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Simulated biogas for nickel-based solid oxide fuel cells

机译:用于镍基固体氧化物燃料电池的模拟沼气

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Biogas is composed of variable gases including hydrogen, nitrogen and sulphur, with methane and carbon dioxide as the main components. The common ratio of methane to carbon dioxide is 60/40 in volume and this high amount of methane causes carbon deposition when biogas is used in solid oxide fuel cells. To prevent carbon deposition, dry reforming, steam reforming or partial oxidation is the common method. In this paper, a nickel cermet solid oxide fuel cell was investigated with a simulated biogas based on 63% CH_4 and 37% CO_2, which was obtained by presuming 80% fuel utilisation and 25% recirculation of anode gas. Supplied with a 30 ml/min of simulated biogas, the cell generated a maximum power density of 856 mW cm~(-2) at 850 ℃. The cell ran stably at loads of 100 mA cm~(-2), 300 mA cm~(-2)and 500 mA cm~(-2) over a period of 16 hours at each level.
机译:沼气由可变气体组成,包括氢气,氮气和硫,以甲烷和二氧化碳为主要成分。甲烷与二氧化碳的常见体积比为60/40,当在固体氧化物燃料电池中使用沼气时,这种大量的甲烷会导致碳沉积。为了防止碳沉积,通常采用干重整,蒸汽重整或部分氧化的方法。本文研究了一种以63%CH_4和37%CO_2为基础的模拟沼气的镍金属陶瓷固体氧化物燃料电池,其假设燃料利用率为80%,阳极气体再循环率为25%。供给30 ml / min的模拟沼气,该池在850℃产生的最大功率密度为856 mW cm〜(-2)。在每个水平下,电池在100 mA cm〜(-2),300 mA cm〜(-2)和500 mA cm〜(-2)的负载下稳定运行16小时。

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