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Glucose isomerisation into fructose over magnesium-impregnated NaY zeolite catalysts

机译:通过镁浸渍的NaY分子筛催化剂将葡萄糖异构化成果糖

摘要

The performance of magnesium-impregnated NaY zeolite catalysts for the glucose isomerisation into fructose at 100 °C has been evaluated. Although crystallinity and textural properties of the zeolites are reduced through Mg addition, glucose conversion improves (6–49%) by increasing magnesium content (0–15 wt.%) due to an increase of the number of basic sites. Conversely, selectivity to fructose drops (96–66%). Nevertheless, good fructose yields were still reached with 10 and 15 wt.% of magnesium (about 32%), being similar or even higher than those found for a commercial hydrotalcite and a pure magnesium oxide. Catalysts lose performance through carbon retention and cations leaching. Deactivation of magnesium-based zeolites was further investigated by consecutive reaction runs. If no regeneration of the catalyst is performed, the activity of the zeolites decreases mainly as a result of cations leaching, the effect reducing with the number of runs. Regeneration allows the catalyst to recover almost totally its initial activity. Interestingly, used samples show higher fructose selectivity due to the additional pore opening resulting from cations leaching and/or carbon removal. Cations leaching results in a homogeneous catalytic reaction which is most significant for the highest magnesium content. Magnesium-based NaY zeolites are revealed as potential catalysts for glucose isomerisation into fructose with high fructose productivities and good performance in consecutive reactions combined with intermediate regeneration.
机译:已经评估了镁浸渍的NaY沸石催化剂在100°C下将葡萄糖异构化为果糖的性能。尽管通过添加镁降低了沸石的结晶度和质构特性,但由于增加了碱性位点的数量,镁的含量增加(0-15 wt。%),葡萄糖的转化率提高了(6-49%)。相反,果糖的选择性下降(96–66%)。然而,用10和15重量%的镁(约32%)仍能达到良好的果糖产率,这与市售水滑石和纯氧化镁所发现的相似或什至更高。催化剂由于碳保留和阳离子浸出而失去性能。通过连续的反应运行进一步研究了镁基沸石的失活。如果不进行催化剂的再生,则沸石的活性主要由于阳离子的浸出而降低,其效果随运行次数而降低。再生使催化剂几乎完全恢复其初始活性。有趣的是,由于阳离子浸出和/或除碳导致额外的开孔,使用过的样品显示出更高的果糖选择性。阳离子浸出导致均相催化反应,这对于最高镁含量最为重要。镁基NaY沸石被揭示为葡萄糖异构化为果糖的潜在催化剂,具有高果糖生产率,并且在连续反应与中间再生相结合中具有良好的性能。

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