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Hydrogenation of nitrile butadiene rubber in a multistage agitated contactor: Experiments and numerical simulation

机译:多级搅拌接触器中丁腈橡胶的加氢:实验和数值模拟

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摘要

The performance of a multistage agitated contactor (MAC) with cocurrent reactive gas liquid upflow was studied for the hydrogenation of nitrile butadiene rubber using a homogenous osmium complex catalyst. The hydrogenation performance was investigated under various catalyst concentrations, liquid flow rates, pressures, and polymer concentrations. The desirable hydrogenation conversion of over 95% was achieved under the industrially relevant operation conditions. A comprehensive reactor model consisting of stirred tanks in series with back flow (CTB) was applied to describe the liquid flow behaviour in the presence of the hydrogenation process. The established model satisfactorily predicted dynamic hydrogenation performance considering the gas liquid mass transfer effect and temperature profile in each stage. A modified CSTRs-in-series model accounting for mass transfer effect was proposed to predict the hydrogenation degree at steady state and a good agreement was demonstrated between the model prediction and the experimental data.
机译:研究了使用均相complex络合物催化剂氢化丁腈橡胶加氢的并流反应气向上流动的多级搅拌接触器(MAC)的性能。在各种催化剂浓度,液体流速,压力和聚合物浓度下研究了氢化性能。在工业上相关的操作条件下,可实现超过95%的理想氢化转化率。应用了由搅拌釜与回流(CTB)串联组成的综合反应器模型,以描述在氢化过程中液体的流动行为。考虑到气液传质效应和各个阶段的温度分布,建立的模型可以令人满意地预测动态加氢性能。提出了一种考虑传质效应的改进的CSTR串联模型,以预测稳态下的氢化度,并在模型预测和实验数据之间取得了良好的一致性。

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