James Bryan D, Ward Collin P, Hahn Mark E, Thorpe Steven J, Reddy Christopher M
Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution; Woods Hole, Massachusetts 02543, United States.
Department of Biology, Woods Hole Oceanographic Institution; Woods Hole, Massachusetts 02543, United States.
ACS Sustain Chem Eng. 2024 Jan 8;12(3):1185-1194. doi: 10.1021/acssuschemeng.3c05534. eCollection 2024 Jan 22.
While plastic pollution threatens ecosystems and human health, the use of plastic products continues to increase. Limiting its harm requires design strategies for plastic products informed by the threats that plastics pose to the environment. Thus, we developed a sustainability metric for the ecodesign of plastic products with low environmental persistence and uncompromised performance. To do this, we integrated the environmental degradation rate of plastic into established material selection strategies, deriving material indices for environmental persistence. By comparing indices for the environmental impact of on-the-market plastics and proposed alternatives, we show that accounting for the environmental persistence of plastics in design could translate to societal benefits of hundreds of millions of dollars for a single consumer product. Our analysis identifies the materials and their properties that deserve development, adoption, and investment to create functional and less environmentally impactful plastic products.
尽管塑料污染威胁着生态系统和人类健康,但塑料制品的使用仍在持续增加。要限制其危害,需要依据塑料对环境构成的威胁来制定塑料制品的设计策略。因此,我们针对具有低环境持久性且性能不受影响的塑料制品生态设计,制定了一项可持续性指标。为此,我们将塑料的环境降解率纳入既定的材料选择策略中,得出了环境持久性的材料指数。通过比较市场上现有塑料和拟用替代品的环境影响指数,我们表明,在设计中考虑塑料的环境持久性,对于单一消费产品而言,可为社会带来数亿美元的收益。我们的分析确定了值得开发、采用和投资的材料及其特性,以制造功能良好且对环境影响较小的塑料制品。