Isoamylene Dimerization over Mesoporous Y Zeolites

IF 3.9 3区 工程技术 Q2 ENGINEERING, CHEMICAL Industrial & Engineering Chemistry Research Pub Date : 2024-12-12 DOI:10.1021/acs.iecr.4c03390
Yuehua Xiao, Chengtao Wang, Jiale Xiao, Hangjie Li, Zhengxing Cui, Yeqing Wang, Liang Wang, Feng-Shou Xiao
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Abstract

Oligomerization of alkenes is a promising way for production of high-quality and eco-friendly liquid fuels, where zeolite catalysts are critical. In the zeolite catalysts, mass transfer and accessibility in the reaction are normally influenced by intrinsic micropores of zeolites, in particular, bulky or branched molecules are employed. Here, we report isoamylene (2-methyl-2-butene) dimerization over mesoporous HY zeolites obtained by facile NaOH treatments. These mesoporous HY zeolites exhibited high activity and good stability for the isoamylene dimerization compared with untreated HY zeolite. Powder XRD patterns, N2 physisorption, SEM, TEM, NMR, FTIR, and NH3-TPD techniques were used to characterize the porosity and acidity of the zeolites. These results showed that mass transfer and accessibility to the acid sites of the guest molecules are the key factors for the improvement of catalytic performances.

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介孔Y型沸石上异戊烯二聚化反应
烯烃的低聚反应是生产高质量和环保液体燃料的一种很有前途的方法,其中沸石催化剂至关重要。在沸石催化剂中,反应中的传质和可及性通常受到沸石固有微孔的影响,特别是使用体积较大或支链的分子。在这里,我们报告了异戊烯(2-甲基-2-丁烯)二聚体在介孔HY沸石上通过易溶NaOH处理得到。与未经处理的HY沸石相比,这些介孔HY沸石对异戊烯二聚化表现出较高的活性和良好的稳定性。采用粉末XRD、N2物理吸附、SEM、TEM、NMR、FTIR和NH3-TPD等技术对分子筛的孔隙度和酸度进行表征。这些结果表明,传质和客体分子酸位的可及性是提高催化性能的关键因素。
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文献相关原料
公司名称
产品信息
乐研
ammonium acetate
阿拉丁
tetraethyl orthosilicate
阿拉丁
heptane
阿拉丁
tetraethyl orthosilicate
阿拉丁
heptane
来源期刊
Industrial & Engineering Chemistry Research
Industrial & Engineering Chemistry Research 工程技术-工程:化工
CiteScore
7.40
自引率
7.10%
发文量
1467
审稿时长
2.8 months
期刊介绍: ndustrial & Engineering Chemistry, with variations in title and format, has been published since 1909 by the American Chemical Society. Industrial & Engineering Chemistry Research is a weekly publication that reports industrial and academic research in the broad fields of applied chemistry and chemical engineering with special focus on fundamentals, processes, and products.
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