KINETIC HETEROGENEITY OF POLYMER PRODUCTS OBTAINED IN THE PRESENCE OF MICROHETEROGENIC CATALYTIC SYSTEMS BASED ON GEL CHROMATOGRAMS

IF 0.2 Q4 CHEMISTRY, MULTIDISCIPLINARY Periodico Tche Quimica Pub Date : 2021-07-28 DOI:10.52571/ptq.v18.n38.2021.03_miftakhov_pgs_27_37.pdf
E. Miftakhov, S. Mustafina, I. Nasyrov, A. Daminov
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引用次数: 1

Abstract

Background: the polymer product obtained in the presence of microheterogeneous catalytic systems is characterized by fairly molecular weight distribution (MWD), resulted from kinetically nonequivalent active centers (ACs) in the system that initiate the polymerization process. The nature and composition of ACs are determined by setting and solving an inverse problem on the formation of MWD. This problem is acute because revealing the nature of the kinetic heterogeneity explains changes in the molecular and consumer parameters of the product for different catalyst compositions and propagation modes in polymerizations. Aim: This study aimed to develop methods and algorithms for interpreting gel chromatograms to analyze the kinetic heterogeneity of a polymer product obtained industrially in microheterogeneous catalytic systems. Methods: the solution method is based on the assumption that the formed MWD is a superposition of distributions inherent in each type of ACs. Since the problem in the final formulation refers to the Fredholm integral equations of the first kind, the regularization method of A. N. Tikhonov is used for its numerical solution, with the original problem being preliminary discretized. This methodology and the developed software algorithms were used to determine the kinetic heterogeneity of titanium- and neodymium-containing catalytic systems. Results and discussion: The MWD analysis revealed two types of ACs with an average molecular weight of ATi-lnM = 11.3 and BTi-lnM = 13.2 in the titanium catalyst and three types of ACs ANd-lnM = 11.1, BNd-lnM = 12.7 and CNd-lnM = 14 for the neodymium catalyst, respectively. Conclusions: repeated computational experiments under different polymerization conditions and requirements for the preparation of a catalytic system make it possible to reveal a relationship with the resulting heterogeneity of ACs. It allows us to set and solve problems of controlling the molecular characteristics of the resulting polymer product.
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基于凝胶色谱的微非均相催化体系中聚合物产物的动力学非均相
背景:在微非均相催化体系中获得的聚合物产物具有相当分子量分布(MWD)的特征,这是由体系中引发聚合过程的动力学非等效活性中心(ACs)引起的。通过设置和求解随钻地层的反问题,确定了ac的性质和组成。这个问题是尖锐的,因为揭示动力学非均质性的本质解释了不同催化剂组成和聚合传播模式下产物的分子和消费者参数的变化。目的:本研究旨在建立解释凝胶色谱图的方法和算法,以分析工业上微均相催化体系中获得的聚合物产物的动力学非均质性。方法:求解方法是基于这样的假设,即所形成的随钻测井曲线是每一种ac的固有分布的叠加。由于最终表述中的问题涉及第一类Fredholm积分方程,因此采用A. N. Tikhonov的正则化方法进行数值解,并对原问题进行初步离散化。该方法和开发的软件算法被用于确定含钛和含钕催化体系的动力学非均质性。结果与讨论:MWD分析显示,钛催化剂中有两种平均分子量为ti - lnm = 11.3和BTi-lnM = 13.2的ACs,钕催化剂中有三种平均分子量为ti - lnm = 11.1、BNd-lnM = 12.7和nd - lnm = 14的ACs。结论:在不同的聚合条件和制备催化体系的要求下进行重复的计算实验,有可能揭示与所得到的ACs的非均质性的关系。它使我们能够设定和解决控制所得聚合物产品的分子特性的问题。
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Periodico Tche Quimica
Periodico Tche Quimica CHEMISTRY, MULTIDISCIPLINARY-
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期刊介绍: The Journal publishes original research papers, review articles, short communications (scientific publications), book reviews, forum articles, announcements or letters as well as interviews. Researchers from all countries are invited to publish on its pages.
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