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The effect of heavy tars (toluene and naphthalene) on the electrochemical performance of an anode-supported SOFC running on bio-syngas

机译:重焦油(甲苯和萘)对在生物合成气上运行的阳极支撑SOFC电化学性能的影响

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The effect of heavy tar compounds on the performance of a Ni-YSZ anode supported solid oxide fuel cell was investigated. Both toluene and naphthalene were chosen as model compounds and tested separately with a simulated bio-syngas. Notably, the effect of naphthalene is almost negligible with pure H-2 feed to the SOFC, whereas a severe degradation is observed when using a bio-syngas with an H-2:CO = 1. The tar compound showed to have a remarkable effect on the inhibition of the WGS shift-reaction, possibly also on the CO direct electro-oxidation at the three-phase-boundary. An interaction through adsorption of naphthalene on nickel catalytic and electrocatalytic active sites is a plausible explanation for observed degradation and strong performance loss. Different sites seem to be involved for H-2 and CO electro-oxidation and also with regard to catalytic water gas shift reaction. Finally, heavy tars (C >= 10) must be regarded as a poison more than a fuel for SOFC applications, contrarily to lighter compounds such benzene or toluene that can directly reformed within the anode electrode. The presence of naphthalene strongly increases the risk of anode re-oxidation in a syngas stream as CO conversion to H-2 is inhibited and also CH4 conversion is blocked. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了重焦油化合物对Ni-YSZ阳极负载固体氧化物燃料电池性能的影响。选择甲苯和萘作为模型化合物,并分别用模拟的生物合成气进行测试。值得注意的是,使用纯H-2进料到SOFC中,萘的作用几乎可以忽略不计,而当使用H-2:CO = 1的生物合成气时,观察到严重降解。抑制WGS转移反应,也可能抑制三相边界处的CO直接电氧化。通过萘在镍催化和电催化活性位点上的吸附相互作用是观察到的降解和强性能损失的合理解释。 H-2和CO电氧化以及催化水煤气变换反应似乎涉及不同的位点。最后,与焦油(C> = 10)相比,重焦油应被视为毒气,而不是SOFC应用的燃料,这与可在阳极电极内直接重整的轻质化合物(如苯或甲苯)相反。萘的存在极大地增加了合成气流中阳极再氧化的风险,因为会抑制CO向H-2的转化,同时也会阻止CH4的转化。 (C)2016 Elsevier Ltd.保留所有权利。

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