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Microwave energy assisted synthesis of poly lactic acid via continuous reactive extrusion : modelling of reaction kinetics

机译:微波能量辅助连续反应挤出合成聚乳酸:反应动力学模型

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摘要

The most commonly used batch process to manufacture PLA is ring opening polymerization (ROP) of lactide monomer in a suitable solvent, in the presence of a metallic/bimetallic catalyst (Sn, Zn, and Al) or other organic catalysts. However, this process does not lend itself to safer/cleaner and high throughput (and high volume) manufacturing. Continuous reactive extrusion of lactide monomer using a suitable reaction input has the potential to increase the throughput, and this route has been explored in the literature. In this work, reactive extrusion experiments using stannous octoate Sn(Oct)2 and tri-phenyl phosphine (PPh)3, were considered to perform ROP of lactide monomer using the microwave as an alternative energy (AE) source for activating and/or boosting the polymerization. Implementation of a microwave generator in a section of the extruder is one of the novelties of this research. A simulation model of ROP of PLA was formulated to estimate the impact of reaction kinetics and AE source on the polymerization process. Ludovic® software was used for the simulation of continuous reactive extrusion of the process. Experimental and simulated results were compared for the validation of the methodology. This work also highlights the advantages and drawbacks of most conventional metal catalysts, the effect of alternative energies on reaction mechanism, and safe and efficient production of PLA.udud
机译:制造PLA的最常用的批处理方法是在金属/双金属催化剂(Sn,Zn和Al)或其他有机催化剂存在下,丙交酯单体在合适的溶剂中进行开环聚合(ROP)。但是,该过程并不适合于更安全/更清洁以及高吞吐量(和大批量)制造。使用合适的反应输入进行丙交酯单体的连续反应性挤出具有增加产量的潜力,并且该途径已经在文献中进行了探索。在这项工作中,使用辛酸亚锡Sn(Oct)2和三苯基膦(PPh)3的反应挤压实验被认为可以利用微波作为替代能源(AE)来活化和/或增强丙交酯,从而进行丙交酯单体的ROP。聚合。在挤出机的一部分中实现微波发生器是这项研究的新颖性之一。建立了PLA的ROP模拟模型,以估计反应动力学和AE源对聚合过程的影响。 Ludovic®软件用于模拟过程的连续反应挤出。比较了实验结果和模拟结果,以验证该方法的有效性。这项工作还强调了大多数常规金属催化剂的优缺点,替代能源对反应机理的影响以及安全高效地生产PLA。

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