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首页> 外文期刊>Reaction Chemistry & Engineering >From batch to continuous: Au-catalysed oxidation of D-galacturonic acid in a packed bed plug flow reactor under alkaline conditions
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From batch to continuous: Au-catalysed oxidation of D-galacturonic acid in a packed bed plug flow reactor under alkaline conditions

机译:从批次到连续:碱性条件下填充床塞流体反应器中的D-半乳糖醛酸的Au催化氧化

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摘要

Currently biomass based conversions are often performed in batch reactors. From an operational and economic point of view the use of a continuous plug flow reactor is preferred. Here we make a back to back comparison of the use of a batch and plug flow reactor for the oxidation of (sodium)-galacturonate to (disodium)-galactarate using a heterogeneous Au-catalyst. We will show that the use of a three phase plug flow reactor results in enhanced O2 mass transfer which resulted in a 10–40 fold increase in productivity (up to 2.2 ton m~(-3) h~(-1)). However, the product selectivity slightly dropped from >99 mol% in batch (controlled pH) to 94 mol% in packed bed (uncontrolled pH). Both reactors suffer from the low solubility of the reaction product. We will show that this solubility is the most significant challenge for performing this oxidation on industrial scale.
机译:目前基于生物质的转化率通常在批量反应器中进行。 从操作和经济的角度来看,优选使用连续塞流反应器。 在这里,我们通过使用非均相AU催化剂恢复使用批量和塞流反应器的使用进行批量和塞流动反应器用于氧化(钠)至(二钠) - 高酸酯的氧化物酸盐。 我们将表明,使用三相塞流反应器导致增强的O2质量转移,导致生产率10-40倍(高达2.2吨M〜(-3)H〜(-1))。 然而,产品选择性在填充床(不受控制的pH)中略微从> 99mol%略微下降至94mol%(不受控制的pH)。 两个反应器患有反应产物的低溶解度。 我们将表明,这种溶解性是对工业规模进行这种氧化的最重要挑战。

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