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首页> 外文期刊>Journal of power sources >Evaluation of a pilot-scale sewage biogas powered 2.8 kW(e) Solid Oxide Fuel Cell: Assessment of heat-to-power ratio and influence of oxygen content
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Evaluation of a pilot-scale sewage biogas powered 2.8 kW(e) Solid Oxide Fuel Cell: Assessment of heat-to-power ratio and influence of oxygen content

机译:2.8 kW(e)固体氧化物燃料电池中试规模沼气发电的评估:热电比评估和氧含量的影响

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摘要

Biogas from anaerobic digestion of organic matter is a promising renewable energy source and fuel cells appear as a breakthrough technology to improve the performance of the biogas-to-energy valorisation chain. The vast majority of studies addressing biogas energy recovery through Solid Oxide Fuel Cells published in recent years correspond to simulations and lab-scale performance with synthetic biogas. This paper assesses the pilot performance of a 2.8 kW(e) SOFC unit powered with cleaned sewage biogas for around 700 h in a Wastewater Treatment Plant. The biogas thorough treatment consisting of a biological desulphurisation with a biotrickling filter followed by a deep cleaning step based on adsorption is successful for removing sulphur compounds, siloxanes and hydrocarbons. The influence of the heat-to-power ratio on fuel cell performance is investigated operating the system at O/C ratio of 2, reforming temperature of 550 degrees C, stack temperature of 800 degrees C and at a constant voltage of 43 V. At optimized conditions for electrical production satisfying heat demand in the WWTP, system electrical and thermal efficiencies account for 34% and 28%. Cogeneration efficiency remains constant at around 59-62% for all the heat-to-power ratios tested. Furthermore, the impact of the oxygen content in the biogas is also studied. (C) 2015 Elsevier B.V. All rights reserved.
机译:厌氧消化有机物产生的沼气是一种有前途的可再生能源,燃料电池似乎是一项突破性技术,可提高沼气转化为能源的价值链的性能。近年来发表的有关通过固体氧化物燃料电池回收沼气能量的绝大多数研究都与合成沼气的模拟和实验室规模的性能相对应。本文评估了一个2.8 kW(e)SOFC装置的试验性能,该装置在污水处理厂中使用净化的污水沼气供电约700小时。沼气彻底处理包括用生物滴滤器进行生物脱硫,然后进行基于吸附的深度清洁步骤,成功去除了硫化合物,硅氧烷和碳氢化合物。在系统的O / C比为2,重整温度为550摄氏度,电池组温度为800摄氏度,恒定电压为43 V的条件下运行系统时,研究了热功率比对燃料电池性能的影响。在满足污水处理厂热需求的电力生产的最佳条件下,系统的电力和热效率分别占34%和28%。对于所有测试的热电比,热电联产效率保持恒定在59-62%左右。此外,还研究了沼气中氧气含量的影响。 (C)2015 Elsevier B.V.保留所有权利。

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