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A review of copolymerization of green house gas carbon dioxide and oxiranes to produce polycarbonate

机译:温室气体二氧化碳与环氧乙烷共聚生产聚碳酸酯的综述

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摘要

Carbon dioxide is highly stable and low reactivity element which is known to cause greenhouse effect of the Earth. Over the decades, researches have been conducted to utilize abundant carbon dioxide to turn into value added products while reducing its impact to the environment. One of the approaches is reacting carbon dioxide with oxiranes to produce polycarbonate. The low reactivity characteristic of carbon dioxide requires effective and efficient catalysts to make the copolymerization possible. This review highlights the major development in the catalytic copolymerization process of oxiranes and carbon dioxide. Particularly, the important characteristics of zinc, aluminium, chromium, cobalt, cadmium, manganese and rare earth metal with variety of ligands catalysts have been thoroughly discussed. The future research prospects which involve working in the copolymerization area of nanocatalysis and supercritical fluid have been analysed also. In overall, continual exploration of catalysis and reaction package for copolymerization of carbon dioxide is important in order to achieve better improvement of process in future.
机译:二氧化碳是高度稳定和低反应性的元素,已知会导致地球温室效应。几十年来,已经进行了研究,以利用大量的二氧化碳转化为增值产品,同时减少其对环境的影响。方法之一是使二氧化碳与环氧乙烷反应生成聚碳酸酯。二氧化碳的低反应性特征需要有效和有效的催化剂以使共聚成为可能。这篇综述强调了环氧乙烷和二氧化碳催化共聚过程的主要进展。特别是,已经充分讨论了锌,铝,铬,钴,镉,锰和稀土金属与各种配体催化剂的重要特性。还分析了涉及纳米催化和超临界流体共聚领域的未来研究前景。总体上,为了将来更好地改进工艺,持续探索用于二氧化碳共聚的催化剂和反应包很重要。

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