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首页> 外文期刊>Journal of Bioprocessing & Biotechniques >Design and Fabrication of a Double Chamber Microbial Fuel Cell for Voltage Generation from Biowaste
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Design and Fabrication of a Double Chamber Microbial Fuel Cell for Voltage Generation from Biowaste

机译:利用生物废料产生电压的双室微生物燃料电池的设计与制造

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Electrical energy needs in Pakistan are expected to continue to rise. The use of petroleum as a source of energy still dominates, although oil reserves in Pakistan are increasingly being depleted. Therefore, there is a need to develop alternative source of sustainable energy, such as, Microbial Fuel Cell (MFC). MFC shows another type of renewable energy by changing natural matter into power with the help of microbes. In the current study, an attempt has been made to find the effect of molar concentration of salt bridge on electron transferring potential and to find the efficiency of bioelectricity generation by yeasts such as Hansenula anomala and Saccharomyces cerevisiae. Maximum current of 1.9 mV and 1.4 mV was generated by yeasts Hansenula anomala and Saccharomyces cerevisiae in 1M potassium chloride salt bridge with duration of 96 hrs. This work also demonstrates the feasibility of using yeasts Hansenula anomala and Saccharomyces cerevisiae for current generation, in a mediator less MFC. During the metabolism the fuels like glucose gets oxidized when they pass through the metabolic cycle. The possibility of alternative sources is one particular method of generating power is with the help of microbial fuel cell, which can minimize the usage of fossil fuels. MFCs can produce energy directly from biomass (electricity production) or producing hydrogen from biomass (fuel production). Biological fuel cell converts the chemical energy of carbohydrates such as sugar and alcohol indirectly into electrical energy.
机译:巴基斯坦的电能需求预计将继续上升。尽管巴基斯坦的石油储量日益枯竭,但使用石油作为能源仍然占主导地位。因此,需要开发可持续能源的替代来源,例如微生物燃料电池(MFC)。 MFC通过在微生物的帮助下将自然物质转化为电能来显示另一种可再生能源。在当前的研究中,已经尝试寻找盐桥的摩尔浓度对电子转移电势的影响,并寻找通过诸如汉逊酵母(Hansenula anomala)和酿酒酵母(Saccharomyces cerevisiae)的酵母产生生物电的效率。酵母汉逊酵母和酿酒酵母在1M氯化钾盐桥中产生的最大电流为1.9 mV和1.4 mV,持续时间为96小时。这项工作还证明了在较少介体的MFC中使用酵母汉逊酵母和酿酒酵母作为现代酵母的可行性。在新陈代谢过程中,葡萄糖等燃料经过新陈代谢循环时会被氧化。替代能源的可能性是一种借助微生物燃料电池发电的特殊方法,该方法可以最大程度地减少化石燃料的使用。 MFC可以直接从生物质生产能量(发电)或从生物质生产氢气(燃料生产)。生物燃料电池将碳水化合物(例如糖和酒精)的化学能间接转化为电能。

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