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Steam reforming of acetic acid for hydrogenproduction: Catalytic performances of Ni and Co supported on Ce_(0.75)Zr_(0.25)O2_ catalysts

机译:乙酸的蒸汽重整制氢:Ce_(0.75)Zr_(0.25)O2_催化剂上负载Ni和Co的催化性能

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The catalytic steam reforming of acetic acid over both Ni/ and Co/Ce0.75Zr0.25O2 (CZO) catalysts in the temperature range of 450-650 degrees C and steam-to-carbon molar ratios of 3-9 was studied. It was found that the complete acetic acid conversion was achieved for all the conditions investigated. Nevertheless, the C-C bond cleavage conversion was attained less than the acetic acid conversion at a given condition due to carbon deposition on the catalyst. However, hydrogen yield was obtained in the same trend as C-C bond cleavage conversion as well. The results revealed that the CZO as an active support prefers to promote the ketonization reaction to the C-C bond cleavage reaction at a lower temperature, and vice versa at a higher temperature. The Ni/CZO catalyst exhibits higher C-C bond cleavage conversion than the Co/CZO catalyst particularly at 650 degrees C whereas the Co/CZO catalyst is more active for ketonization reaction at low temperatures. However, as an increase in reaction temperature, the Co/CZO catalyst promotes ketonization reaction more pronouncedly toward aldol-condensation reaction thus giving rise to the carbon deposition. The results deduced from the effect of space velocity on the activity and product distribution suggested that the steam reforming of acetic acid over Ni/CZO catalyst is dominated by decomposition of acetic acid, while that of Co/CZO catalyst by ketonization reaction. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了Ni /和Co / Ce0.75Zr0.25O2(CZO)催化剂在温度范围为450-650摄氏度和水蒸气与碳的摩尔比为3-9的条件下对乙酸进行的催化水蒸气重整。发现在所有研究的条件下都实现了乙酸的完全转化。然而,由于碳在催化剂上的沉积,在给定条件下,C-C键的裂解转化率小于乙酸转化率。然而,也以与C-C键裂解转化相同的趋势获得氢产率。结果表明,作为活性载体的CZO倾向于在较低温度下将酮化反应促进为C-C键裂解反应,反之亦然。 Ni / CZO催化剂表现出比Co / CZO催化剂更高的C-C键裂解转化率,特别是在650℃下,而Co / CZO催化剂对于低温下的酮化反应更具活性。然而,随着反应温度的升高,Co / CZO催化剂更明显地促进酮化反应向醛醇缩合反应,从而引起碳沉积。由空速对活性和产物分布的影响得出的结果表明,Ni / CZO催化剂上乙酸的水蒸气重整以乙酸分解为主,而Co / CZO催化剂通过酮化反应进行水蒸气重整。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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