Toward global and national toxicity footprints
Estimating comprehensive toxicity footprints, encompassing potential impacts of toxic releases from consumption on human health and ecosystems, remains challenging due to the absence of complete emission inventories and disaggregation in global economic sectors. This study proposes an integrative ap...
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| Veröffentlicht in: | Journal of industrial ecology Jg. 27; H. 6; S. 1521 - 1537 |
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| Hauptverfasser: | , , , , |
| Format: | Journal Article |
| Sprache: | Englisch |
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New Haven
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01.12.2023
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| ISSN: | 1088-1980, 1530-9290 |
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| Abstract | Estimating comprehensive toxicity footprints, encompassing potential impacts of toxic releases from consumption on human health and ecosystems, remains challenging due to the absence of complete emission inventories and disaggregation in global economic sectors. This study proposes an integrative approach to evaluate the global toxicity footprint by combining multiple databases, inventorying methods gap‐filling/extrapolation techniques, and environmentally extended multi‐region input–output models. We incorporated industrial, residential, and agricultural emissions of 693 chemicals into air, water, and soil, assessing the toxicity footprints of 49 countries and regions and revealing the displacement of toxic impacts across regions and nations. Our results emphasize the significant sensitivity of emission inventories and toxicity footprints to the choice of extrapolation procedures in regionalized chemical inventory development. Despite considerable progress in consolidating emission data, major gaps persist in publicly available datasets, impeding accurate extrapolation of global pollutant releases and comprehensive analysis of toxicity footprints. Primary data require refinement, harmonization, and expansion to enhance toxicity footprints' accuracy, particularly concerning pesticide emissions and national Pollutant Release and Transfer Registers initiatives. This study offers crucial insights for national and regional policymakers, facilitating the creation of targeted regulations and incentives to mitigate toxic substances' environmental impact. Future research should prioritize developing input–output table projections, deriving forward‐looking time series of national emission inventories, and establishing absolute thresholds for toxic impacts within the framework of environmentally sustainable societies. |
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| AbstractList | Estimating comprehensive toxicity footprints, encompassing potential impacts of toxic releases from consumption on human health and ecosystems, remains challenging due to the absence of complete emission inventories and disaggregation in global economic sectors. This study proposes an integrative approach to evaluate the global toxicity footprint by combining multiple databases, inventorying methods gap‐filling/extrapolation techniques, and environmentally extended multi‐region input–output models. We incorporated industrial, residential, and agricultural emissions of 693 chemicals into air, water, and soil, assessing the toxicity footprints of 49 countries and regions and revealing the displacement of toxic impacts across regions and nations. Our results emphasize the significant sensitivity of emission inventories and toxicity footprints to the choice of extrapolation procedures in regionalized chemical inventory development. Despite considerable progress in consolidating emission data, major gaps persist in publicly available datasets, impeding accurate extrapolation of global pollutant releases and comprehensive analysis of toxicity footprints. Primary data require refinement, harmonization, and expansion to enhance toxicity footprints' accuracy, particularly concerning pesticide emissions and national Pollutant Release and Transfer Registers initiatives. This study offers crucial insights for national and regional policymakers, facilitating the creation of targeted regulations and incentives to mitigate toxic substances' environmental impact. Future research should prioritize developing input–output table projections, deriving forward‐looking time series of national emission inventories, and establishing absolute thresholds for toxic impacts within the framework of environmentally sustainable societies. |
| Author | Laurent, Alexis Stadler, Konstantin Wood, Richard Leclerc, Alexandra Berthet, Etienne |
| Author_xml | – sequence: 1 givenname: Alexandra orcidid: 0000-0001-5520-9176 surname: Leclerc fullname: Leclerc, Alexandra organization: Technical University of Denmark – sequence: 2 givenname: Etienne orcidid: 0000-0002-8597-8360 surname: Berthet fullname: Berthet, Etienne email: etber@dtu.dk organization: Technical University of Denmark – sequence: 3 givenname: Konstantin orcidid: 0000-0002-1548-201X surname: Stadler fullname: Stadler, Konstantin organization: Norwegian University of Science and Technology – sequence: 4 givenname: Richard orcidid: 0000-0002-7906-3324 surname: Wood fullname: Wood, Richard organization: Norwegian University of Science and Technology – sequence: 5 givenname: Alexis orcidid: 0000-0003-0445-7983 surname: Laurent fullname: Laurent, Alexis organization: Technical University of Denmark |
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| Title | Toward global and national toxicity footprints |
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