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选择性地将生物油转化为轻质烯烃:控制催化裂化以获得最大量的烯烃。

Selective conversion of bio-oil to light olefins: controlling catalytic cracking for maximum olefins.

机构信息

Department of Chemical Physics, Anhui Key Laboratory of Biomass Clean Energy, University of Science & Technology of China, Hefei, Anhui 230026, PR China.

出版信息

Bioresour Technol. 2011 Oct;102(19):9247-54. doi: 10.1016/j.biortech.2011.07.009. Epub 2011 Jul 18.

Abstract

Light olefins are the basic building blocks for the petrochemical industry. In this work, selective production of light olefins from catalytic cracking of bio-oil was performed by using the La/HZSM-5 catalyst. With a nearly complete conversion of bio-oil, the maximum yield reached 0.28±0.02 kg olefins/(kg bio-oil), which was close to that from methanol. Addition of La into zeolite efficiently changed the total acid amount of HZSM-5, especially the acid distribution among the strong, medium and weak acid sites. A moderate increase of the number of the medium acid sites effectively enhanced the olefins selectivity and improved the catalyst stability. The comparison between the catalytic cracking and pyrolysis of bio-oil was studied. The mechanism of the conversion of bio-oil to light olefins was also discussed.

摘要

轻烯烃是石油化工行业的基本组成部分。在这项工作中,通过使用 La/HZSM-5 催化剂,从生物油的催化裂化中选择性地生产轻烯烃。在生物油几乎完全转化的情况下,最大产率达到 0.28±0.02kg 烯烃/(kg 生物油),接近甲醇的产率。镧进入沸石中可以有效地改变 HZSM-5 的总酸量,特别是强酸、中强酸和弱酸位的酸分布。中等程度增加中强酸位的数量可以有效地提高烯烃的选择性并提高催化剂的稳定性。还研究了生物油的催化裂化和热解之间的比较。讨论了生物油转化为轻烯烃的反应机理。

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