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首页> 外文期刊>RSC Advances >Synthesis and evaluation of macroporous polymerized solid acid derived from Pickering HIPEs for catalyzing cellulose into 5-hydroxymethylfurfural in an ionic liquid
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Synthesis and evaluation of macroporous polymerized solid acid derived from Pickering HIPEs for catalyzing cellulose into 5-hydroxymethylfurfural in an ionic liquid

机译:离子液体中Pickering HIPE衍生的大孔聚合固体酸的合成及催化纤维素催化5-羟甲基糠醛的合成

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摘要

Stable water-in-oil (W/O) Pickering high internal phase emulsions (HIPEs) with an internal phase volume fraction of 84.8% were first stabilized by both the hydrophobic silica nanoparticles and span 80. Then, based on the obtained Pickering HIPEs, several macroporous polymerized solid acid (PDVB-SS-X-SO3H, X = 0, 0.2, 0.6) were prepared by polymerizing divinyl benzene (DVB) and sodium p-styrenesulfonate (SS), and were subsequently combined with sulfonation in H2SO4. All the as-prepared PDVB-SS-X-SO3H possessed open-cell structure, interconnecting pores and strong acidity, and were adopted as catalysts to convert cellulose into 5-hydroxymethylfurfural (HMF) in the presence of [Emim] Cl-mediated solvents. The results showed a maximum yield of 29.6% for PDVB-SS-0.2-SO3H, 12.9% for PDVB-SS-0-SO3H and 15.5% for PDVB-SS-0.6-SO3H under the same condition within 2.0 h at 120 degrees C, suggesting that the pore sizes and strong acidic sites played a key role in cellulose conversion. PDVB-SS-X-SO3H can be very easily recycled at least four times without a significant loss of activity. This research opens up a new method to synthesize porous solid acid catalyst materials through Pickering HIPEs templates.
机译:首先用疏水性二氧化硅纳米颗粒和跨度为80的稳定相稳定度为84.8%的稳定油包水(W / O)Pickering高内相乳液(HIPE)。然后,基于获得的Pickering HIPE,通过聚合二乙烯基苯(DVB)和对苯乙烯磺酸钠(SS)制备几种大孔聚合的固体酸(PDVB-SS-X-SO3H,X = 0,0.2,0.6),然后在H2SO4中与磺化反应混合。所有制备的PDVB-SS-X-SO3H均具有开孔结构,连通孔和强酸性,并被用作催化剂,在[Emim] Cl介导的溶剂存在下将纤维素转化为5-羟甲基糠醛(HMF)。 。结果表明,在相同条件下,在120摄氏度下,于相同条件下,PDVB-SS-0.2-SO3H的最大产率为29.6%,PDVB-SS-0-SO3H的为12.9%,PDVB-SS-0.6-SO3H的为15.5%。 ,表明孔径和强酸性部位在纤维素转化中起关键作用。 PDVB-SS-X-SO3H可以很容易地回收至少四次,而不会造成明显的活性损失。这项研究开辟了一种通过Pickering HIPEs模板合成多孔固体酸催化剂材料的新方法。

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