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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A soft tubular model reactor based on the bionics of a small intestine - Starch hydrolysis
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A soft tubular model reactor based on the bionics of a small intestine - Starch hydrolysis

机译:基于小肠仿生学的软管模型反应器-淀粉水解

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The traditional reactors in industry are usually made of rigid material. The vessel walls do not actively engage in the mixing and reactions. Here, the fabrication of a new soft tubular reactor by mimicking the structure and physiological processes of an animal or human small intestine is presented. The reactor is made of silicone rubber, with good toughness yet being flexible. A peristalsis process was introduced externally and the mixing viscous materials in the soft reactor are investigated. The extent of starch hydrolysis with alpha-amylase under the peristaltic action has been studied. Experimental data showed that the peristaltic process was effective in mixing the viscous materials in the reactor and has enhanced the starch hydrolysis. The mixing effect can be regulated from the peristaltic frequency and the peristaltic amplitude. The degree of starch hydrolysis in the soft reactor has been measured and compared with a stirred tank reactor. (C) 2016 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:工业上的传统反应堆通常由刚性材料制成。容器壁未积极参与混合和反应。在这里,提出了一种通过模仿动物或人小肠的结构和生理过程来制造新型软管式反应器的方法。该反应器由硅橡胶制成,具有良好的韧性,但又具有柔韧性。从外部引入了蠕动过程,并研究了软反应器中粘性物料的混合。已经研究了在蠕动作用下用α-淀粉酶水解淀粉的程度。实验数据表明,蠕动过程可有效地在反应器中混合粘性物料,并增强了淀粉的水解。混合效果可以通过蠕动频率和蠕动幅度来调节。已经测量了软反应器中淀粉的水解程度,并与搅拌釜反应器进行了比较。 (C)2016年化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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