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对应用于纳米材料绿色合成的环境可持续性指标进行的批判性分析,以及纳米技术相关环境风险的评估。

A critical analysis of environmental sustainability metrics applied to green synthesis of nanomaterials and the assessment of environmental risks associated with the nanotechnology.

机构信息

Research Group in Science with Technological Applications (GI-CAT), Department of Chemistry, Faculty of Natural and Exact Sciences, Universidad del Valle, Cali, Colombia.

Research Group in Science with Technological Applications (GI-CAT), Department of Chemistry, Faculty of Natural and Exact Sciences, Universidad del Valle, Cali, Colombia.

出版信息

Sci Total Environ. 2021 Nov 1;793:148524. doi: 10.1016/j.scitotenv.2021.148524. Epub 2021 Jun 23.

Abstract

Nanotechnology is one of the most relevant scientific areas today due to its multiple applications in fields such as medicine, environmental remediation, information technology and energy conversion. This importance has led to the need to advance in the development of environmentally sustainable and safe nanomaterials by incorporating the principles of green chemistry during their synthesis and in their applications. However, this qualitative framework of thought does not offer minimum criteria for the use of the term "green", and therefore, this adjective is commonly used to refer to bio-based or nanotechnological processes without taking into account their net ecological impact. In this context, environmental sustainability metrics can be applied to nanotechnology to compare, optimize and quantify the environmental sustainability of synthesis procedures. This review provides an overview of green chemistry and its application in nanotechnology, but also an analysis of the use of green chemistry principles in the development of bio-based nanobiotechnology and nanosynthesis, with special emphasis on the use of sustainability's metrics for the quantitative analysis of nanomaterial synthesis protocols. These include: Atom Economy, E-factor, Process Mass Intensity, Energy Intensity, and Life Cycle Analysis.

摘要

纳米技术是当今最重要的科学领域之一,因为它在医学、环境修复、信息技术和能源转换等领域有多种应用。这种重要性导致需要在合成过程和应用中纳入绿色化学原则,来开发环境可持续和安全的纳米材料。然而,这种定性的思维框架没有为“绿色”一词的使用提供最低标准,因此,这个形容词通常用于指代生物基或纳米技术过程,而不考虑其净生态影响。在这种情况下,可以将环境可持续性指标应用于纳米技术,以比较、优化和量化合成程序的环境可持续性。本综述提供了对绿色化学及其在纳米技术中的应用的概述,但也分析了绿色化学原则在生物基纳米生物技术和纳米合成开发中的应用,特别强调了使用可持续性指标对纳米材料合成方案进行定量分析。这些指标包括:原子经济性、E 因子、过程质量强度、能量强度和生命周期分析。

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