CO_(2)催化加氢制备甲酸的研究进展  

Research Progress on Preparation of Formic Acid by CO_(2)Catalytic Hydrogenation

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作  者:张西标 王旭堃 李维新 ZHANG Xi-biao;WANG Xu-kun;LI Wei-xin(National Engineering Technology Research Center Co.,Ltd.of Yankuang Coal Water Slury Casification and Coal Chemical Industry,Shandong Jinan 250000;Yankuang Donghua Construction Co.,Ltd.,Shandong Jining 273500;Shandong Yankuang Cuotuo Technology Engineering Co.,Ltd.,Shandong Jinan 250000,China)

机构地区:[1]兖矿水煤浆气化及煤化工国家工程研究中心有限公司,山东济南250000 [2]兖矿东华建设有限公司,山东济宁273500 [3]山东兖矿国拓科技工程股份有限公司,山东济南250000

出  处:《广州化工》2023年第3期56-58,共3页GuangZhou Chemical Industry

摘  要:近年来,随着全球工业化进程的加快,对石化资源的消耗急剧升高,导致二氧化碳的排放量逐年增加,进而引起全球气候变暖。以二氧化碳作为碳源,通过催化加氢生产具有高附加值的燃料和化学品是应对全球气候变暖和减缓石化资源枯竭的有前途的方法。概述了近年来针对不同催化剂催化二氧化碳加氢制备具有高附加值的甲酸的研究进展,并对影响催化剂活性的因素进行了总结。In recent years,with the acceleration of the global industrialization process,the consumption of petrochemical resources has risen sharply,leading to an increase in carbon dioxide emissions year by year,which in turn causes global warming.Using carbon dioxide as a carbon source to produce high-value-added fuels and chemicals through catalytic hydrogenation is a promising way to deal with global warming and slow the depletion of petrochemical resources.The research progress in recent years for the preparation of high value-added formic acid by the catalytic hydrogenation of carbon dioxide with different catalysts was summarized,and the factors affecting the activity of the catalyst were summarized.

关 键 词:CO_(2) 催化加氢 甲酸 

分 类 号:TM23[一般工业技术—材料科学与工程]

 

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