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暂停使用微塑料和纳米塑料试验材料:液体相容性、(生物)表面活性剂、毒性和环境相关性。

Suspension of micro- and nanoplastic test materials: Liquid compatibility, (bio)surfactants, toxicity and environmental relevance.

机构信息

TNO Environmental Modelling, Sensing and Analysis, Princetonlaan 6-8, 3584 CB, Utrecht, the Netherlands.

TNO Environmental Modelling, Sensing and Analysis, Princetonlaan 6-8, 3584 CB, Utrecht, the Netherlands; School of Nutrition and Translational Research in Metabolism (NUTRIM), Department of Pharmacology and Toxicology, Maastricht University Medical Center+, Maastricht, the Netherlands.

出版信息

Environ Pollut. 2024 Sep 1;356:124306. doi: 10.1016/j.envpol.2024.124306. Epub 2024 Jun 2.

DOI:10.1016/j.envpol.2024.124306
PMID:38834150
Abstract

Micro- and nanoplastics have been detected in environmental compartments from the highest mountains to the deepest seas. They have been shown to be present at almost all trophic levels, and within humans they have been detected in numerous organs and human stool. Whilst their ubiquitous nature is indisputable, little is known about the health risks they may present. Much current research is focussed on the production of test materials with which to perform the necessary health studies. An important aspect of this is the correct storage and suspension of the materials to ensure they remain stable both chemically and with regards to size and shape. In this review, we look at the chemical stability of nine common polymers in a range of liquids; first with the use of commercial compatibility charts and then with a more quantitative approach using Hansen solubility parameters. We then look at stability with regards to particle agglomeration, whether and how stable compositions can be predicted, and which dispersants can be added to increase stability. Finally, we discuss the role of bio-surfactants and the eco-corona and how these may offer a route to both better stability and environmental relevance.

摘要

微塑料和纳米塑料已在从最高的山脉到最深的海洋的环境隔室中被检测到。它们已被证明存在于几乎所有的营养层次中,并且在人类体内,它们已在许多器官和人类粪便中被检测到。虽然它们无处不在的性质是无可争议的,但人们对它们可能带来的健康风险知之甚少。目前的许多研究都集中在生产测试材料上,以便进行必要的健康研究。其中一个重要方面是正确储存和悬浮这些材料,以确保它们在化学性质以及尺寸和形状方面保持稳定。在这篇综述中,我们研究了九种常见聚合物在一系列液体中的化学稳定性;首先使用商业相容性图表,然后使用更定量的方法使用 Hansen 溶解度参数。然后,我们研究了颗粒团聚的稳定性,无论是否可以预测稳定的组成,以及可以添加哪些分散剂来提高稳定性。最后,我们讨论了生物表面活性剂和生态晕圈的作用,以及它们如何为更好的稳定性和环境相关性提供途径。

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Suspension of micro- and nanoplastic test materials: Liquid compatibility, (bio)surfactants, toxicity and environmental relevance.暂停使用微塑料和纳米塑料试验材料:液体相容性、(生物)表面活性剂、毒性和环境相关性。
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