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Phosphotungstic acid immobilized on amino-functionalized TS-1 zeolite as a solid acid catalyst for the synthesis of tributyl citrate
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作者 Pei Li Bianfang Shi +4 位作者 Junyao Shen Ran Cui wenze guo Ling Zhao Zhenhao Xi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期199-210,共12页
The amino-functionalization of TS-1 zeolite followed by immobilization of phosphotungstic acid(HPW)was presented to prepare a strong solid acid catalyst for the synthesis of bio-based tributyl citrate from the esterif... The amino-functionalization of TS-1 zeolite followed by immobilization of phosphotungstic acid(HPW)was presented to prepare a strong solid acid catalyst for the synthesis of bio-based tributyl citrate from the esterification of citric acid and n-butanol.γ-Aminopropyltriethoxysilane(APTES)was first grafted on the TS-1 zeolite via the condensation reactions with surface hydroxyl groups,and subsequently the HPW was immobilized via the reaction between the amino groups and the protons from HPW-forming strong ionic bonding.The Keggin structure of HPW and MFI topology of TS-1 zeolite were well maintained after the modifications.The amino-functionalization generated abundant uniformly distributed active sites on TS-1 for HPW immobilization,which promoted the dispersity,abundance,as well as the stability of the acid sites.The tetrahedrally coordinated framework titanium and non-framework titania behaved as weak Lewis acid sites,and the protons from the immobilized HPW acted as the moderate or strong Brønsted acid sites.An optimized TBC yield of 96.2%(mol)with a conversion of-COOH of 98.1%(mol)was achieved at 150℃for 6 h over the HPW immobilized on amino-functionalized TS-1.The catalyst exhibited good stability after four consecutive reaction runs,where the activity leveled off at still a relatively high level after somewhat deactivation possibly caused by the leaching of a small portion of weakly anchored APTES or HPW. 展开更多
关键词 AMINO-FUNCTIONALIZATION Phosphotungstic acid TS-1 zeolite ESTERIFICATION Tributyl citrate
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过程强化技术在糖催化反应制备糠醛类平台化合物中的研究进展
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作者 阮晨聪 郭文泽 乐军 《中国科学:化学》 CAS 2024年第11期2219-2231,共13页
5-羟甲基糠醛(HMF)和糠醛(FUR)被公认为是重要的生物质衍生平台化学品,为生物质原料通过生物炼制高值利用建立了有效的桥梁.过程强化技术为绿色和可持续化学合成开辟了广阔的机遇,其在HMF和FUR制备中的应用,可以有效提升反应速率,限制... 5-羟甲基糠醛(HMF)和糠醛(FUR)被公认为是重要的生物质衍生平台化学品,为生物质原料通过生物炼制高值利用建立了有效的桥梁.过程强化技术为绿色和可持续化学合成开辟了广阔的机遇,其在HMF和FUR制备中的应用,可以有效提升反应速率,限制副反应,继而提高HMF和FUR的生产效率.本文旨在综述过程强化技术在糖催化反应制备糠醛类平台化合物中的研究进展,主要包括反应分离技术(如反应与萃取、吸附、蒸馏及膜分离等过程的耦合)和新型反应器技术(如微反应器和微波反应器技术).着重概述了这些过程强化技术用于HMF和FUR制备的基本原理、应用潜力以及未来的研究展望与挑战. 展开更多
关键词 过程强化 生物质 平台化合物 催化转化 呋喃化合物
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