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Method of Removing water from Products of Dehydration Reaction of 3-hydroxypropioic acid in Acrylic acid Process

机译:丙烯酸工艺中3-羟基丙酸脱水反应除去水的方法

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The present predominant resource of acrylic acid is formed partial oxidation of propene,produced as a by-product from industrial production of ethylene and gasoline.This process depends on the processing of petrochemicals as raw material,resulting in resource depletions and many environmental problems.Therefore,biomass technology has been introduced to reduce the disadvantages of existing conventional process.The proposed process is composed of a bio-fermentation reactor,a catalytic dehydration reactor,a quencher,and an acrylic acid purification unit.Among them,it focuses on the quencher process.Recently,most of the research is currently focused on microorganisms in fermentation reaction and developing catalysts in dehydration reaction.However,this technology also remains a problem that a large quantity of water is required in the bio-fermentation and dehydration reactors.In this paper,we focus on the after the dehydration of 3-hydroxypropionic acid to produce acrylic acid about the method of efficient removal of water.To solve this problem,we introduced a quencher using solvent to remove water and improve the efficiency of the process.It is essential to remove water in order to obtain high purity of the acrylic acid.We designed the process using Aspen Plus v8.8 simulator.Approximately 76.0 wt% of water,22.6 wt% of acrylic acid,1.4wt% 3-hydroxypropionic acid were fed to quencher.The results from the simulation show that 64.2 wt% of water was removed and 47.5 wt% of total flow was saved.The elimination of water reduces the overall flow rate,resulting in reduced equipment size of the process.Therefore,we expect that the use of this method will reduce the capital cost and operating cost of the acrylic acid purification process.
机译:丙烯酸的本主要资源是丙烯的部分氧化,由乙烯和汽油产业生产的副产物制备。该方法取决于石化作为原料的加工,导致资源耗尽和许多环境问题。因此,已经引入了生物质技术以降低现有常规方法的缺点。该方法由生物发酵反应器,催化脱水反应器,猝灭剂和丙烯酸净化单位组成。它们侧重于猝灭剂工艺文,大多数研究目前专注于发酵反应中的微生物和在脱水反应中发育催化剂。然而,这种技术也仍然是生物发酵和脱水反应器中需要大量水的问题。在此纸张,我们专注于3-羟基丙酸的脱水后产生丙烯酸关于我的丙烯酸有效地去除水。解决这个问题,我们使用溶剂引入了猝灭剂以除去水并提高方法的效率。对于去除水是必要的,以获得高纯度的丙烯酸。我们设计了该过程使用Aspen Plus V8.8模拟器。大约76.0wt%的水,22.6wt%的丙烯酸,1.4wt%3-羟基丙酸被送入猝灭剂。仿真结果表明,去除64.2重量%的水,47.5%总流量的WT%挽救了。消除水降低了整体流速,导致过程的设备尺寸降低。因此,我们预计这种方法的使用将降低丙烯酸净化的资本成本和运营成本过程。

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