Lionetto Francesca, Corcione Carola Esposito, Rizzo Aurora, Maffezzoli Alfonso
Department of Engineering for Innovation, University of Salento, Via Arnesano, 73100 Lecce, Italy.
CNR NANOTEC-Istituto di Nanotecnologia, c/o Campus Ecotekne, Via Monteroni, 73100 Lecce, Italy.
Polymers (Basel). 2021 Oct 29;13(21):3745. doi: 10.3390/polym13213745.
Microplastic (MP) pollution represents one of the biggest environmental problems that is further exacerbated by the continuous degradation in the marine environment of MPs to nanoplastics (NPs). The most diffuse plastics in oceans are commodity polymers, mainly thermoplastics widely used for packaging, such as polyethylene terephthalate (PET). However, the huge interest in the chemical vector role of micro/nanoplastics, their fate and negative effects on the environment and human health is still under discussion and the research is still sparse due also to the difficulties of sampling MPs and NPs from the environment or producing NPs in laboratory. Moreover, the research on MPs and NPs pollution relies on the availability of engineered nanoparticles similar to those present in the marine environment for toxicological, transport and adsorption studies in biological tissues as well as for wastewater remediation studies. This work aims to develop an easy, fast and scalable procedure for the production of representative model nanoplastics from PET pellets. The proposed method, based on a simple and economic milling process, has been optimized considering the peculiarities of the polymer. The results demonstrated the reliability of the method for preparing particle suspensions for aquatic microplastic research, with evident advantages compared to the present literature procedures, such as low cost, the absence of liquid nitrogen, the short production time, the high yield of the process, stability, reproducibility and polydisperse size distribution of the produced water dispersed nanometric PET.
微塑料(MP)污染是最大的环境问题之一,而微塑料在海洋环境中持续降解为纳米塑料(NP)使这一问题进一步恶化。海洋中分布最广的塑料是商用聚合物,主要是广泛用于包装的热塑性塑料,如聚对苯二甲酸乙二酯(PET)。然而,关于微/纳米塑料的化学载体作用、它们的归宿以及对环境和人类健康的负面影响的巨大兴趣仍在讨论中,而且由于从环境中采集微塑料和纳米塑料或在实验室中生产纳米塑料存在困难,相关研究仍然很少。此外,微塑料和纳米塑料污染的研究依赖于与海洋环境中存在的类似的工程纳米颗粒,用于生物组织中的毒理学、运输和吸附研究以及废水修复研究。这项工作旨在开发一种简单、快速且可扩展的方法,从PET颗粒生产具有代表性的模型纳米塑料。所提出的方法基于简单且经济的研磨过程,并考虑了聚合物的特性进行了优化。结果证明了该方法用于制备水生微塑料研究的颗粒悬浮液的可靠性,与现有文献方法相比具有明显优势,如成本低、无需液氮、生产时间短、产率高、稳定性好、可重复性强以及所生产的水分散纳米级PET粒径分布多分散。