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Cities looking for waste heat: The dilemmas of energy and industry nexuses in French metropolitan areas

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  • Antoine Fontaine

    (National Centre for Scientific Research, EVS, France)

  • Laurence Rocher

    (University Lyon 2, EVS, France)

Abstract

The sharp increase in and volatility of fossil fuel prices, due in particular to the Russian–Ukrainian conflict, is a powerful incentive for cities to accelerate their energy transition. Yet urban authorities have limited power over the construction of energy policies and the management of networks, and they remain dependent on remote and mainly carbon-intensive imported sources of energy. The recovery of waste heat from waste incineration or industrial emissions and its use in heating networks represents a solution for cities to control part of their energy supply, to develop their own capacities for action and to implement local transition strategies, in addition to the development of renewable energies. Based on the analysis of four case studies in France between 2019 and 2022, in the context preceding the current energy crisis, this article examines how cities are trying to develop waste heat recovery and the role this energy resource plays in the decarbonisation of urban energy systems. The analysis highlights that the emergence of these projects is more broadly part of the renegotiation dynamics of energy, ecological and economic relationships between cities and industries, and that their implementation results in the construction of new urban energy nexuses. The use of waste heat makes it possible to improve the energy efficiency of industrial and urban energy systems, sometimes significantly, but it must be seen as a transitional solution because it can temporarily increase cities’ dependency on high-carbon and energy-inefficient industrial activities.

Suggested Citation

  • Antoine Fontaine & Laurence Rocher, 2024. "Cities looking for waste heat: The dilemmas of energy and industry nexuses in French metropolitan areas," Urban Studies, Urban Studies Journal Limited, vol. 61(2), pages 254-272, February.
  • Handle: RePEc:sae:urbstu:v:61:y:2024:i:2:p:254-272
    DOI: 10.1177/00420980231183263
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    References listed on IDEAS

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    1. Unruh, Gregory C., 2002. "Escaping carbon lock-in," Energy Policy, Elsevier, vol. 30(4), pages 317-325, March.
    2. Unruh, Gregory C., 2000. "Understanding carbon lock-in," Energy Policy, Elsevier, vol. 28(12), pages 817-830, October.
    3. Bergmeier, Monika, 2003. "The history of waste energy recovery in Germany since 1920," Energy, Elsevier, vol. 28(13), pages 1359-1374.
    4. Rémi de Bercegol & Shankare Gowda, 2019. "A new waste and energy nexus? Rethinking the modernisation of waste services in Delhi," Urban Studies, Urban Studies Journal Limited, vol. 56(11), pages 2297-2314, August.
    5. Olivier Coutard & Daniel Florentin, 2022. "Resource Ecologies, Urban Metabolisms, and the Provision of Essential Services," Journal of Urban Technology, Taylor & Francis Journals, vol. 29(1), pages 49-58, January.
    6. Laurence Rocher, 2014. "Climate-Energy Policies, Heat Provision, and Urban Planning: A Renewal of Interest in District Heating in France: Insights from National and Local Levels," Journal of Urban Technology, Taylor & Francis Journals, vol. 21(3), pages 3-19, July.
    7. Sabine Barles, 2010. "Society, energy and materials: the contribution of urban metabolism studies to sustainable urban development issues," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 53(4), pages 439-455.
    8. Hodson, Mike & Marvin, Simon, 2010. "Can cities shape socio-technical transitions and how would we know if they were?," Research Policy, Elsevier, vol. 39(4), pages 477-485, May.
    9. Tingey, Margaret & Webb, Janette, 2020. "Governance institutions and prospects for local energy innovation: laggards and leaders among UK local authorities," Energy Policy, Elsevier, vol. 138(C).
    10. Antoine Fontaine & Laurence Rocher, 2021. "Energy recovery on the agenda. Waste heat: a matter of public policy and social science concern," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 64(8), pages 1392-1407, June.
    11. Jochen Monstadt & Olivier Coutard, 2019. "Cities in an era of interfacing infrastructures: Politics and spatialities of the urban nexus," Urban Studies, Urban Studies Journal Limited, vol. 56(11), pages 2191-2206, August.
    12. Bahers, Jean-Baptiste & Tanguy, Audrey & Pincetl, Stephanie, 2020. "Metabolic relationships between cities and hinterland: a political-industrial ecology of energy metabolism of Saint-Nazaire metropolitan and port area (France)," Ecological Economics, Elsevier, vol. 167(C).
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    1. Nie, Rong & Song, Jinbo & Carneiro, Juliana, 2024. "Does emissions data disclosure of Waste-to-Energy incineration plants mitigate NIMBYism concerns? Evidence from the housing market," The Warwick Economics Research Paper Series (TWERPS) 1527, University of Warwick, Department of Economics.

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