Material Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.
Environ Sci Technol. 2011 Dec 1;45(23):9837-56. doi: 10.1021/es201579y. Epub 2011 Oct 27.
Carbon nanotubes (CNTs) are currently incorporated into various consumer products, and numerous new applications and products containing CNTs are expected in the future. The potential for negative effects caused by CNT release into the environment is a prominent concern and numerous research projects have investigated possible environmental release pathways, fate, and toxicity. However, this expanding body of literature has not yet been systematically reviewed. Our objective is to critically review this literature to identify emerging trends as well as persistent knowledge gaps on these topics. Specifically, we examine the release of CNTs from polymeric products, removal in wastewater treatment systems, transport through surface and subsurface media, aggregation behaviors, interactions with soil and sediment particles, potential transformations and degradation, and their potential ecotoxicity in soil, sediment, and aquatic ecosystems. One major limitation in the current literature is quantifying CNT masses in relevant media (polymers, tissues, soils, and sediments). Important new directions include developing mechanistic models for CNT release from composites and understanding CNT transport in more complex and environmentally realistic systems such as heteroaggregation with natural colloids and transport of nanoparticles in a range of soils.
碳纳米管(CNTs)目前已被应用于各种消费产品,未来预计还会有更多含有 CNT 的新应用和新产品。CNTs 释放到环境中可能产生负面影响,这是一个突出的问题,许多研究项目已经调查了 CNT 可能的环境释放途径、命运和毒性。然而,这一不断扩展的文献尚未得到系统审查。我们的目标是批判性地审查这一文献,以确定这些主题的新出现趋势和持续存在的知识空白。具体来说,我们研究了 CNT 从聚合物产品中的释放、在废水处理系统中的去除、通过地表和地下介质的迁移、聚集行为、与土壤和沉积物颗粒的相互作用、潜在的转化和降解,以及它们在土壤、沉积物和水生生态系统中的潜在生态毒性。目前文献中的一个主要局限性是对相关介质(聚合物、组织、土壤和沉积物)中 CNT 质量进行定量。重要的新方向包括开发从复合材料中释放 CNT 的机械模型,并了解更复杂和更接近实际环境的系统中的 CNT 迁移,如与天然胶体的异质聚集和一系列土壤中纳米颗粒的迁移。