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首页> 外文期刊>Chemical engineering journal >Increasing reaction rate and conversion in the spinning cloth disc reactor: Investigating the effect of using multiple enzyme immobilized cloths
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Increasing reaction rate and conversion in the spinning cloth disc reactor: Investigating the effect of using multiple enzyme immobilized cloths

机译:在旋转布盘反应器中提高反应速率和转化率:研究使用多种酶固定布的效果

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摘要

The spinning cloth disc reactor (SCDR) is a novel mesh supported enzyme rotating reactor system for process intensification. In this study, to increase the enzyme loading in the SCDR, a new reactor operational mode was designed by increasing the number of cloths used in the SCDR to form a multi-cloth stack on the spinning disc. To test its effectiveness, the influence of the number of cloths in the SCDR on reaction conversion and rate was investigated. The flow within the multi-cloth stack was characterized by residence time distribution (RTD) analysis and an imaging of the flow and dye penetration in the SCDR. For different tributyrin substrate concentrations (10-40 g L~(-1)), the reaction rate and conversion increased when the number of cloths was increased from one to two, indicating that the enzyme loading in the SCDR can be easily tailored to the desired reaction system by simply changing the number of immobilized enzyme cloths. The mean residence time increased with an increase in the number of cloths at different spinning speeds and flow rates, due to flow existing inside the volume of the multi-cloth stack. The number of tanks-in-series (N) decreased as the increase of cloth number on the spinning disc, indicating that more cloths caused larger deviation from plug flow. The visual study showed that the multi-cloth stack would not essentially change the flow types in the SCDR, and the fluid could penetrate through the three layers of multi-cloth at both low (100 rpm) and high (400 rpm) spinning speeds.
机译:纺丝圆盘反应器(SCDR)是用于过程强化的新型网孔支撑酶旋转反应器系统。在这项研究中,为了增加SCDR中的酶负荷,通过增加SCDR中使用的布料数量以在纺丝盘上形成多层布料而设计了一种新的反应器操作模式。为了测试其有效性,研究了SCDR中布料数量对反应转化率和反应速率的影响。通过停留时间分布(RTD)分析以及SCDR中的流动和染料渗透的成像来表征多布堆中的流动。对于不同的三丁酸甘油酯底物浓度(10-40 g L〜(-1)),当布数从一增加到两时,反应速率和转化率增加,表明SCDR中的酶负载可以轻松地适应通过简单地改变固定化酶布的数量即可得到所需的反应体系。由于在多层织物叠堆的内部存在流动,在不同的纺丝速度和流速下,平均停留时间随着织物数量的增加而增加。随着纺丝盘上布料数量的增加,串联槽数(N)减少,这表明更多的布料会导致较大的塞流偏离。视觉研究表明,多层布叠层基本上不会改变SCDR中的流动类型,并且流体可以在低(100 rpm)和高速(400 rpm)旋转速度下穿透多层三层布。

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