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Plastics in the US: toward a material flow characterization of production, markets and end of life
Author(s) -
Martin Heller,
Michael H. Mazor,
Gregory A. Keoleian
Publication year - 2020
Publication title -
environmental research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.37
H-Index - 124
ISSN - 1748-9326
DOI - 10.1088/1748-9326/ab9e1e
Subject(s) - context (archaeology) , circular economy , production (economics) , material flow analysis , business , industrial ecology , resource (disambiguation) , sustainability , engineering , waste management , economics , computer science , computer network , ecology , macroeconomics , paleontology , biology
Managing plastics has become a focal issue of the Anthropocene. Developments in plastic materials have made possible many of the technologies and conveniences that define our modern life. Yet, plastics are accumulating in landfills and natural environments, impacting resource utilization and ecosystem function. Solutions to these rising problems will require action and coordination across all stages of plastics value chains. Here, we offer the first contemporary plastics material flow by resin type through the US economy, encompassing 2017 production, sales, use markets and end-of-life management. This roadmap, while sourced from disparate and incomplete data, provides stakeholders with a system-scale context for understanding challenges, opportunities and implications of future interventions. More than three-quarters of the plastics reaching end of life went to landfill, and less than 8% was recycled. Packaging was the largest defined use market for plastics, but two thirds of the plastic put into use in 2017 went into other markets, including consumer products, electronics, buildings and transportation. In nearly all uses, increased coordination between material and product innovation and design and end-of-life recovery and recycling are needed. Alignment of technology, policy and market drivers will be necessary to reduce plastic waste and improve the circularity of plastic materials. Abbreviation definitions LDPE low-density polyethylene LLDPE linear low-density polyethylene HDPE high-density polyethylene PP polypropylene PS polystyrene EPS expandable polystyrene PVC polyvinyl chloride PET polyethylene terephthalate ABS acrylonitrile-butadiene-styrene ASR auto-shredder residue ACC American Chemistry Council Mt Megatonnes=million metric tonnes US United States of America US EPA United States Environmental Protection Agency PCB polychlorinated biphenyl MSW municipal solid waste C&D construction and demolition EOL end-of-life PUR polyurethanes

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