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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Chemical recycling of poly(bisphenol A carbonate): 1,5,7-Triazabicyclo [4.4.0]-dec-5-ene catalyzed alcoholysis for highly efficient bisphenol A and organic carbonate recovery
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Chemical recycling of poly(bisphenol A carbonate): 1,5,7-Triazabicyclo [4.4.0]-dec-5-ene catalyzed alcoholysis for highly efficient bisphenol A and organic carbonate recovery

机译:聚(双酚碳酸盐)的化学回收:1,5,7-三氮杂双环[4.4.0] -dec-5-ene催化醇解析,用于高效的双酚A和有机碳酸酯回收

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Chemical degradation of poly (bisphenol A carbonate) is achieved using an easy-to-use organocatalyst, TBD (1,5,7-triazabicyclo [4.4.0]-dec-5-ene). Because of increased concern over bisphenol A (BPA) acting as a potent hormone disruptor, proper disposal of end-of-life poly (bisphenol A carbonate) must be conducted to prevent BPA leakage into the ecosystem. In this report, a study on various catalytic methods for the depolymerization of poly (bisphenol A carbonate is presented. Among the many catalysts tested, TBD exhibited the best performance. Under mild conditions and low catalyst loading, poly (bisphenol A carbonate) can be quantitatively degraded into its parent raw materials, bisphenol A and dimethyl carbonate. Additionally, to simplify the reaction process, the depolymerization was designed to not require an auxiliary solvent. The product dimethyl carbonate served as the solvent, and excellent depolymerization was observed. The lack of auxiliary solvent reduces the number of chemical components entering the separation process. Alcoholysis with other alcohols was demonstrated as well. A group of value-added organic carbonates were successfully synthesized from the polycarbonate resin. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用易于使用的有机催化剂,TBD(1,5,7-三氮杂双环[4.4.0] -dec-5-eNE),实现聚(双酚碳酸盐)的化学降解。由于对双酚A(BPA)的兴趣增加,其作为有效的激素破坏器,必须进行适当处理寿命终止(双酚A碳酸盐)以防止BPA渗入生态系统。在本报告中,提出了对聚聚乙酯解聚的各种催化方法的研究。在测试的许多催化剂中,TBD表现出最佳性能。在温和的条件下,低催化剂负载,聚(双酚碳酸盐)可以是定量地降解到其母体原料中,双酚A和碳酸二甲酯。另外,为了简化反应过程,设计不需要辅助溶剂。碳酸产物用作溶剂,并且观察到优异的解聚。缺乏辅助溶剂减少进入分离过程的化学成分的数量。还证明了与其他醇的醇分解。从聚碳酸酯树脂中成功地合成了一组增值有机碳酸盐。(c)2018 Elsever Ltd.保留所有权利。

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