†University of Illinois at Chicago, Institute for Environmental Science and Policy, 2121 West Taylor (MC 673), Chicago, Illinois 60612, United States.
‡Department of Chemical and Environmental Engineering, Yale University, New Haven, Connecticut 06520-8286, United States.
Environ Sci Technol. 2015 Jul 7;49(13):7529-42. doi: 10.1021/acs.est.5b01176. Epub 2015 Jun 12.
Silver was utilized throughout history to prevent the growth of bacteria in food and wounds. Recently, nanoscale silver has been applied to consumer textiles (nAg-textiles) to eliminate the prevalence of odor-causing bacteria. In turn, it is proposed that consumers will launder these items less frequently thus, reducing the life cycle impacts. While previous studies report that laundering processes are associated with the greatest environmental impacts of these textiles, there is no data available to support the proposed shift in consumer laundering behavior. Here, the results from a comprehensive literature review of nAg-textile life cycle studies are used to inform a cradle-to-grave life cycle impact assessment. Rather than assuming shifts in consumer behavior, the impact assessment is conducted in such a way that considers all laundering scenarios to elucidate the potential for reduced laundering to enable realization of a net life cycle benefit. In addition to identifying the most impactful stages of the life cycle across nine-midpoint categories, a payback period and uncertainty analysis quantifies the reduction in lifetime launderings required to recover the impacts associated with nanoenabling the textile. Reduction of nAg-textile life cycle impacts is not straightforward and depends on the impact category considered.
银在历史上被用于防止食物和伤口中的细菌生长。最近,纳米银已被应用于消费纺织品(nAg-textiles)中,以消除产生异味的细菌。反过来,有人提出消费者将减少对这些物品的洗涤频率,从而减少生命周期的影响。虽然之前的研究报告指出,洗涤过程与这些纺织品的最大环境影响有关,但没有数据支持消费者洗涤行为的这种转变。在这里,对 nAg-textile 生命周期研究的综合文献综述的结果被用来为摇篮到坟墓的生命周期影响评估提供信息。评估不是假设消费者行为的转变,而是以考虑所有洗涤情况的方式进行,以阐明减少洗涤以实现净生命周期效益的潜力。除了确定九个中点类别中最具影响力的生命周期阶段外,还通过回收期和不确定性分析来量化减少洗涤次数以恢复与纺织品纳米化相关的影响所需的时间。减少 nAg-textile 生命周期的影响并不简单,这取决于所考虑的影响类别。