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首页> 外文期刊>The Korean journal of chemical engineering >Contribution of the solid phase polymerization to the molecular weight distribution in acrylonitrile precipitation copolymerization
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Contribution of the solid phase polymerization to the molecular weight distribution in acrylonitrile precipitation copolymerization

机译:丙烯腈沉淀共聚中固相聚合对分子量分布的贡献

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Molecular weight distribution of copolyacrylonitrile, which was obtained from precipitation copolymerization without and with using dispersants in mixed solution, is studied. The contribution ratio of liquid phase polymerization and solid phase polymerization under different polymerization conditions could be worked out through the formula, which has been deduced in literature. From the calculated results, common points of each reaction system are, i) contribution ratio (r) of solid phase to liquid phase decreases with the increase of water content; thus the solid phase polymerization is gradually strengthened, which is apt to form chain of high molecular weight, ii) the higher temperature leads to higher compatibility between water and DMSO; thus the solid phase polymerization contribution would decrease, while the value of r is considerably larger. The limit molecular weight distribution of the system without dispersants in 100% water is approaching to 2; thus the corresponding r becomes larger, the molecular weight distribution ratio (Q) decreases in the system with dispersants.
机译:研究了在不使用分散剂和在混合溶液中使用分散剂的情况下,通过沉淀共聚获得的共聚丙烯腈的分子量分布。可以通过公式计算出在不同聚合条件下液相聚合和固相聚合的贡献率。根据计算结果,各反应体系的共同点是:i)固相对液相的贡献率(r)随着水含量的增加而降低;因此,固相聚合逐渐增强,易于形成高分子量链。ii)较高的温度导致水与DMSO之间的相容性较高;因此,固相聚合的贡献会降低,而r的值会更大。在100%水中没有分散剂的系统的极限分子量分布接近2;因此,在具有分散剂的体系中,相应的r变大,分子量分布比(Q)降低。

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