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评估化妆品水生环境影响的参数。

Parameters for assessing the aquatic environmental impact of cosmetic products.

作者信息

Vita N A, Brohem C A, Canavez A D P M, Oliveira C F S, Kruger O, Lorencini M, Carvalho C M

机构信息

Grupo Boticário, Department of Safety and Efficacy Assessment, São José dos Pinhais, Paraná, Brazil; Master's Program in Industrial Biotechnology, Positivo University [Universidade Positivo], Curitiba, Paraná, Brazil.

Grupo Boticário, Department of Safety and Efficacy Assessment, São José dos Pinhais, Paraná, Brazil.

出版信息

Toxicol Lett. 2018 May 1;287:70-82. doi: 10.1016/j.toxlet.2018.01.015. Epub 2018 Feb 7.

Abstract

The cosmetic industry's growing concern about the impact of its supply chain on the environment, sustainability of raw materials, and biodiversity increases the need to ensure that the final product has a lower environmental impact. The objective of this review is to summarize and compare the information available from international organizations and legislation regarding the main criteria used to assess raw materials for aquatic toxicity, as well as the most suitable alternative methods for obtaining assessment parameters. Using the literature available in databases, a review of the scientific literature and international legislation, this work discusses and compares the parameters established by international organizations such as the Environmental Protection Agency (EPA) and Cradle to Cradle (C2C), as well as European legislation, namely, European Regulation 1272/2008, for assessing environmental impact. Defining the ecotoxicity parameters of the main classes of raw materials in rinse-off cosmetic products can enable the development of products that are more environmentally sustainable, prioritizing substances with less environmental impact.

摘要

化妆品行业日益关注其供应链对环境的影响、原材料的可持续性以及生物多样性,这增加了确保最终产品对环境影响较小的必要性。本综述的目的是总结和比较国际组织及相关法规中关于评估原材料水生毒性的主要标准以及获取评估参数的最合适替代方法的现有信息。通过利用数据库中的文献、科学文献综述和国际法规,本研究讨论并比较了环境保护局(EPA)和从摇篮到摇篮(C2C)等国际组织以及欧洲法规(即欧洲法规1272/2008)所确立的用于评估环境影响的参数。确定冲洗型化妆品中主要原材料类别的生态毒性参数,有助于开发更具环境可持续性的产品,优先选用对环境影响较小的物质。

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