Can PVC Dechlorination Bring Circularity Benefits? – An Analysis Using a Multi-Objective, Multi-Regional Technology Choice Model

Author:

Ryodai MAKINO1,Hajime OHNO1,Alexander GUZMAN URBINA2,Jialing NI2,Yasuhiro FUKUSHIMA2

Affiliation:

1. Department of Chemical Engineering, Graduate School of Engineering, Tohoku University, Japan

2. Department of Frontier Sciences for Advanced Environment, Graduate School of Environmental Studies, Tohoku University, Japan

Publisher

Institute of Life Cycle Assessment

Subject

General Medicine

Reference19 articles.

1. 1) PLASTICS EUROPE (2022), Plastics ‒ the Facts 2022, website of PLASTICS EUROPE, available online <https://plasticseurope.org/knowledge-hub/plastics-the-facts-2022/>, (accessed on 2023-4-26)

2. 2) Kumagai S., Lu J., Fukushima Y., Ohno H., Kameda T., Yoshioka T. (2018): Resour. Conserv & Recycl, 133, 354-361

3. 3) Targeted Pollutants (n.d.), SOLVAir, available online <https://www.solvairsolutions.com/en/global-presentation/targeted-pollutants>, (accessed on 2023-2-11)

4. 4) European Commission (2000), The Behavior of PVC in Landfill Final Report February 2000, website of European Commission, available online <http://ec.europa.eu/environment/waste/studies/pvc/landfill.pdf>, (accessed on 2023-2-11)

5. 5) AccuWeather (2021), 500-year-old salt farming tradition undergoing major changes, website of AccuWeather, available online <https://www.accuweather.com/en/weather-news/500-year-old-salt-farming-tradition-climate-change/935695>, (accessed on 2023-2-11)

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