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Zeolite-catalyzed isomerization of tetroses in aqueous medium

机译:沸石催化的四月在水性介质中的异构化

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The isomerization of erythrose (ERO) was studied in water over commercially available large-pore zeolites, e.g. H-Y, H-USY and H-beta. Among the employed zeolites, H-USY(6) was found to efficiently isomerize the sugar, yielding 45% erythrulose (ERU), 42% ERO and 3% of the epimer threose (THO) (corresponding to the equilibrium mixture), i.e. total tetrose yield 90%, after reaction for 5-7 h at 120 °C. Changing the solvent from water to methanol decreased the yield of ERU markedly to 18% and gave only a total yield of tetroses of 27% which is significantly lower than that obtained in water. Hence, the results demonstrate that water is the preferred solvent compared to lower alcohols for zeolite-catalyzed tetrose isomerization, which is opposite to what has been found previously for analogous pentose and hexose isomerization. A reuse study revealed further that H-USY(6) could be applied for at least five reaction runs with essentially unchanged activity and without significant aluminum leaching from the catalyst. The use of benign reaction conditions and an industrially pertinent solid catalyst in combination with water establishes a new, green tetrose isemerization protocol.
机译:在商业可用的大孔沸石中研究了红细胞(ERO)的异构化(ERO),例如H-Y,H-usy和H-Beta。在使用的沸石中,发现h- uSy(6)有效地异构化糖,产生45%的红细胞素(ERU),42%ERO和3%的epimer threose(Tho)(THO)(对应于总和),即对应于平衡混合物)四糖在120°C下反应5-7小时后产生90%。将溶剂从水变成甲醇的溶剂将ERU的产量显着降低至18%,仅给出了四剂的总收益率为27%,这显着低于水中所获得的四月。因此,结果表明,与沸石催化的四糖异构化相比,水是首选的溶剂,这与以前针对类似的五戊糖和己糖异构化相反。一项重复使用研究进一步表明,H- uSy(6)至少可以进行五个反应运行,其基本不变活性,并且没有催化剂的明显铝浸出。良性反应条件和工业相关的固体催化剂与水结合使用,建立了一种新的绿色四糖isemerization方案。

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