首页> 外文期刊>Journal of Petroleum and Gas Engineering >System identification for experimental study for ultra high molecular weight for polyethylene process by using Bi-supported SiO2 / MgCl2 / TiCl4 catalyst
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System identification for experimental study for ultra high molecular weight for polyethylene process by using Bi-supported SiO2 / MgCl2 / TiCl4 catalyst

机译:双载体SiO2 / MgCl2 / TiCl4催化剂用于聚乙烯超高分子量实验研究的系统鉴定

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In this work, system identification method is used to capture the reactor characteristics of production rate of polyethylene (PE) based on published experimental data. The identification method is used to measure the percentage effect on the production rate of PE by measuring the effect of input factors of temperature of reaction, hydrogen concentration, and [Al]/[Ti] molar catalyst ratio. Temperature of reaction has big effect which is equal to 52.4% on the output of the system as compared to the other two factors. Also, hydrogen concentration has big effect which is equal to 45.66% on the output of the system. [Al]/[Ti] molar catalyst ratio has big effect which is equal to 1.94%, but less than the reaction temperature and hydrogen concentration. All these results depend on experiment results and these results are very important in industrial plants.
机译:在这项工作中,基于公开的实验数据,系统识别方法用于捕获聚乙烯(PE)生产率的反应器特征。该识别方法用于通过测量反应温度,氢浓度和[Al] / [Ti]摩尔催化剂比的输入因子的影响来测量对PE生产率的百分比影响。反应温度与其他两个因素相比,对系统的输出影响很大,等于52.4%。同样,氢浓度对系统的输出影响很大,等于45.66%。 [Al] / [Ti]摩尔催化剂的比例影响很大,等于1.94%,但低于反应温度和氢浓度。所有这些结果取决于实验结果,这些结果在工业工厂中非常重要。

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