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生命周期视角下常见离子液体的水生生态毒性

Life-Cycle Perspectives on Aquatic Ecotoxicity of Common Ionic Liquids.

机构信息

Center for Sustainable Infrastructure Systems, University of Colorado Denver , Denver, Colorado 80217, United States.

出版信息

Environ Sci Technol. 2016 Jul 5;50(13):6814-21. doi: 10.1021/acs.est.5b04721. Epub 2015 Dec 31.

DOI:10.1021/acs.est.5b04721
PMID:26599072
Abstract

This study compares the aquatic ecotoxicity impacts of production- and use-phase release of five common ionic liquids (ILs). Integrating toxicity data, physical properties, and fate and transport parameters with the USEtox model, we report, for the first time, the freshwater ecotoxicity characterization factors for BmimBr, Bmim[Cl], BmimBF4, BmimPF6, and BPyCl as 624, 748, 823, 927, and 1768 CTUe/kg, respectively. IL Production life cycle inventories were modeled and utilized to estimate their production-side ecotoxicity impacts. Literature on environmental aspects of ILs propagates either their green characteristics (no air emissions and high recyclability) or their nongreen aspects due to toxicity concerns of their release to water. This study adds a third dimension by showing that the upstream ecotoxicity impacts of producing ILs could outweigh the potential ecotoxicity impacts of direct release during use. Furthermore, for the studied ILs, an average of 83% of ecotoxicity impacts associated with their production can be linked to chemicals and materials released during the upstream synthesis steps, while only 17% of ecotoxicity impacts relate to life-cycle energy consumption. The findings underscore the need to develop sustainable synthesis routes, tight control over chemical releases during production, and careful selection of precursor materials and production processes.

摘要

本研究比较了生产和使用阶段释放的五种常见离子液体 (ILs) 的水生生态毒性影响。本研究通过将毒性数据、物理性质、归宿和传输参数与 USEtox 模型相结合,首次报道了BmimBr、Bmim[Cl]、BmimBF4、BmimPF6和BPyCl的淡水生态毒性特征化因子分别为 624、748、823、927 和 1768 CTUe/kg。对 IL 生产生命周期清单进行了建模,并利用这些模型来估算它们的生产侧生态毒性影响。关于 IL 环境方面的文献要么宣传其绿色特性(无空气排放和高可回收性),要么因对其向水中释放的毒性问题而宣传其非绿色特性。本研究通过表明生产离子液体的上游生态毒性影响可能超过使用过程中直接释放的潜在生态毒性影响,增加了第三个维度。此外,对于所研究的 ILs,与上游合成步骤中释放的化学品和材料相关的生产相关毒性影响的平均值为 83%,而与生命周期能源消耗相关的毒性影响仅为 17%。这些发现强调了开发可持续合成路线、在生产过程中严格控制化学品释放以及仔细选择前体材料和生产工艺的必要性。

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