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Bitte beziehen Sie sich beim Zitieren dieses Dokumentes immer auf folgenden Persistent Identifier (PID):
https://doi.org/10.17645/up.v3i2.1218

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Carbon Footprint Planning: Quantifying Local and State Mitigation Opportunities for 700 California Cities

[Zeitschriftenartikel]

Wheeler, Stephen M.
Jones, Christopher M.
Kammen, Daniel M.

Abstract

Consumption-based greenhouse gas (GHG) emissions inventories have emerged to describe full life cycle contributions of households to climate change at country, state and increasingly city scales. Using this approach, how much carbon footprint abatement potential is within the control of local govern... mehr

Consumption-based greenhouse gas (GHG) emissions inventories have emerged to describe full life cycle contributions of households to climate change at country, state and increasingly city scales. Using this approach, how much carbon footprint abatement potential is within the control of local governments, and which policies hold the most potential to reduce emissions? This study quantifies the potential of local policies and programs to meet aggressive GHG reduction targets using a consumption-based, high geospatial resolution planning model for the state of California. We find that roughly 35% of all carbon footprint abatement potential statewide is from activities at least partially within the control of local governments. The study shows large variation in the size and composition of carbon footprints and abatement opportunities by ~23,000 Census block groups (i.e., neighborhood-scale within cities), 717 cities and 58 counties across the state. These data and companion online tools can help cities better understand priorities to reduce GHGs from a comprehensive, consumption-based perspective, with potential application to the full United States and internationally.... weniger

Klassifikation
Ökologie und Umwelt
Raumplanung und Regionalforschung

Freie Schlagwörter
carbon footprint; climate action plans; climate change; consumption; emissions inventory; greenhouse gas

Sprache Dokument
Englisch

Publikationsjahr
2018

Seitenangabe
S. 35-51

Zeitschriftentitel
Urban Planning, 3 (2018) 2

Heftthema
Urban Planning to Enable a 1.5 °C Scenario

ISSN
2183-7635

Status
Veröffentlichungsversion; begutachtet (peer reviewed)

Lizenz
Creative Commons - Namensnennung 4.0


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© 2007 - 2025 Social Science Open Access Repository (SSOAR).
Based on DSpace, Copyright (c) 2002-2022, DuraSpace. All rights reserved.