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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Promoting effect of H2S on the performance of ZrO2 and La2O3-ZrO2 catalysts in biomass gasification gas clean-up
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Promoting effect of H2S on the performance of ZrO2 and La2O3-ZrO2 catalysts in biomass gasification gas clean-up

机译:H2S在生物质气化气体清理生物质气化气体中ZrO2和La2O3-ZrO2催化剂性能的促进作用

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摘要

Use of the syngas produced by biomass gasification is rendered unviable because of impurity compounds, whose efficient removal is key to the feasibility of gasification concepts. Tars present in the biomass gasification gas can be efficiently oxidized by ZrO2 catalysts. H2S has been shown to increase the oxidation activity on ZrO2 and most notably on La2O3-ZrO2. Gasification gas clean-up experiments were performed at 600-800 degrees C to study the beneficial effect of H2S on naphthalene and toluene conversions. During time-on-stream with repeated doses of H2S on ZrO2, cumulative and strong H2S adsorption was observed as the conversion of toluene and naphthalene increased during the first H2S doses and stabilized towards the end. Therefore, a limited capacity of the catalyst to adsorb H2S was suggested, which is the origin of sulfur tolerance. Activity enhancement with H2S occurs most notably on La2O3-ZrO2 and towards naphthalene oxidation. XPS characterization of the used catalysts showed sulfur retention on the La2O3-ZrO2 but not on pure ZrO2, indicating that La2O3-ZrO2 holds more sulfur on its surface or binds it stronger. The surface properties of La2O3-ZrO2 were thus characterized with in situ DRIFTS using CO2 and CH3OH as probe molecules. The surface of La2O3-ZrO2 was suggested to have more low coordination sites than ZrO2, where sulfur is suggested to be bound and alter the reactivity of the surface oxygen.
机译:由于杂质化合物,使用生物质气化产生的合成气的使用,其有效的去除是气化概念的可行性的关键。在生物质气化气体中存在的焦油可以通过ZrO 2催化剂有效地氧化。已经显示H2S在La2O3-ZrO 2上增加ZrO2上的氧化活性,最值得注意的是。气化气体清理实验在600-800℃下进行,研究H2S对萘和甲苯转化的有益作用。在ZrO 2上重复剂量的H 2 S的对肟的延时期间,观察到累积和强H2S吸附作为甲苯和萘在第一个H2S剂量期间增加并稳定在末端。因此,提出了催化剂对吸附H2S的有限容量,这是硫耐受的起源。用H2S的活性增强最值得注意的是在La2O3-ZrO 2上并朝向萘氧化。 XPS表征使用的催化剂在La 2 O 3-ZrO 2上显示硫保留,但不在纯ZrO 2上显示,表明La2O3-ZrO2在其表面上保持更多硫或更强。因此,La2O3-ZrO2的表面性质表征使用CO 2和CH 3 OH作为探针分子的原位漂移。建议La2O3-ZrO2的表面具有比ZrO2更多的低配位位点,其中提出硫的结合并改变表面氧的反应性。

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