Assessing the environmental transformation of alternative chemicals using in silico tools, (bio)degradation testing and suspect screening – A case study of emerging alternative plasticizers

IF 5.3 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Ioannis Liagkouridis, Georgios Giovanoulis, Gunnar Thorsén
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引用次数: 0

Abstract

Chemical safety assessment requires the inclusion of information on potential transformation products. Such information is often lacking for chemicals considered as alternatives making a comprehensive safety assessment for chemical substitution challenging. To address this challenge a methodological framework for investigating the environmental transformation of alternative chemicals is presented. The developed methodology involves the combined use of in silico tools, biodegradation testing and suspect screening analysis for the prediction and identification of environmental transformation pathways and products. The proposed framework was applied on three emerging alternative plasticizers to phthalate esters (i.e., DINCH, DEHA and ATBC) under which major first-, second- and third-step transformation products predicted in silico were also successfully identified experimentally. This allowed for a preliminary evaluation of the performance of in silico tools in terms of the predicted transformation pathways and their likelihood of occurrence. At the same time the fast chemical degradation method showed good potential in identifying the key transformation products. The proposed framework can be used to support safety assessments for chemical substitution. Further application of the developed methodology on different chemical groups along with proper optimization of the individual method components is recommended to showcase its efficacy over a larger application area.
利用硅学工具、(生物)降解测试和疑似物筛选评估替代化学品的环境转化--新兴替代增塑剂案例研究
化学品安全评估需要纳入有关潜在转化产物的信息。被视为替代品的化学品通常缺乏此类信息,因此对化学替代品进行全面安全评估具有挑战性。为了应对这一挑战,本文提出了一个调查替代化学品环境转化的方法框架。所开发的方法包括综合使用硅学工具、生物降解测试和疑似筛选分析来预测和识别环境转化途径和产物。所提出的框架适用于三种新出现的邻苯二甲酸酯替代增塑剂(即 DINCH、DEHA 和 ATBC),在这些替代增塑剂中,硅学预测的主要第一步、第二步和第三步转化产物也在实验中得到了成功鉴定。这样就可以根据预测的转化途径及其发生的可能性,对硅学工具的性能进行初步评估。同时,快速化学降解方法在确定关键转化产物方面也显示出良好的潜力。建议的框架可用于支持化学替代的安全评估。建议将所开发的方法进一步应用于不同的化学组,并适当优化各个方法组件,以在更大的应用领域展示其功效。
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来源期刊
Emerging Contaminants
Emerging Contaminants Medicine-Public Health, Environmental and Occupational Health
CiteScore
10.00
自引率
6.70%
发文量
35
审稿时长
44 days
期刊介绍: Emerging Contaminants is an outlet for world-leading research addressing problems associated with environmental contamination caused by emerging contaminants and their solutions. Emerging contaminants are defined as chemicals that are not currently (or have been only recently) regulated and about which there exist concerns regarding their impact on human or ecological health. Examples of emerging contaminants include disinfection by-products, pharmaceutical and personal care products, persistent organic chemicals, and mercury etc. as well as their degradation products. We encourage papers addressing science that facilitates greater understanding of the nature, extent, and impacts of the presence of emerging contaminants in the environment; technology that exploits original principles to reduce and control their environmental presence; as well as the development, implementation and efficacy of national and international policies to protect human health and the environment from emerging contaminants.
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