共查询到18条相似文献,搜索用时 81 毫秒
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Yao Zhong Cuiying Huang Lijie Li Qiang Deng Jun Wang Zheling Zeng Shuguang Deng 《中国化学工程学报》2022,49(9):245-252
Developing an efficient and selective catalyst for the dehydration of fructose to 5-hydroxymethylfurfural(HMF) is significant for biomass conversion. Herein, a metal-organic framework(MOF) with acidity and strong hydrophobicity is first reported by the condensation of amino-tagged MOFs with mercapto carboxylic acids and subsequent oxidation. The hydrophobic acidic MOFs possess acid densities ranging from 0.2-1.0 mmol·g-1, H2O contact angles of 114°-125°, and specific surfac... 相似文献
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2,5-呋喃二甲醇(BHMF)在合成树脂、药物等方面具有重要应用。随着化石资源的日益缩减,由可再生的生物质基平台分子5-羟甲基糠醛(HMF)催化制备BHMF引起人们的广泛关注。本文在总结了HMF及BHMF物化性质的基础上,介绍了HMF在分子氢、醇类、甲酸3种不同的氢供体中催化加氢制备BHMF的研究近况,总结了贵金属、非贵金属、双金属或多金属协同催化体系在该加氢反应中的应用进展,同时分析了反应过程中温度、时间、催化剂载体、反应溶剂种类及酸值等因素对HMF转化率及BHMF得率的影响。最后对HMF催化转化制备BHMF的研究前景进行了总结和展望,提出了使用醇类代替氢气作为氢供体,开发非贵金属及金属协同催化体系将是该选择性氢化反应的重要研究方向之一。 相似文献
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5-羟甲基糠醛(HMF)是一种链接可再生生物质资源与燃料化合物及化学中间体的重要新型平台化合物。文中对高温(180—200℃)条件下,金属氯化物为催化剂,离子液体[BMIM]Cl为溶剂,木质纤维素(相思木木屑)为原料快速制备HMF和糠醛的反应过程进行了研究。通过对反应温度、原料用量、盐酸(HCl)添加量、催化剂种类及用量等因素进行考察,优化了反应条件。研究结果表明:与文献报道的低温下纤维素降解反应相比,高温条件可使木质纤维素为原料制备HMF的反应过程得到强化。在所考察的金属氯化物催化剂中,CrCl3.6H2O的催化效果最优,其中以CrCl3.6H2O为催化剂,200℃下反应4 min时产物HMF及糠醛的收率分别可达55.0%和22.9%。该高温反应过程反应快速、产物收率高,无需木质纤维素原料的预处理操作,为工业上简单快速制备HMF提供了一种可行方法。 相似文献
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为了考察硅源对ZSM-5分子筛合成和催化性能的影响,分别采用白炭黑、硅胶、硅溶胶和单分散SiO2为硅源合成ZSM-5分子筛,对合成的ZSM-5分子筛进行XRD、SEM、BET和NH3-TPD表征,并以C4烯烃为原料评价合成的ZSM-5分子筛的催化裂解性能。结果表明,以硅溶胶为硅源合成的ZSM-5分子筛具有较好的结晶度和催化活性。水热处理使分子筛酸量减少,孔容缩小,改善了分子筛的乙烯丙烯选择性。经600 ℃水热处理4 h的ZSM-5分子筛在常压、580 ℃和空速9 h-1反应条件下,丁烯催化裂解为乙烯和丙烯平均转化率为90.2%,乙烯和丙烯总收率达61.1%。 相似文献
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Zexing Huang Zhijuan Zeng Xiaoting Zhu Wenguang Zhao Jing Lei Qiong Xu Yongjun Yang Xianxiang Liu 《Frontiers of Chemical Science and Engineering》2023,17(4):415
2,5-bis(hydroxymethyl)furan (BHMF) is an important monomer of polyester. Its oxygen-containing rigid ring structure and symmetrical diol functional group establish it as an alternative to petroleum-based monomer with unique advantages for the prodution of the degradable bio-based polyester materials. Herein, we prepared a boehmite-supported copper-oxide catalyst for the selective hydrogenation of 5-hydroxymethylfurfural into BHMF via catalytic transfer hydrogenation (CTH). Further, ethanol successfully replaced conventional high-pressure hydrogen as the hydrogen donor, with up to 96.9% BHMF selectivity achieved under suitable conditions. Through characterization and factor investigations, it was noted that CuO is crucial for high BHMF selectivity. Furthermore, kinetic studies revealed a higher by-product activation energy compared to that of BHMF, which explained the influence of reaction temperature on product distribution. To establish the catalyst structure-activity correlation, a possible mechanism was proposed. The copper-oxide catalyst deactivated following CTH because ethanol reduced the CuO, which consequently decreased the active sites. Finally, calcination of the catalyst in air recovered its activity. These results will have a positive impact on hydrogenation processes in the biomass industry. 相似文献