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首页> 外文期刊>Catalysis science & technology >One-pot fructose conversion into 5-ethoxymethylfurfural using a sulfonated hydrophobic mesoporous organic polymer as a highly active and stable heterogeneous catalyst
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One-pot fructose conversion into 5-ethoxymethylfurfural using a sulfonated hydrophobic mesoporous organic polymer as a highly active and stable heterogeneous catalyst

机译:锅果糖转换成5-ethoxymethylfurfural使用磺化疏水介孔有机聚合物作为高度活跃的和稳定的非均相催化剂

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摘要

We report a sulfonated hydrophobic mesoporous organic polymer (MOP-SO3H) as a highly efficient heterogeneous catalyst for one-pot 5-ethoxymethylfurfural (EMF) production from fructose in ethanol solvent. MOP-SO3H was fabricated by co-polymerization of divinylbenzene (DVB) and sodium p-styrene sulfonate (SPSS) followed by ion exchange with dilute H2SO4, and its pore structure and acid density could be tuned easily by varying the mole ratio of SPSS to DVB. P-31 MAS NMR analysis using trimethylphosphine oxide as a base probe molecule indicated that MOP-SO3H possessed a weaker Bronsted acid site than conventional cation-exchange resins. The superhydrophobic properties of MOP-SO3H were retained even after incorporating a greater number of sulfonic acid groups into the polymer framework, while conventional solid acid resins exhibited hydrophilic properties. MOP-SO3H exhibited a superior catalytic performance in comparison with conventional acid resins, a mesoporous acid catalyst, and homogeneous acid catalysts in EMF production from fructose. After optimization of various reaction conditions using MOP-SO3H, a high EMF yield of 72.2% at 99.3% fructose conversion was achieved at 100 degrees C in a very short reaction time of 5 h. Notably, MOP-SO3H showed a much higher EMF formation rate than the Amberlyst-15 catalyst (53.5 vs. 6.1 mu mol g(-1) min(-1)). This superior performance of the MOP-SO3H catalyst was attributed to its unique feature of large surface area containing a large quantity of readily accessible acid sites distributed throughout the hydrophobic polymer framework. In addition to its high catalytic activity, the notable stability of the MOP-SO3H catalyst was also confirmed by leaching and recyclability tests. Thus, owing to its excellent catalytic performance and easy scalability, MOP-SO3H can potentially be used as an industrial heterogeneous catalyst to produce EMF from various fructose-containing biomass.
机译:我们报告一个磺化疏水介孔有机聚合物(MOP-SO3H)作为一种高效非均相催化剂的锅5-ethoxymethylfurfural (EMF)的生产果糖在乙醇溶剂中。二乙烯基苯共聚的制作的(DVB)和p-styrene磺酸钠(SPSS)其次是离子交换与稀硫酸和其孔隙结构和酸密度调整很容易通过改变SPSS的摩尔比DVB。trimethylphosphine氧化物作为探针分子基础表明MOP-SO3H拥有较弱布仑斯惕酸网站比传统阳离子交换树脂。MOP-SO3H甚至都保留的属性将更多的磺酸组到聚合物框架传统的固体酸树脂表现出亲水特性。相比,优越的催化性能传统的酸树脂、介孔酸在EMF催化剂、均相酸催化剂从果糖生产。使用MOP-SO3H各种反应条件,EMF产量高72.2%,99.3%的果糖转换是实现在100摄氏度很短的反应时间5 h。值得注意的是,MOP-SO3H显示EMF生成率要高得多比Amberlyst-15催化剂(53.5 vs 6.1亩摩尔g(1)分(1))。MOP-SO3H催化剂是归因于它的特点就是包含一个大的表面积大量的可存取的酸分布在整个疏水性聚合物框架。活动,MOP-SO3H的显著的稳定性也证实了浸出和催化剂再循环能力测试。催化性能和简单的可伸缩性,MOP-SO3H可以用作工业非均相催化剂产生电动势各种fructose-containing生物量。

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