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Shape-selective zeolite catalysis for bioplastics production

机译:用于生物塑料生产的择形沸石催化

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摘要

Biodegradable and renewable polymers, such as polylactic acid, are benign alternatives for petrochemical-based plastics. Current production of polylactic acid via its key building block lactide, the cyclic dimer of lactic acid, is inefficient in terms of energy, time, and feedstock use. We present a direct zeolite-based catalytic process, which converts lactic acid into lactide. The shape-selective properties of zeolites are essential to attain record lactide yields, outperforming those of the current multistep process by avoiding both racemization and side-product formation. The highly productive process is strengthened by facile recovery and practical reactivation of the catalyst, which remains structurally fit during at least six consecutive reactions, and by the ease of solvent and side-product recycling.
机译:可生物降解和可再生的聚合物,例如聚乳酸,是石油化工基塑料的良性替代品。目前,通过其关键组成部分丙交酯(乳酸的环状二聚体)生产聚乳酸在能源,时间和原料使用方面效率低下。我们提出了一种基于沸石的直接催化工艺,该工艺将乳酸转化为丙交酯。沸石的择形性能对于获得创纪录的丙交酯收率至关重要,通过避免消旋化和副产物形成,其性能优于当前的多步法。通过催化剂的简便回收和实际再活化(在至少六个连续的反应期间仍保持结构适合)以及易于溶剂和副产物再循环的方式,可以增强高生产率的过程。

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