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Porous solid acid with high Surface area derived from emulsion templating and hypercrosslinking for efficient one-pot conversion of cellulose to 5-hydroxymethylfurfural

机译:高表面积的多孔固体酸源自乳液模板化和超交联,可将一锅有效地将纤维素转化为5-羟甲基糠醛

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摘要

This work addressed efficient one-pot conversion of cellulose to 5-hydroxymethylfurfural by porous solid acid in the presence of 1-ethyl-3-methyl-imidazolium chloride ([Emim] Cl). On the basis of stable water-in-oil pickering high internal phase emulsions (HIPEs), porous solid acid (HC-PDVB-SS-SO3H) was prepared by polymerizing divinylbenzene (DVB) and sodium p-styrenesulfonate (SS), succedent sulfonation in H2SO4 and hypercrosslinking process. HC-PDVB-SS-SO3H with a stable network exhibited mesopores within a macropore structure, high BET specific surface area and more super-strong acid sites. To test catalytic activity, the reaction conditions were optimized via response surface methodology, and the sequence of the three variables affecting HMF yield followed the order, temperature > reaction time > amount of catalyst. By comparing with the other as-prepared porous solid acid, it can also be concluded that BET specific surface area and super-strong acid site both played key roles in cellulose conversion. Moreover, HC-PDVB-SS-SO3H was very easily reused at least four times without significant loss of activity.
机译:这项工作解决了在1-乙基-3-甲基咪唑鎓氯化物([Emim] Cl)存在下,通过多孔固体酸将纤维素有效地一锅转化为5-羟甲基糠醛的问题。在稳定的油包水拾取器高内相乳液(HIPEs)的基础上,通过将二乙烯基苯(DVB)和对苯乙烯磺酸钠(SS)聚合,成功进行磺化反应制备了多孔固体酸(HC-PDVB-SS-SO3H)在硫酸和超交联过程中。具有稳定网络的HC-PDVB-SS-SO3H表现出大孔结构内的中孔,高BET比表面积和更多的超强酸位。为了测试催化活性,通过响应面方法对反应条件进行了优化,影响HMF收率的三个变量的顺序依次为温度>反应时间>催化剂量。通过与其他制备的多孔固体酸进行比较,还可以得出结论,BET比表面积和超强酸位点在纤维素转化中均起关键作用。而且,HC-PDVB-SS-SO3H非常容易重复使用至少四次,而没有明显的活性损失。

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