{"id":451841,"date":"2026-08-13T14:27:59","date_gmt":"2026-08-13T12:27:59","guid":{"rendered":""},"modified":"2026-08-13T14:28:00","modified_gmt":"2026-08-13T12:28:00","slug":"the-macroeconomic-and-biophysical-impacts-of-decarbonization-and-circular-economy-strategies","status":"publish","type":"publication","link":"https:\/\/www.wifo.ac.at\/en\/publication\/451841\/","title":{"rendered":"The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies"},"content":{"rendered":"","protected":false},"featured_media":0,"template":"","class_list":["post-451841","publication","type-publication","status-publish","hentry"],"acf":{"subtitle":"A Scenario Analysis for Austria","text":"Growth in resource use is a key driver of climate change and environmental degradation. In recognition of this, a few governments have set targets to reduce their countries' per capita resource use while striving to achieve the goals set out in the Paris Agreement. In this context, the concept of the circular economy (CE) has attracted mounting interest as a means of mitigating climate change, reducing resource use and waste generation, while advancing economic performance. This paper uses a mass-balanced biophysical model (CeAT) linked to a macroeconomic model (DYNK) of the Austrian economy to analyse different stock-flow scenarios, combining a decarbonization scheme with CE strategies at varying levels of ambition. The analysis examines Austria's buildings, transport, and electricity sectors, evaluating economic impacts by employment, GDP, and disposable income results. The framework incorporates two stylized indirect rebounds effects arising from CE strategies of narrowing, i.e. reduced growth in infrastructure, buildings or car fleets. These rebound effects, driven by the reallocation of financial resources, manifest through two distinct consumption pathways: service-oriented and goods-oriented expenditure patterns. Findings indicate, the strong CE scenario can achieve substantial dematerialization. At the same time, it shows potentially the highest average growth rates in disposable income when combined with a service-oriented rebound. First order CE strategies (refuse, rethink, reduce) are therefore of key importance for the triple agenda of climate mitigation, resource use reductions and economic growth. Particularly, demand-side reductions can enhance economic performance if the rebound effects are constrained by reallocating the freed-up expenditure to low-material-intensity services.","onlinedate":"2026-08-13 12:28:02","lang":"English","publication_series":"","publication_date":"20260813","publication_date_year":"","publication_date_full":true,"publication_num_pages":"36","keywords":"[\"Decarbonization\",\"Scenario analysis\",\"Indirect rebound effect\",\"Resource consumption\",\"Economic impact analysis\",\"Circular economy\"]","jelcodes":"[]","related_publications":"[]","pdf":451843,"zip":null,"link":"","monthly_report":true,"monthly_report_main":false,"monthly_report_volume":"","monthly_report_pages":"","monthly_report_pages_sort":"0","issue":"732","journal":"WIFO Working Papers","publisher":"","invisible":false,"external":false,"embargo_date":null,"types":[44410],"research_groups":[3655],"collaboration":"","persons":[3711,3743,218605,218607,218609,15805,12527],"persons_data":"[{\"personId\":3711,\"personName\":\"Ina Meyer\",\"organisationNames\":[]},{\"personId\":3743,\"personName\":\"Mark Sommer\",\"organisationNames\":[]},{\"personId\":218605,\"personName\":\"Andr\u00e9 Baumgart\",\"organisationNames\":[\"BOKU Vienna, SEC\"]},{\"personId\":218607,\"personName\":\"Nina Eisenmenger\",\"organisationNames\":[\"BOKU Vienna, SEC\"]},{\"personId\":218609,\"personName\":\"Doris Vir\u00e1g\",\"organisationNames\":[\"BOKU Vienna, SEC\"]},{\"personId\":15805,\"personName\":\"Kurt Kratena\",\"organisationNames\":[\"CESAR\"]},{\"personId\":12527,\"personName\":\"Willi Haas\",\"organisationNames\":[\"BOKU Vienna, SEC\"]}]","clients":[],"subclients":[],"partners":[],"topics":[],"host_publication_title":"","host_publication_subtitle":"","place_of_publication":"","host_publication_editors":"[]","type_description":"","output_media":"","chapter":"","article_number":"","citations":"{\"apa\":\"<div class=\\\"rendering rendering_researchoutput  rendering_researchoutput_apa rendering_contributiontoperiodical rendering_apa rendering_contributiontoperiodical_apa\\\"><span>Meyer, I.