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首页> 外文期刊>Angewandte Chemie >Selective Chemical Upcycling of Mixed Plastics Guided by a Thermally Stable Organocatalyst
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Selective Chemical Upcycling of Mixed Plastics Guided by a Thermally Stable Organocatalyst

机译:用热稳定的有机催化剂引导混合塑料的选择性化学升高

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摘要

Chemical recycling of plastic waste represents a greener alternative to landfill and incineration, and potentially offers a solution to the environmental consequences of increased plastic waste. Most plastics that are widely used today are designed for durability, hence currently available depolymerisation methods typically require harsh conditions and when applied to blended and mixed plastic feeds generate a mixture of products. Herein, we demonstrate that the energetic differences for the glycolysis of BPA-PC and PET in the presence of a protic ionic salt TBD:MSA catalyst enables the selective and sequential depolymerisation of these two commonly employed polymers. Employing the same procedure, functionalised cyclic carbonates can be obtained from both mixed plastic wastes and industrial polymer blend. This methodology demonstrates that the concept of catalytic depolymerisation offers great potential for selective polymer recycling and also presents plastic waste as a "greener" alternative feedstock for the synthesis of high added value molecules.
机译:塑料废物的化学回收是填埋和焚烧的一种更绿色的替代方案,并可能为解决塑料废物增加带来的环境后果提供一种解决方案。目前广泛使用的大多数塑料都是为耐用性而设计的,因此目前可用的解聚方法通常需要苛刻的条件,当应用于混合和混合塑料进料时,会产生混合产品。在此,我们证明了在质子离子盐TBD:MSA催化剂存在下,BPA-PC和PET糖酵解的能量差异使这两种常用聚合物能够选择性和顺序解聚。采用相同的方法,可以从混合塑料废物和工业聚合物混合物中获得功能化环状碳酸盐。这种方法表明,催化解聚的概念为选择性聚合物回收提供了巨大的潜力,也将塑料废物作为合成高附加值分子的“绿色”替代原料。

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