松节油合成高品质冰片的催化裂化废催化剂及其相关动力学研究

IF 3.8 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Hanqi Chang, Xiaopeng Chen, Xiaoxuan Liang, Hairong Mo, Xiaojie Wei, Mingda Zhang, Linlin Wang
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引用次数: 0

摘要

废液催化裂化催化剂(SFCC)既是危险固体废物,又是宝贵资源,需要对其进行环境安全、资源高效的处理,以支持石化工业的可持续发展。本研究采用″-自上而下″的方法对SFCC进行修饰,旨在解决现有催化剂在α-蒎烯酯化制冰片过程中对冰片内酯选择性较差的问题。改性后的HS-SFCC催化剂的BET比表面积为143.09 m2 g-1,具有由1.3 nm的中孔和9 ~ 25 nm的大孔组成的层状结构。使用不同探针分子的先进红外技术精确地揭示了HS-SFCC外表面暴露的大量Lewis酸位点,以及微孔开口处的一小部分Brønsted酸位点。可达酸位分布均衡,使得HS-SFCC在酯化反应中具有显著的催化性能。将松节油与HS-SFCC进行6 h酯化反应,再进行1 h皂化反应,合成出高质量的冰片,冰片内含量高达80.5%,表明HS-SFCC具有良好的催化活性和高选择性。经过12次循环,HS-SFCC具有良好的稳定性和可重复使用性。构建了HS-SFCC催化剂催化松节油与草酸酯化的复杂反应网络,采用集总动力学模型研究了松节油酯化反应的本征动力学,并根据Arrhenius关系计算了活化能和指前因子。主酯化反应的活化能范围为99.46 ~ 115.63 kJ mol-1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modified Spent FCC Catalysts with Accessible and Balanced Distribution of Acid Sites for the Stereospecific Synthesis of Turpentine into High-Quality Borneol and Associated Kinetics

Modified Spent FCC Catalysts with Accessible and Balanced Distribution of Acid Sites for the Stereospecific Synthesis of Turpentine into High-Quality Borneol and Associated Kinetics
The spent fluid catalytic cracking catalyst (SFCC), as both hazardous solid wastes and valuable resources, requires environmentally safe and resource-efficient treatment to support the sustainable development of the petrochemical industry. In this study, a ″top-down″ approach was employed to modify SFCC, aiming to address the poor selectivity of existing catalysts for endobornyl ester in the esterification of α-pinene to borneol. The BET surface area of the modified catalyst (HS-SFCC) was 143.09 m2 g–1, with a hierarchical structure consisting of mesopores of 1.3 nm and macropores ranging from 9 to 25 nm. Advanced infrared techniques with different probe molecules precisely revealed a significant number of Lewis acid sites exposed on the outer surface of HS-SFCC, along with a fraction of Brønsted acid sites at the micropore openings. The balanced distribution of accessible acid sites contributed to the remarkable catalytic performance of HS-SFCC in esterification reactions. After a 6-h esterification reaction of turpentine with HS-SFCC followed by a 1-h saponification reaction, high-quality borneol was synthesized with an endoborneol content of up to 80.5%, indicating excellent catalytic activity and high selectivity of HS-SFCC. Furthermore, HS-SFCC exhibited satisfactory stability and reusability after 12 cycles. A complex reaction network for the esterification of turpentine with oxalic acid catalyzed by the HS-SFCC catalyst was constructed, and the intrinsic kinetics of turpentine esterification were first investigated using a lumped kinetic model, with activation energies and pre-exponential factors calculated from the Arrhenius relationship. The activation energies for the main esterification ranged from 99.46 to 115.63 kJ mol–1.
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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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