<\\\/span><span>, Sommer, M.<\\\/span>, Baumgart, A., Eisenmenger, N., Vir\u00e1g, D., Kratena, K., &amp; Haas, W. (2026). <span>The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies: A Scenario Analysis for Austria<\\\/span>. <span><em>WIFO Working Papers<\\\/em><\\\/span>, (732).<\\\/div>\",\"vancouver\":\"<div class=\\\"rendering rendering_researchoutput  rendering_researchoutput_vancouver rendering_contributiontoperiodical rendering_vancouver rendering_contributiontoperiodical_vancouver\\\"><span>Meyer I<\\\/span><span>, Sommer M<\\\/span>, Baumgart A, Eisenmenger N, Vir\u00e1g D, Kratena K et al. <span class=\\\"title\\\"><span>The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies: <span class=\\\"subtitle\\\">A Scenario Analysis for Austria<\\\/span><\\\/span><\\\/span>. <span>WIFO Working Papers<\\\/span>. 2026 Aug 13;(732).<\\\/div>\",\"bibtex\":\"<div class=\\\"rendering rendering_researchoutput  rendering_researchoutput_bibtex rendering_contributiontoperiodical rendering_bibtex rendering_contributiontoperiodical_bibtex\\\"><div>@misc{6cf18f6c5b004bfe8c0acb916c1ef122,<\\\/div><div>  title    = \\\"The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies: A Scenario Analysis for Austria\\\",<\\\/div><div>  abstract = \\\"Growth in resource use is a key driver of climate change and environmental degradation. In recognition of this, a few governments have set targets to reduce their countries' per capita resource use while striving to achieve the goals set out in the Paris Agreement. In this context, the concept of the circular economy (CE) has attracted mounting interest as a means of mitigating climate change, reducing resource use and waste generation, while advancing economic performance. This paper uses a mass-balanced biophysical model (CeAT) linked to a macroeconomic model (DYNK) of the Austrian economy to analyse different stock-flow scenarios, combining a decarbonization scheme with CE strategies at varying levels of ambition. The analysis examines Austria's buildings, transport, and electricity sectors, evaluating economic impacts by employment, GDP, and disposable income results. The framework incorporates two stylized indirect rebounds effects arising from CE strategies of narrowing, i.e. reduced growth in infrastructure, buildings or car fleets. These rebound effects, driven by the reallocation of financial resources, manifest through two distinct consumption pathways: service-oriented and goods-oriented expenditure patterns. Findings indicate, the strong CE scenario can achieve substantial dematerialization. At the same time, it shows potentially the highest average growth rates in disposable income when combined with a service-oriented rebound. First order CE strategies (refuse, rethink, reduce) are therefore of key importance for the triple agenda of climate mitigation, resource use reductions and economic growth. Particularly, demand-side reductions can enhance economic performance if the rebound effects are constrained by reallocating the freed-up expenditure to low-material-intensity services.\\\",<\\\/div><div>  keywords = \\\"Decarbonization, Scenario analysis, Indirect rebound effect, Resource consumption, Economic impact analysis, Circular economy\\\",<\\\/div><div>  author   = \\\"Ina Meyer and Mark Sommer and Andr{\\\\'e} Baumgart and Nina Eisenmenger and Doris Vir{\\\\'a}g and Kurt Kratena and Willi Haas\\\",<\\\/div><div>  year     = \\\"2026\\\",<\\\/div><div>  month    = aug,<\\\/div><div>  day      = \\\"13\\\",<\\\/div><div>  language = \\\"English\\\",<\\\/div><div>  journal  = \\\"WIFO Working Papers\\\",<\\\/div><p>}<\\\/p><\\\/div>\",\"ris\":\"<div class=\\\"rendering rendering_researchoutput  rendering_researchoutput_ris rendering_contributiontoperiodical rendering_ris rendering_contributiontoperiodical_ris\\\"><p>TY  - GEN<\\\/p><p>T1  - The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies<\\\/p><p>T2  - A Scenario Analysis for Austria<\\\/p><p>AU  - Meyer, Ina<\\\/p><p>AU  - Sommer, Mark<\\\/p><p>AU  - Baumgart, Andr\u00e9<\\\/p><p>AU  - Eisenmenger, Nina<\\\/p><p>AU  - Vir\u00e1g, Doris<\\\/p><p>AU  - Kratena, Kurt<\\\/p><p>AU  - Haas, Willi<\\\/p><p>PY  - 2026\\\/8\\\/13<\\\/p><p>Y1  - 2026\\\/8\\\/13<\\\/p><p>N2  - Growth in resource use is a key driver of climate change and environmental degradation. In recognition