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Design and Performance of a Single-Chamber Membraneless Sediment Microbial Fuel Cell for Bioenergy Generation

机译:用于生物能源发电的单室无膜沉积物微生物燃料电池的设计与性能

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This study investigated the potential for bioenergy generation of a single-chamber, membrane-less SMFCs which used different types of electrode materials and sediment-rich brackish water as substrate. A multi-factor experiment was laid out in a completely randomized design (CRD). Stainless steel, aluminum, and titanium mesh were used as electrodes. On a fed-batch mode, the chambers were loaded with different amounts of sediment 25, 50, and 75 percent per volume of the chamber. Constant external loads of 100Ω, 200Ω, 300Ω were also applied. Each treatment was observed for 24 hours in duplicates. Significant findings showed that the performance of the SMFCs varied. Titanium electrode worked best in terms of open and close circuit voltage, current, power density, and bioenergy generation potential at various external resistance loadings and composition of the substrates. The SMFC yield a more stable OCV at 4452.6 mV, peak closed circuit voltage of 62.12 mV, current of 0.285 mA, power density of 0.340±0.04 mAcm-2, and bioenergy generation potential 1193.7 kJ.
机译:这项研究调查了使用不同类型的电极材料和富含沉淀物的微咸水作为底物的单室,无膜SMFC的生物能产生潜力。采用完全随机设计(CRD)进行了多因素实验。不锈钢,铝和钛网用作电极。在分批补料模式下,每个腔室中装载的沉积物的量分别为每个腔室体积的25%,50%和75%。还施加了100Ω,200Ω,300Ω的恒定外部负载。重复观察每个处理24小时。重要发现表明,SMFC的性能各不相同。钛电极在各种外部电阻负载和基板组成下的开路和闭路电压,电流,功率密度和生物能产生电势方面效果最佳。 SMFC在4452.6 mV处产生更稳定的OCV,峰值闭路电压为62.12 mV,电流为0.285 mA,功率密度为0.340±0.04 mAcm -2 ,而生物能源的发电潜力为1193.7 kJ。

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