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首页> 外文期刊>Journal of Advanced Chemical Engineering >Conceptual Design of a Separation Process for Higher Alcohols Made byCatalytic Condensation of Ethanol
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Conceptual Design of a Separation Process for Higher Alcohols Made byCatalytic Condensation of Ethanol

机译:乙醇催化缩合制备高级醇的分离工艺的概念设计

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A downstream process for the separation of n-butanol from a product mixture containing unreacted ethanol, higher alcohols, aldehydes, water and traces of other chemical species was studied and therewith a conceptual design for the separation train has been devised. A novel approach and a newly developed catalyst were introduced to produce n-butanol (or iso-butanol) from ethanol as a raw material through an alternative path. The product stream from the reactor outlet consists of various chemical species ranging from saturated alcohol mixture, to aldehydes, to traces of aromatics and high boilers, and is ought to be separated into individual components based on their commercial/industrial applicability. Nine azeotropes of which one being ternary and the remaining eight binary azeotropes were identified between the various product components. Due to the chemical complexity, a multicolumn downstream separation unit is needed therefore the schema containing several distillation units is likely to be energy intensive. The goal of this work was primarily to assess the technical and commercial feasibility of such separation technology; further process intensification however, is a subject for later studies.
机译:研究了从包含未反应的乙醇,高级醇,醛,水和痕量其他化学物种的产物混合物中分离正丁醇的下游工艺,并据此设计了分离流程的概念设计。引入了一种新颖的方法和一种新开发的催化剂,通过另一种途径,以乙醇为原料生产正丁醇(或异丁醇)。从反应器出口流出的产物流由多种化学物质组成,从饱和醇混合物到醛,再到痕量的芳烃和高沸物,应根据其商业/工业适用性将其分为单独的组分。在各种产物组分之间鉴定出九种共沸物,其中一种是三元共沸物,其余八种是二元共沸物。由于化学复杂性,需要一个多柱下游分离单元,因此包含多个蒸馏单元的方案可能会消耗大量能源。这项工作的目的主要是评估这种分离技术的技术和商业可行性;然而,进一步的过程强化是以后研究的主题。

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