of this, a few governments have set targets to reduce their countries' per capita resource use while striving to achieve the goals set out in the Paris Agreement. In this context, the concept of the circular economy (CE) has attracted mounting interest as a means of mitigating climate change, reducing resource use and waste generation, while advancing economic performance. This paper uses a mass-balanced biophysical model (CeAT) linked to a macroeconomic model (DYNK) of the Austrian economy to analyse different stock-flow scenarios, combining a decarbonization scheme with CE strategies at varying levels of ambition. The analysis examines Austria's buildings, transport, and electricity sectors, evaluating economic impacts by employment, GDP, and disposable income results. The framework incorporates two stylized indirect rebounds effects arising from CE strategies of narrowing, i.e. reduced growth in infrastructure, buildings or car fleets. These rebound effects, driven by the reallocation of financial resources, manifest through two distinct consumption pathways: service-oriented and goods-oriented expenditure patterns. Findings indicate, the strong CE scenario can achieve substantial dematerialization. At the same time, it shows potentially the highest average growth rates in disposable income when combined with a service-oriented rebound. First order CE strategies (refuse, rethink, reduce) are therefore of key importance for the triple agenda of climate mitigation, resource use reductions and economic growth. Particularly, demand-side reductions can enhance economic performance if the rebound effects are constrained by reallocating the freed-up expenditure to low-material-intensity services.<\\\/p><p>AB  - Growth in resource use is a key driver of climate change and environmental degradation. In recognition of this, a few governments have set targets to reduce their countries' per capita resource use while striving to achieve the goals set out in the Paris Agreement. In this context, the concept of the circular economy (CE) has attracted mounting interest as a means of mitigating climate change, reducing resource use and waste generation, while advancing economic performance. This paper uses a mass-balanced biophysical model (CeAT) linked to a macroeconomic model (DYNK) of the Austrian economy to analyse different stock-flow scenarios, combining a decarbonization scheme with CE strategies at varying levels of ambition. The analysis examines Austria's buildings, transport, and electricity sectors, evaluating economic impacts by employment, GDP, and disposable income results. The framework incorporates two stylized indirect rebounds effects arising from CE strategies of narrowing, i.e. reduced growth in infrastructure, buildings or car fleets. These rebound effects, driven by the reallocation of financial resources, manifest through two distinct consumption pathways: service-oriented and goods-oriented expenditure patterns. Findings indicate, the strong CE scenario can achieve substantial dematerialization. At the same time, it shows potentially the highest average growth rates in disposable income when combined with a service-oriented rebound. First order CE strategies (refuse, rethink, reduce) are therefore of key importance for the triple agenda of climate mitigation, resource use reductions and economic growth. Particularly, demand-side reductions can enhance economic performance if the rebound effects are constrained by reallocating the freed-up expenditure to low-material-intensity services.<\\\/p><p>KW  - Decarbonization<\\\/p><p>KW  - Scenario analysis<\\\/p><p>KW  - Indirect rebound effect<\\\/p><p>KW  - Resource consumption<\\\/p><p>KW  - Economic impact analysis<\\\/p><p>KW  - Circular economy<\\\/p><p>M3  - WIFO series<\\\/p><p>JO  - WIFO Working Papers<\\\/p><p>JF  - WIFO Working Papers<\\\/p><p>ER  - <\\\/p><\\\/div>\"}","scientific_assistance":"[]","scientific_review":"[]","version":"","release_date":null,"expiration_date":null,"surveyor":"","research_assistance":"","edv":"","additional_info_de":"","additional_info_en":""},"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v28.0 (Yoast SEO v28.0) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>The Macroeconomic and Biophysical Impacts of Decarbonization and Circular Economy Strategies - 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