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Robert H Crawford

Biographic Data

ID6772033
NAMERobert H Crawford
GIVEN NAMESRobert H
FAMILY NAMECrawford
SIGNATURECRAWFORD R H
AFFILIATIONSThe University of Melbourne
ORCID0000-0002-0189-3221
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS2
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2011
LATEST PUBLICATION YEAR2024
H-INDEX1
  • Circular life cycle sustainability assessment: An integrated framework

    Open Access•Anna Luthin, Marzia Traverso et al.•ARTICLE•Journal of Industrial Ecology•2024

    Robust monitoring and assessment methods are required to assess circular economy (CE) concepts in terms of their degree of circularity and their contribution to sustainability. This research aimed to develop an integrated framework for the CE context—considering both the technical circularity and the complexity of the three dimensions of sustainability (environment, economy, and social). Two existing methods were identified as an appropriate foun…

  • Towards a multiscale framework for modeling and improving the life cycle environmental performance of built stocks

    Open Access•André Stephan, Robert H Crawford et al.•ARTICLE•Journal of Industrial Ecology•2022

    Cities are complex sociotechnical systems, of which buildings and infrastructure assets (built stocks) constitute a critical part. As the main global users of primary energy and emitters of associated greenhouse gases, there is a need for the introduction of measures capable of enhancing the environmental performance of built stocks in cities and mitigating negative externalities such as pollution and greenhouse gas emissions. To date, most envir…

  • Integrating life-cycle GHG emissions into a building’s economic evaluation

    Open Access•Monique Schmidt, Robert H Crawford et al.•ARTICLE•Buildings and Cities•2020•References: 2

    Buildings contribute to greenhouse gas (GHG) emissions throughout their life—from material extraction and production to building demolition and disposal. Current GHG emission reduction efforts largely focus on building operation, typically ignoring embodied emissions. One of the main barriers affecting the uptake of embodied GHG emissions considerations is the uncertainty related to the economic value of a building with reduced life-cycle GHG emi…

  • Towards a Dynamic Approach to Urban Metabolism: Tracing the Temporal Evolution of Brussels’ Urban Metabolism from 1970 to 2010

    Open Access•Aristide Athanassiadis, Philippe Bouillard et al.•ARTICLE•Journal of Industrial Ecology•2017

    Urban metabolism (UM) is a way of characterizing the flows of materials and energy through and within cities. It is based on a comparison of cities to living organisms, which, like cities, require energy and matter flows to function and which generate waste during the mobilization of matter. Over the last 40 years, this approach has been applied in numerous case studies. Because of the data‐intensive nature of a UM study, however, this methodolog…

  • Impact of past and future residential housing development patterns on energy demand and related emissions

    Open Access•Robert J Fuller, Robert H Crawford•ARTICLE•Journal of Housing and the Built…•2011•Cited by: 2

  • Impact of past and future residential housing development patterns on energy demand and related emissions

    Open Access•Robert J Fuller, Robert H Crawford•ARTICLE•Journal of Housing and the Built…•2011•Cited by: 2

  • Impact of past and future residential housing development patterns on energy demand and related emissions

    Open Access•Robert J Fuller, Robert H Crawford•ARTICLE•Journal of Housing and the Built…•2011•Cited by: 2

  • Towards a Dynamic Approach to Urban Metabolism: Tracing the Temporal Evolution of Brussels’ Urban Metabolism from 1970 to 2010

    Open Access•Aristide Athanassiadis, Philippe Bouillard et al.•ARTICLE•Journal of Industrial Ecology•2017

    Urban metabolism (UM) is a way of characterizing the flows of materials and energy through and within cities. It is based on a comparison of cities to living organisms, which, like cities, require energy and matter flows to function and which generate waste during the mobilization of matter. Over the last 40 years, this approach has been applied in numerous case studies. Because of the data‐intensive nature of a UM study, however, this methodolog…

  • Integrating life-cycle GHG emissions into a building’s economic evaluation

    Open Access•Monique Schmidt, Robert H Crawford et al.•ARTICLE•Buildings and Cities•2020•References: 2

    Buildings contribute to greenhouse gas (GHG) emissions throughout their life—from material extraction and production to building demolition and disposal. Current GHG emission reduction efforts largely focus on building operation, typically ignoring embodied emissions. One of the main barriers affecting the uptake of embodied GHG emissions considerations is the uncertainty related to the economic value of a building with reduced life-cycle GHG emi…

  • Towards a multiscale framework for modeling and improving the life cycle environmental performance of built stocks

    Open Access•André Stephan, Robert H Crawford et al.•ARTICLE•Journal of Industrial Ecology•2022

    Cities are complex sociotechnical systems, of which buildings and infrastructure assets (built stocks) constitute a critical part. As the main global users of primary energy and emitters of associated greenhouse gases, there is a need for the introduction of measures capable of enhancing the environmental performance of built stocks in cities and mitigating negative externalities such as pollution and greenhouse gas emissions. To date, most envir…

  • Circular life cycle sustainability assessment: An integrated framework

    Open Access•Anna Luthin, Marzia Traverso et al.•ARTICLE•Journal of Industrial Ecology•2024

    Robust monitoring and assessment methods are required to assess circular economy (CE) concepts in terms of their degree of circularity and their contribution to sustainability. This research aimed to develop an integrated framework for the CE context—considering both the technical circularity and the complexity of the three dimensions of sustainability (environment, economy, and social). Two existing methods were identified as an appropriate foun…

Environmental Impact and Sustainability (5 works) · Economics (4 works) · Environmental Science (4 works) · Business (3 works) · Computer Science (3 works) · Ecology (3 works) · Engineering (3 works) · Environmental economics (3 works) · Geography (3 works) · Greenhouse gas (3 works)

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