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首页> 外文期刊>Catalysis science & technology >Simultaneous hydrolysis and hydrogenation of cellobiose to sorbitol in molten salt hydrate media
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Simultaneous hydrolysis and hydrogenation of cellobiose to sorbitol in molten salt hydrate media

机译:在熔融盐水合物培养基中同时水解和将纤维糖氢化为山梨糖醇

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摘要

The hydrolysis and hydrogenation of cellobiose (4-0-p-D-glucopyranosyl-D-glucose) in ZnCI2·4H2O solvent was studied to optimize the conditions for conversion of lignocellulose (the most abundant renewable resource) into sorbitol (D-glucitol). Water at neutral pH does not allow hydrolysis of cellobiose under the conditions of the experiments (up to 125 °C, 4 h), but relatively fast hydrogenation of cellobiose into 3-β-D-glucopyranosyl-D-glucitol over a Ru/C catalyst in the presence of H2 takes place. In ZnCI2·4H2O hydrolysis does take place in the range of temperatures studied (75-125 °C) and simultaneously hydrogenation (H2, Ru/C), though at a lower rate than that in neutral water. Thus, a one-pot conversion of cellobiose into sorbitol is possible. The hydrolysis is the rate limiting reaction, but the selectivity to sorbitol is determined by the rate of hydrogenation. Under optimal conditions the yield of sorbitol is >95%. The kinetic pathways are discussed.
机译:研究了bobobiose(4-0-P-D-D-丙糖基-D-葡萄糖)在Znci2·4H2O溶剂中的水解和氢化,以优化木质纤维素转化(最丰富的可再生资源)转化为Sorbitol(D-Glucitol)的条件。 中性pH的水不允许在实验条件下(高达125°C,4小时)水解纤维二糖,但在RU/C上,纤维二糖在3-β-d-葡萄糖基-D-葡萄醇中相对较快地氢化为3-β-D-葡萄糖基-D-葡萄醇 H2存在的催化剂发生。 在ZnCI2·4H2O中,确实在研究的温度(75-125°C)和同时氢化(H2,RU/C)的范围内进行了水解,尽管其速度低于中性水。 因此,可以将纤维二糖转化为山梨糖醇。 水解是速率限制反应,但对山梨糖醇的选择性取决于氢化速率。 在最佳条件下,山梨糖醇的产量> 95%。 讨论了动力学途径。

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