Microfluidics for Polymer Microparticles: Opinion on Sustainability and Scalability

Hassan El Itawi, S. Fadlallah, P. Perré, F. Allais
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引用次数: 0

Abstract

The microfluidic production of simple (microspheres) and core–shell (microcapsules) polymer microparticles, often called microencapsulation, has been the scope of several research works since the 1980s. It is a fast, thrifty, and efficient process because of its controlled properties, tuneability, and yield, which can reach 100%. However, the question of its greenness, sustainability, and scalability remains unclear, and more awareness/education is required in this field. The sustainability of production processes using microfluidic techniques can be realized/discussed based on three pillars: (i) waste generation, (ii) the solvents employed, and (iii) raw materials. On the other hand, although the scaling-up of these processes was reported on in several papers as procedures in which hundreds or thousands of microfluidic chips are set in parallel, the sustainability of this scale-up has not been addressed to our knowledge. This opinion paper highlights the advantages of microfluidic encapsulation processes, their greenness according to the above-mentioned pillars, (i–iii) and the necessary considerations to scale them up while preserving their sustainability.
聚合物微粒的微流体:对可持续性和可扩展性的看法
自20世纪80年代以来,简单(微球)和核壳(微胶囊)聚合物微颗粒(通常称为微胶囊)的微流控生产一直是一些研究工作的范围。该工艺性能可控,可调,收率可达100%,是一种快速、节约、高效的工艺。然而,它的绿色、可持续性和可扩展性问题仍然不清楚,需要在这一领域加强认识/教育。使用微流体技术的生产过程的可持续性可以基于三个支柱来实现/讨论:(i)废物产生,(ii)所使用的溶剂,以及(iii)原材料。另一方面,尽管在几篇论文中报道了这些过程的规模扩大,其中数百或数千个微流控芯片并行设置,但据我们所知,这种规模扩大的可持续性尚未得到解决。本意见文件强调了微流体封装工艺的优势,根据上述支柱(i-iii),其绿色性以及在保持其可持续性的同时扩大其规模的必要考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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