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铜基催化剂催化合成气一步合成甲醇和甲酸甲酯IV.空速、反应时间、杂质和Cu-Cr摩尔比的影响(英文)

CONCURRENT SYNTHESIS OF METHANOL AND METHVL FORMATE FROM SYNTHESIS GAS CATALYZED BY COPPER-BASED CATALYSTS IV. INFLUENCES OF SPACE VELOCITY, REACTION TIME AND IMPURITIES AS WELL AS Cu-Cr MOLAR RATIONS

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【作者】 刘兴泉吴玉塘陈文凯罗世忠贾朝霞李顺芬杨迎春于作龙

【Author】 Liu Xingquan; Wu Yutang; Chen Wenkai; Luo Shizhong; Jia Zhaoxia; Li Shunfen; Yang Yingchun; Yu Zuolong (Chengdu Institute of Organic Chemistry The Chinese Academy of Sciences Chengdu, Sichuan 610041)

【机构】 中国科学院成都有机化学研究所!四川成都610041中国科学院成都有机化学研究所!四川成

【摘要】 在低温低压和浆态反应条件下,考察了空速、反应时间、杂质及Cu-Cr摩尔比对铜基催化剂催化合成气一步合成甲醇和甲酸甲酯反应的影响。实验结果表明,空速对催化剂活性有较显著的影响;CO转化率与反应时间无关,但H2的转化率与反应时间有关。在15小时之内H2的转化率随反应时间增加而缓慢增加,此后与反应时间无关。此外,高浓度的杂质使催化剂的活性和寿命下降,而且Cu/Cr摩尔比和热处理气氛对催化剂的物相和活性也有显著的影响。

【Abstract】 The concurrent synthesis of methanol(CH3OH) and methyl formats (HCOOCH3, MF) from synthesis gas at low temperature and pressure in a slurry phase heterogeneously catalyzed by copper-based catalysts has been investigated, including influences of space velocity (SV), reaction time and impurities as well as Cu-Cr molar ratios. The experimental results have demonstrated that the space velocity has a significant influence on the catalyst activity. The conversion of CO is independent of reaction time, but the conversion of H2 depends upon the reaction time. The conversion of H2 increases slowly with the reaction the during the first 15h. After that, the conversions are irrelevant to the reaction time. In addition, the impurities with high content may reduce the catalyst activity and life. Furthermore, Cu-Cr molar ratio and thermal treatment atmosphere have remarkable influences on the catalyst phase and activity.

【基金】 This Project is suPPorted by the State Science and Techllology Commission of China.
  • 【文献出处】 Journal of Natural Gas Chemistry ,天然气化学杂志(英文版) , 编辑部邮箱 ,2000年01期
  • 【分类号】O623
  • 【被引频次】2
  • 【下载频次】166
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