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Can brownfield land be reused for ground source heating to alleviate fuel poverty?

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  • Donaldson, Ross
  • Lord, Richard

Abstract

Brownfield land is a legacy of industrial retraction in many towns and cities worldwide, where land remains vacant long after it has gone into disuse, and is often a barrier to redevelopment. Using this land for renewable energy generation is one option that can support development of a low carbon economy and also stimulate regeneration. Fuel poverty is an increasingly pertinent social issue due to rising energy costs. This is particularly true for space heating, accounting for nearly half of all the energy consumed in North European climates. Addressing fuel poverty has become a key consideration in Scotland's internationally leading renewables policy. This article considers how deployment of renewables on brownfield land can be targeted towards addressing heat poverty in social housing. Using Glasgow as a case study, the quantity of available derelict land is calculated, then the spatial association of social housing and urban brownfield land is demonstrated. Technology options for meeting household heat requirements from brownfield land are presented, including scenarios using vertical or horizontal ground source heat pumps. The results suggest that the available urban land could easily supply the needs of all households in fuel poverty, if this scale of investment and non-market intervention was justified.

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  • Donaldson, Ross & Lord, Richard, 2018. "Can brownfield land be reused for ground source heating to alleviate fuel poverty?," Renewable Energy, Elsevier, vol. 116(PA), pages 344-355.
  • Handle: RePEc:eee:renene:v:116:y:2018:i:pa:p:344-355
    DOI: 10.1016/j.renene.2017.09.037
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    1. Trainer, Ted, 2010. "Can renewables etc. solve the greenhouse problem? The negative case," Energy Policy, Elsevier, vol. 38(8), pages 4107-4114, August.
    2. Rosenbloom, Daniel & Meadowcroft, James, 2014. "Harnessing the Sun: Reviewing the potential of solar photovoltaics in Canada," Renewable and Sustainable Energy Reviews, Elsevier, vol. 40(C), pages 488-496.
    3. Coccia, Charles J.R. & Gupta, Ranjiv & Morris, Jeremy & McCartney, John S., 2013. "Municipal solid waste landfills as geothermal heat sources," Renewable and Sustainable Energy Reviews, Elsevier, vol. 19(C), pages 463-474.
    4. Holland, Robert A. & Scott, Kate & Hinton, Emma D. & Austen, Melanie C. & Barrett, John & Beaumont, Nicola & Blaber-Wegg, Tina & Brown, Gareth & Carter-Silk, Eleanor & Cazenave, Pierre & Eigenbrod, Fe, 2016. "Bridging the gap between energy and the environment," Energy Policy, Elsevier, vol. 92(C), pages 181-189.
    5. Sandifer, Paul A. & Sutton-Grier, Ariana E. & Ward, Bethney P., 2015. "Exploring connections among nature, biodiversity, ecosystem services, and human health and well-being: Opportunities to enhance health and biodiversity conservation," Ecosystem Services, Elsevier, vol. 12(C), pages 1-15.
    6. Clare Bambra & Steve Robertson & Adetayo Kasim & Joe Smith & Joanne Marie Cairns-Nagi & Alison Copeland & Nina Finlay & Karen Johnson, 2014. "Healthy Land? An Examination of the Area-Level Association between Brownfield Land and Morbidity and Mortality in England," Environment and Planning A, , vol. 46(2), pages 433-454, February.
    7. Sandra Alker & Victoria Joy & Peter Roberts & Nathan Smith, 2000. "The Definition of Brownfield," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 43(1), pages 49-69.
    8. Harrison, P.A. & Berry, P.M. & Simpson, G. & Haslett, J.R. & Blicharska, M. & Bucur, M. & Dunford, R. & Egoh, B. & Garcia-Llorente, M. & Geamănă, N. & Geertsema, W. & Lommelen, E. & Meiresonne, L. &, 2014. "Linkages between biodiversity attributes and ecosystem services: A systematic review," Ecosystem Services, Elsevier, vol. 9(C), pages 191-203.
    9. Liddell, Christine & Morris, Chris, 2010. "Fuel poverty and human health: A review of recent evidence," Energy Policy, Elsevier, vol. 38(6), pages 2987-2997, June.
    10. Rentizelas, Athanasios A. & Tolis, Athanasios J. & Tatsiopoulos, Ilias P., 2009. "Logistics issues of biomass: The storage problem and the multi-biomass supply chain," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(4), pages 887-894, May.
    11. Adelaja, Soji & Shaw, Judy & Beyea, Wayne & Charles McKeown, J.D., 2010. "Renewable energy potential on brownfield sites: A case study of Michigan," Energy Policy, Elsevier, vol. 38(11), pages 7021-7030, November.
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