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Production, use, and fate of all plastics ever made

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TLDR
By identifying and synthesizing dispersed data on production, use, and end-of-life management of polymer resins, synthetic fibers, and additives, this work presents the first global analysis of all mass-produced plastics ever manufactured.
Abstract
Plastics have outgrown most man-made materials and have long been under environmental scrutiny. However, robust global information, particularly about their end-of-life fate, is lacking. By identifying and synthesizing dispersed data on production, use, and end-of-life management of polymer resins, synthetic fibers, and additives, we present the first global analysis of all mass-produced plastics ever manufactured. We estimate that 8300 million metric tons (Mt) as of virgin plastics have been produced to date. As of 2015, approximately 6300 Mt of plastic waste had been generated, around 9% of which had been recycled, 12% was incinerated, and 79% was accumulated in landfills or the natural environment. If current production and waste management trends continue, roughly 12,000 Mt of plastic waste will be in landfills or in the natural environment by 2050.

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The long-term legacy of plastic mass production

TL;DR: The amount of plastic in the global surface ocean is estimated, the long-term legacy of plastic mass production is assessed, the time required to clean up the oceans with river barriers and clean up devices, and the fate of collected plastic waste is explored.
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Pyrolysis of polypropylene plastic waste into carbonaceous char: Priority of plastic waste management amidst COVID-19 pandemic

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Microplastic contamination of an unconfined groundwater aquifer in Victoria, Australia

TL;DR: In this paper , eight commonly found microplastics in the environment (polyethylene, PE; polystyrene, PS; polypropylene, PP; polyvinyl chloride, PVC; polyethylene terephthalate, PET; polycarbonate, PC; polymethylmethacrylate, PMMA; and polyamide, PA) were analysed in triplicate groundwater samples (n = 21) from five sampling sites across seven capped groundwater monitoring bores from Bacchus Marsh (Victoria, Australia) using Agilent's novel Laser Direct Infra-Red (LDIR) imaging system.
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Convolutional neural network for soil microplastic contamination screening using infrared spectroscopy.

TL;DR: Spectra obtained from the visible-near-infrared (vis-NIR) spectra has been shown to be feasible in predicting microplastics in the soil and a convolutional neural network model was trained to classify the soil sample into various degrees of contamination based on concentration.
References
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Journal ArticleDOI

Plastic waste inputs from land into the ocean

TL;DR: This work combines available data on solid waste with a model that uses population density and economic status to estimate the amount of land-based plastic waste entering the ocean, which is estimated to be 275 million metric tons.
Journal ArticleDOI

Accumulation and fragmentation of plastic debris in global environments.

TL;DR: Global plastics production and the accumulation of plastic waste are documented, showing that trends in mega- and macro-plastic accumulation rates are no longer uniformly increasing and that the average size of plastic particles in the environment seems to be decreasing.

What a Waste : A Global Review of Solid Waste Management

TL;DR: In this paper, the authors estimate that the amount of municipal solid waste (MSW) generated by urban populations is growing even faster than the rate of urbanization and that by 2025 this will likely increase to 4.3 billion urban residents.
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What are the current trends in the production and consumption of plastics?

Current trends show 8300 million metric tons of virgin plastics produced, with 6300 million metric tons of plastic waste generated by 2015. Only 9% recycled, 12% incinerated, and 79% landfilled or in the environment.