Climate target fulfilment in scenarios for a sustainable Swedish built environment beyond growth

Futures - Tập 98 - Trang 1-18 - 2018
Nicolas Francart1, Tove Malmqvist1, Pernilla Hagbert1
1KTH Royal Institute of Technology, Kungliga Tekniska Högskolan, SE-100 44 Stockholm Sweden

Tài liệu tham khảo

Åkerman, 2007 Anderson, 2011, Beyond dangerous climate change: Emission scenarios for a new world. Philosophical Transactions of the Royal Society − Series A: Mathematical, Physical and Engineering Sciences, 369, 20, 10.1098/rsta.2010.0290 Anderson, 2008, The tyndall decarbonisation scenarios—Part II: Scenarios for a 60% CO2 reduction in the UK, Energy Policy, 36, 3764, 10.1016/j.enpol.2008.06.002 Angelstam, 2010 Ashina, 2010, Japan roadmaps toward low-carbon society by backcasting: Optimal CO 2 reduction pathways and investment timing for low-carbon technologies, Journal of Renewable and Sustainable Energy, 2, 10.1063/1.3298020 Boverket, 2014 Brown, 2014, Embodied greenhouse gas emissions from refurbishment of residential building stock to achieve a 50% operational energy reduction, Building and Environment, 79, 46, 10.1016/j.buildenv.2014.04.018 Chatterton, 2013, Towards an agenda for post-carbon cities: Lessons from lilac, the uk’s first ecological, affordable cohousing community, International Journal of Urban and Regional Research, 37, 1654, 10.1111/1468-2427.12009 D’Alisa, 2014 Dennehy, 2013 Doyle, 2013, Towards sustainable household consumption: Exploring a practice oriented, participatory backcasting approach for sustainable home heating practices in Ireland, Journal of Cleaner Production, 48, 260, 10.1016/j.jclepro.2012.12.015 Dreborg, 1996, Essence of backcasting, Futures, 28, 813, 10.1016/S0016-3287(96)00044-4 Egnell, 2011, Perspectives on the potential contribution of Swedish forests to renewable energy targets in Europe, Forests, 2, 578, 10.3390/f2020578 Eriksson, 2009, Plastic waste as a fuel − CO2-neutral or not?, Energy & Environmental Science, 2, 907, 10.1039/b908135f European Commission, 2011 Fauré, 2016, Four sustainability targets in a Swedish low-growth or degrowth context, Sustainability, 8 Fujino, 2008, Back-casting analysis for 70% emission reduction in Japan by 2050, Climate Policy, 8, 108, 10.3763/cpol.2007.0491 Göransson, 2006 Gode, 2011 Gomi, 2011, A systematic quantitative backcasting on low-carbon society policy in case of Kyoto city, Technological Forecasting and Social Change, 78, 852, 10.1016/j.techfore.2011.01.002 Gustavsson, 2011 Höjer, 2011, Vol. 17, 37 Hanski, 2011, Habitat loss, the dynamics of biodiversity, and a perspective on conservation, Ambio, 40, 248, 10.1007/s13280-011-0147-3 Hille, 2011 International Energy Agency, 2016 Larsson, 2016 Liljenström, 2016, Resource use and greenhouse gas emissions of office fit-outs –a case study, 22 Liljenström, 2015 Michaels, 2008, Bringing the vision to life: Will advances in energy communication create a significant resource strategy? Moomaw, 2011, Annex II: Methodology Nugent, 2014, Assessing the lifecycle greenhouse gas emissions from solar PV and wind energy: A critical meta-survey, Energy Policy, 65, 229, 10.1016/j.enpol.2013.10.048 Oliver-Solà, 2010, Prosperity without Growth? −The transition to a sustainable economy, Journal of Cleaner Production, 18, 596, 10.1016/j.jclepro.2009.07.001 Rahimi, 2009, Crafting Technologies − Mansour Rahimi, Mahdi Arhami and Behrokh Khoshnevis analyse the environmental impact of contour crafting technology as compared to that of concrete masonry units, Times Jourmal of Construction and Design, 30 Raworth, 2012, A safe and just space for humanity: Can we live within the doughnut?, Nature, 461, 1 Reich, 2011, Greenhouse gas emissions associated with photovoltaic electricity from crystalline silicon modules under various energy supply options, Progress in Photovoltaics: Research and Applications, 19, 603, 10.1002/pip.1066 Robinson, 1990, Futures under glass. A recipe for people who hate to predict, Futures, 22, 820, 10.1016/0016-3287(90)90018-D Rockström, 2009, Planetary boundaries:exploring the safe operating space for humanity, Ecology and Society, 14, 32, 10.5751/ES-03180-140232 Seyfang, 2010, Community action for sustainable housing: Building a low-carbon future, Energy Policy, 38, 7624, 10.1016/j.enpol.2009.10.027 Statistics Sweden, 2012 Statistics Sweden, 2015 Steffen, 2015, Planetary boundaries: Guiding human development on a changing planet, Science (New York, N.Y.), 348, 1217 Strachan, 2008, The role of international drivers on UK scenarios of a low-carbon society, Climate Policy, 8, 125, 10.3763/cpol.2007.0489 Svenfelt, 2011, Decreasing energy use in buildings by 50% by 2050 − A backcasting study using stakeholder groups, Technological Forecasting and Social Change, 78, 785, 10.1016/j.techfore.2010.09.005 Svenfelt, Å., Alfredsson, E., Aretun, Å., Bradley, K., Fauré, E., Fuehrer, P., … Stigson, P. (2015). Bortom BNP-tillväxt Scenarier för hållbart samhällsbyggande. https://doi.org/TRITA-INFRA-FMS 2015:05. KTH, Stockholm. Swedish Energy Agency, 2010 Swedish Energy Agency, 2015 Swedish Energy Agency, 2015 Swedish Energy Agency, 2015 Swedish Energy Agency, 2015 Swedish Environmental Protection Agency, 2010 Swedish Environmental Protection Agency, 2012 Swedish Environmental Protection Agency, 2017 Swedish Forestry Agency, 2016 Toller, 2011, Energy use and environmental impacts of the Swedish building and real estate management sector, J. Ind. Ecol., 15, 394, 10.1111/j.1530-9290.2011.00340.x UN, 2015 World Bank, 2014 Xue, 2014, Is eco-village/urban village the future of a degrowth society? An urban planner’s perspective, Ecological Economics, 105, 130, 10.1016/j.ecolecon.2014.06.003 Zimmermann, J. P. (2009). End-use metering campaign in 400 households In Sweden Assessment of the Potential Electricity Savings. Contract, 17(September), 5–2743. https://doi.org/Contract 17-05-2743.