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Biohythane system using two steps of POME fermentation process for supplying electrical energi: economic evaluation

机译:生物合闸系统使用两步的邮政发酵过程供电供电:经济评价

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Indonesia as the largest producer of palm oil in the world has the prospective to generate additional benefits such as electricity by utilizing Palm Oil Mill Effluent (POME). The high Chemical Oxygen Demand (COD) content of 35,000 ppm POME is a great potential for conversion to hydrogen and methane through a fermentation process. In this study, two stages of fermentation using a microbial consortium have been performed in the 1 m3 BioHythane reactor system to produce biohydrogen and biomethane. After two-stage fermentation process for 24 hours in this system, the microbial consortium succeeds in producing biohydrogen and biomethane of 32 and 60 vol. %, respectively. This gas product after the purification process could be converted to electricity to be 0.02 and 0.75 kWe, respectively. Furthermore, as result of economic calculation analysis, this biohythane system showed up the value of Capital Expenditures (CAPEX) of US $ 26,39540 and Operating Expenses (OPEX) of US $ 14,712 per year, and resulted total generated electricity cost of US $ 2.478 / kWh.
机译:印度尼西亚作为世界上最大的棕榈油生产国拥有前景,通过利用棕榈油磨流出物(PAME)来产生电力等额外福利。高化学需氧量(COD)含量为35,000ppm圆顶,通过发酵过程转化为氢气和甲烷的巨大潜力。在该研究中,在1M3生物律反应器系统中进行了使用微生物联盟的两种发酵阶段,以产生生物氢和生物甲烷。在该系统中24小时进行两级发酵过程后,微生物联盟成功地生产了32和60体积的生物氢和生物甲烷。 %, 分别。该净化过程后的气体产品分别可以分别转化为0.02和0.75kWe。此外,由于经济计算分析的结果,这种生物律系统的资本支出价值(CAPEX)每年14,712美元的营业费用(CAPEX),营业费用(OPEX)为14,712美元,并导致美元的总电力成本2.478 / kWh。

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