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Numerical modeling of polystyrene synthesis in coiled flow inverter

机译:旋流逆变器中聚苯乙烯合成的数值模拟

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Recent studies show that microfluidic devices are gaining importance as micromixer in chemical and bio-chemical analysis systems. However, little attention has been paid to investigate chemical reactions such as polymerization reaction process in microreactors. In the present study, numerical modeling of the free-radical polymerization of styrene was carried out in novel coiled flow inverter (CFI) microreactor. The concept of CFI is based on the technique developed by Saxena and Nigam (AlChE J 30:363-368, 1984). This device is made up of helical coiled tube which is bent periodically to 90° at equidistant length. The CFD modeling for polymerization reaction taking place in coiled tube reactor was also performed in order to understand the influence of secondary flows on reactor performance for fluid flowing with very low flow rate. Its performance was compared with CFD results obtained in a straight tube reactor having identical length and operating under the same process conditions. The results showed that monomer conversion in the coiled tube reactor was higher than that of the straight tube reactor. Further work was carried out in the novel CFI reactor to study the effect of diffusion coefficient and number of bends on different parameters such as monomer conversion, number-average degree of polymerization (DP_n), and polydispersity indexes (PDI). It was found that the performance of CFI as reactor increased when the diffusion coefficients of reactants was decreased. Thus, CFI was found to be an efficient microfluidic device for controlling the free-radical polymerization.
机译:最近的研究表明,微流体装置在化学和生化分析系统中作为微混合器变得越来越重要。然而,很少关注研究化学反应,例如微反应器中的聚合反应过程。在本研究中,苯乙烯的自由基聚合反应的数值模型是在新型的旋流逆变器(CFI)微反应器中进行的。 CFI的概念基于Saxena和Nigam开发的技术(AlChE J 30:363-368,1984)。该设备由螺旋状的螺旋管组成,螺旋状的管以等距的长度周期性地弯曲到90°。还进行了在盘管式反应器中进行聚合反应的CFD模型,以了解二次流对非常低流量的流体对反应器性能的影响。将其性能与在具有相同长度和在相同工艺条件下运行的直管反应器中获得的CFD结果进行了比较。结果表明,盘管反应器的单体转化率高于直管反应器。在新型CFI反应器中进行了进一步的工作,以研究扩散系数和弯曲数对不同参数(如单体转化率,数均聚合度(DP_n)和多分散指数(PDI))的影响。发现当反应物的扩散系数降低时,CFI作为反应器的性能提高。因此,发现CFI是用于控制自由基聚合的有效的微流体装置。

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