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Comparison of adsorbents for H2S and D4 removal for biogas conversion in a solid oxide fuel cell

机译:固体氧化物燃料电池中用于脱除H2S和D4的沼气转化用吸附剂的比较

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Biogas contains trace compounds detrimental for solid oxide fuel cell (SOFC) application, especially sulphur-containing compounds and volatile organic silicon compounds (VOSiCs). It is therefore necessary to remove these impurities from the biogas for fuelling an SOFC. In this paper, dynamic lab-scale adsorption tests were performed on synthetic polluted gas to evaluate the performance of a polishing treatment to remove hydrogen sulphide (H2S - sulphur compound) and octamethylcyclotetrasiloxane (D4 - VOSiC). Three kinds of adsorbents were tested: an activated carbon, a silica gel (SG) and a zeolite (Z). Z proved to be the best adsorbent for H2S removal, with an adsorbed quantity higher than 75 mgH(2)S/g(Z) at the SOFC tolerance limit. However, as concerns D4 removal, SG was the most efficient adsorbent, with an adsorbed quantity of about 184mg(D4)/g(SG) at the SOFC tolerance limit. These results could not be explained by structural characteristics of the adsorbents, but they were partly explained by chemical interactions between the adsorbate and the adsorbent. In these experiments, internal diffusion was the controlling step, Knudsen diffusion being predominant to molecular diffusion. As Z was also a good adsorbent for D4 removal, competition phenomena were investigated with Z for the simultaneous removal of H2S and D4. It was shown that H2S retention was dramatically decreased in the presence of D4, probably due to D4 polymerization resulting in pore blocking.
机译:沼气中含有对固体氧化物燃料电池(SOFC)应用有害的微量化合物,尤其是含硫化合物和挥发性有机硅化合物(VOSiCs)。因此,有必要从沼气中除去这些杂质以为SOFC供能。在本文中,对合成污染气体进行了动态实验室规模的吸附测试,以评估抛光处理去除硫化氢(H 2 S-硫化合物)和八甲基环四硅氧烷(D 4-VOSiC)的性能。测试了三种吸附剂:活性炭,硅胶(SG)和沸石(Z)。 Z被证明是去除H2S的最佳吸附剂,在SOFC耐受极限下,其吸附量高于75 mgH(2)S / g(Z)。但是,关于D4的去除,SG是最有效的吸附剂,在SOFC耐受极限下的吸附量约为184mg(D4)/ g(SG)。这些结果不能用吸附剂的结构特征来解释,但是它们的一部分可以用吸附剂和吸附剂之间的化学相互作用来解释。在这些实验中,内部扩散是控制步骤,克努森扩散主要是分子扩散。由于Z也是去除D4的良好吸附剂,因此研究了Z同时去除H2S和D4的竞争现象。结果表明,在D4存在下,H2S的保留显着降低,这可能是由于D4聚合导致了孔阻塞。

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