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ADDRESSING THE PROBLEM OF PLASTIC WASTE: DEVELOPMENT OF AN ENZYMATIC PROCESS FOR PET RECYCLING

机译:解决塑料废料的问题:开发一种用于PET回收的酶法

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Every day, media and NGOs describe the society's disaffection for plastics accused of polluting the planet. All major brand-owners made commitments to solve this problem (e.g. Coca-Cola, Nestle, Danone, PepsiCo, Suntory, Unilever, L'Oreal, Nike) and announced a future with less plastic waste by 2025. Nevertheless, only 6 years before the announced term, no effective solution is yet available to meet these goals. Indeed, existing technologies like thermo-mechanical recycling leads to loss in mechanical properties of the polymer and even if several chemical recycling processes are under development, they suffer from the disadvantages of using organic solvents, high reaction temperatures and the need of an intensive waste sorting. Consequently, enzymatic recycling appears as a pertinent solution notably because the enzyme selectivity avoids a drastic sorting of waste and enables the recycling of complex plastics (multi-layers construction in some bottles of sparkling water for instance), it is an eco-friendly reaction in water and because of savings in energy consumption due to a low temperature of reaction. Using a computer-aided engineering strategy, we drastically improved the depolymerizing performance of the best identified enzyme candidate. Utilizing site-directed mutagenesis targeted at the active site, combined with three-dimensional fold stabilization, we engineered an enzyme variant, demonstrating an astounding increase in thermostability combined with a high activity. This enzyme is able to depolymerize 90% of PET waste (200g/kg) into monomers, terephthalic acid and ethylene glycol, in less than 10 hours. The downstream processing was developed and optimized leading to the demonstration that this enzymatic technology could enable the use of an industrial plastic waste to produce again PET monomers and ultimately a bottle from this recycled PET. We hope to demonstrate the strong potential of the enzymatic technology jointly developed by CARBIOS and LISBP to provide a breakthrough solution to help solve society's growing plastic waste problem.
机译:媒体和非政府组织每天都在描述社会对被指控污染地球的塑料的不满。所有主要品牌拥有者都承诺解决这一问题(例如可口可乐,雀巢,达能,百事可乐,三得利,联合利华,欧莱雅,耐克),并宣布了到2025年塑料废料更少的未来。然而,距此只有6年了在宣布的期限内,尚无有效的解决方案可以实现这些目标。实际上,现有技术(如热机械回收)会导致聚合物的机械性能下降,即使正在开发几种化学回收工艺,它们也存在使用有机溶剂,反应温度高以及需要进行大量废物分类的缺点。 。因此,酶的回收似乎是一个合适的解决方案,这是因为酶的选择性避免了废物的剧烈分类,并使复杂的塑料得以回收(例如在一些苏打水中的多层结构),这是一种环保的反应。水和由于反应温度低而节省能源。使用计算机辅助工程策略,我们极大地提高了最佳识别的候选酶的解聚性能。利用针对活性位点的定点诱变,并结合三维折叠稳定性,我们设计了一种酶变体,证明了热稳定性与高活性的惊人结合。这种酶能够在不到10小时的时间内将90%的PET废料(200g / kg)解聚为单体,对苯二甲酸和乙二醇。开发和优化了下游工艺,从而证明了这种酶技术可以利用工业塑料废料再次生产PET单体,最终生产出这种再生PET制成的瓶子。我们希望展示CARBIOS和LISBP联合开发的酶技术的强大潜力,以提供突破性的解决方案来帮助解决社会日益严重的塑料废物问题。

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