exoelectrogens directly transport electrons to the anode surface via cytochromes and other substances associated with the cell membrane. It has been previously difficult to produce power from pure isolates, but new research reveals that this is no longer an issue. Pure cultures of exolectrogens use to generate current also show a broad substrate utilization spectrum, in line with previous studies.

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来源期刊
Macromolecular Symposia
Macromolecular Symposia Materials Science-Polymers and Plastics
CiteScore
1.50
自引率
0.00%
发文量
226
期刊介绍: Macromolecular Symposia presents state-of-the-art research articles in the field of macromolecular chemistry and physics. All submitted contributions are peer-reviewed to ensure a high quality of published manuscripts. Accepted articles will be typeset and published as a hardcover edition together with online publication at Wiley InterScience, thereby guaranteeing an immediate international dissemination.
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