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Conceptualising energy prosumption: Exploring energy production, consumption and microgeneration in Scotland, UK

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  • Katherine Ellsworth-Krebs
  • Louise Reid

Abstract

Energy prosumption has become a common phrase as more householders and communities are producing and consuming their own electricity and heat. Prosumption is a combination of two words: production and consumption, and emerged as a concept at a time when consumers were beginning to be more proactive and take over steps traditionally thought of as ‘production’. In many ways, energy prosumption is nothing new (e.g. wood combustion), yet development of our modern energy system has changed the relationships between energy producers and consumers (e.g. smart meters, renewable energy production). Thus, there is a growing body of research interested in the motivation and conditions for the uptake of microgeneration technologies and the implications to energy infrastructures and big energy producers. However, this ‘energy prosumption’ scholarship generally lacks a strong conceptual foundation and misses the opportunity to build on existing prosumption literature and related debates. This paper brings the wealth of literature on prosumption into the energy context and reflects on the insights offered by a prosumption lens. Our study explores a particular manifestation of prosumption – when a household is simultaneously a producer and consumer of their heat and/or electricity via microgeneration – and we present data from semi-structured interviews with 28 households living with microgeneration technologies in Scotland, UK. Thus, we provide a robust framework from which future research on household and community energy prosumption can build.

Suggested Citation

  • Katherine Ellsworth-Krebs & Louise Reid, 2016. "Conceptualising energy prosumption: Exploring energy production, consumption and microgeneration in Scotland, UK," Environment and Planning A, , vol. 48(10), pages 1988-2005, October.
  • Handle: RePEc:sae:envira:v:48:y:2016:i:10:p:1988-2005
    DOI: 10.1177/0308518X16649182
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    References listed on IDEAS

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    1. Connor, Peter M. & Xie, Lei & Lowes, Richard & Britton, Jessica & Richardson, Thomas, 2015. "The development of renewable heating policy in the United Kingdom," Renewable Energy, Elsevier, vol. 75(C), pages 733-744.
    2. Pillai, Gobind G. & Putrus, Ghanim A. & Georgitsioti, Tatiani & Pearsall, Nicola M., 2014. "Near-term economic benefits from grid-connected residential PV (photovoltaic) systems," Energy, Elsevier, vol. 68(C), pages 832-843.
    3. Aune, Margrethe, 2007. "Energy comes home," Energy Policy, Elsevier, vol. 35(11), pages 5457-5465, November.
    4. Reeve, Ian & Scott, John & Hine, Donald W. & Bhullar, Navjot, 2013. "“This is not a burning issue for me”: How citizens justify their use of wood heaters in a city with a severe air pollution problem," Energy Policy, Elsevier, vol. 57(C), pages 204-211.
    5. Smith, Adrian & Kern, Florian & Raven, Rob & Verhees, Bram, 2014. "Spaces for sustainable innovation: Solar photovoltaic electricity in the UK," Technological Forecasting and Social Change, Elsevier, vol. 81(C), pages 115-130.
    6. Sauter, Raphael & Watson, Jim, 2007. "Strategies for the deployment of micro-generation: Implications for social acceptance," Energy Policy, Elsevier, vol. 35(5), pages 2770-2779, May.
    7. Hargreaves, Tom & Nye, Michael & Burgess, Jacquelin, 2010. "Making energy visible: A qualitative field study of how householders interact with feedback from smart energy monitors," Energy Policy, Elsevier, vol. 38(10), pages 6111-6119, October.
    8. Louise Anne Reid & Donald Houston, 2013. "Low Carbon Housing: A 'Green' Wolf in Sheep's Clothing?," Housing Studies, Taylor & Francis Journals, vol. 28(1), pages 1-9, January.
    9. Balcombe, Paul & Rigby, Dan & Azapagic, Adisa, 2014. "Investigating the importance of motivations and barriers related to microgeneration uptake in the UK," Applied Energy, Elsevier, vol. 130(C), pages 403-418.
    10. Chaudry, Modassar & Abeysekera, Muditha & Hosseini, Seyed Hamid Reza & Jenkins, Nick & Wu, Jianzhong, 2015. "Uncertainties in decarbonising heat in the UK," Energy Policy, Elsevier, vol. 87(C), pages 623-640.
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    2. Bertsch, Valentin & Geldermann, Jutta & Lühn, Tobias, 2017. "What drives the profitability of household PV investments, self-consumption and self-sufficiency?," Applied Energy, Elsevier, vol. 204(C), pages 1-15.
    3. Cambini, Carlo & Soroush, Golnoush, 2019. "Designing grid tariffs in the presence of distributed generation," Utilities Policy, Elsevier, vol. 61(C).
    4. Kirsi Kotilainen & Ulla A. Saari, 2018. "Policy Influence on Consumers’ Evolution into Prosumers—Empirical Findings from an Exploratory Survey in Europe," Sustainability, MDPI, vol. 10(1), pages 1-22, January.

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