Department of Energy (DENERG), Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Turin, Italy.
Department of Energy (DENERG), Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Turin, Italy.
Waste Manag. 2018 Feb;72:306-312. doi: 10.1016/j.wasman.2017.11.030. Epub 2017 Nov 20.
Biogas from biological treatments and from the waste degradation in landfills generally contains a wide range of trace impurities (e.g., sulphur compounds, siloxanes, halogens, tar compounds, etc.). This paper describes an experimental analysis performed with SOFC single cells fed by a synthetic gas polluted by HS, HCl, D4 and a mixture of HS + CCl. The aim is to detect the threshold tolerance limit on different cell performance parameters. Results show how: hydrogen sulphide has a strong impact on the polarization losses due to the nickel sulphide formation on the electrode that causes a mass transfer resistance. Hydrogen chloride particularly limited the electrochemical processes. Octamethylcyclotetrasiloxane (D4) showed a high impact on SOFC performance even at ultra-low level (78-178 ppb(v)) as a consequence of the formation of silicon dioxide covering the anode porous sites. Sulphur added to CCl, accelerated the deterioration of SOFC performance. In addition, current density variations and operating temperature are studied during sulphur poisoning. An opposite behaviour on SOFC performance was revealed by operating temperature and current density.
生物处理和垃圾填埋场中废物降解产生的沼气通常含有广泛的痕量杂质(例如,硫化合物、硅氧烷、卤素、焦油化合物等)。本文描述了用 SOFC 单体电池进行的实验分析,该单体电池由被 HS、HCl、D4 和 HS+CCl 混合物污染的合成气供应。目的是检测不同电池性能参数的阈值耐受极限。结果表明,由于电极上形成硫化镍导致传质阻力,硫化氢对极化损耗有很强的影响。氯化氢特别限制了电化学过程。八甲基环四硅氧烷(D4)即使在超低水平(78-178 ppb(v))下,由于形成覆盖阳极多孔位的二氧化硅,对 SOFC 性能也有很大的影响。添加到 CCl 中的硫加速了 SOFC 性能的恶化。此外,在硫中毒过程中研究了电流密度变化和工作温度。工作温度和电流密度揭示了 SOFC 性能的相反行为。