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使用活动和废物管理对工程纳米材料环境释放的影响。

Influences of use activities and waste management on environmental releases of engineered nanomaterials.

机构信息

Faculty of Production Engineering, Department of Technological Design and Development, University of Bremen, Badgasteiner Str. 1, 28359 Bremen, Germany.

UFT Center for Environmental Research and Sustainable Technology, Department of General and Theoretical Ecology, University of Bremen, Leobener Str., 28359 Bremen, Germany.

出版信息

Sci Total Environ. 2015 Dec 1;535:160-71. doi: 10.1016/j.scitotenv.2015.02.042. Epub 2015 Feb 26.

Abstract

Engineered nanomaterials (ENM) offer enhanced or new functionalities and properties that are used in various products. This also entails potential environmental risks in terms of hazard and exposure. However, hazard and exposure assessment for ENM still suffer from insufficient knowledge particularly for product-related releases and environmental fate and behavior. This study therefore analyzes the multiple impacts of the product use, the properties of the matrix material, and the related waste management system (WMS) on the predicted environmental concentration (PEC) by applying nine prospective life cycle release scenarios based on reasonable assumptions. The products studied here are clothing textiles treated with silver nanoparticles (AgNPs), since they constitute a controversial application. Surprisingly, the results show counter-intuitive increases by a factor of 2.6 in PEC values for the air compartment in minimal AgNP release scenarios. Also, air releases can shift from washing to wearing activity; their associated release points may shift accordingly, potentially altering release hot spots. Additionally, at end-of-life, the fraction of AgNP-residues contained on exported textiles can be increased by 350% when assuming short product lifespans and globalized WMS. It becomes evident that certain combinations of use activities, matrix material characteristics, and WMS can influence the regional PEC by several orders of magnitude. Thus, in the light of the findings and expected ENM market potential, future assessments should consider these aspects to derive precautionary design alternatives and to enable prospective global and regional risk assessments.

摘要

工程纳米材料(ENM)提供了增强或新的功能和特性,用于各种产品。这也带来了潜在的环境风险,包括危害和暴露。然而,ENM 的危害和暴露评估仍然存在知识不足的问题,特别是在与产品相关的释放以及环境归宿和行为方面。因此,本研究通过应用基于合理假设的九个前瞻性生命周期释放情景,分析了产品使用、基质材料的性质以及相关废物管理系统(WMS)对预测环境浓度(PEC)的多重影响。这里研究的产品是用银纳米粒子(AgNPs)处理的服装纺织品,因为它们构成了一个有争议的应用。令人惊讶的是,结果表明,在最小 AgNP 释放情景下,空气隔室的 PEC 值出人意料地增加了 2.6 倍。此外,空气释放可以从洗涤活动转移到穿着活动;它们相关的释放点可能会相应转移,从而改变释放热点。此外,在产品生命周期结束时,如果假设产品寿命短和全球化的 WMS,出口纺织品上残留的 AgNP 含量可能会增加 350%。很明显,某些使用活动、基质材料特性和 WMS 的组合可以通过几个数量级影响区域 PEC。因此,鉴于这些发现和预期的 ENM 市场潜力,未来的评估应该考虑这些方面,以得出预防性设计方案,并能够进行前瞻性的全球和区域风险评估。

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