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100% Renewables as a Focus for Environmental Education

Published online by Cambridge University Press:  18 March 2013

William Adlong*
Affiliation:
School of Education, Charles Sturt University, Wagga Wagga, New South Wales, Australia
*
Address for correspondence: William Adlong, School of Education, Charles Sturt University, Locked Bag 588, Wagga Wagga NSW 2678Australia. Email: wadlong@csu.edu.au

Abstract

The rapid development of renewable energy technologies has a number of implications for environmental educators and educators more generally. The costs of a number of renewable energy technologies are expected to be competitive with fossil fuels within 10–15 years and some installations are competitive already. From 2006–2011 global installations increased an average of 26% per annum for wind power and 58% per annum for solar photovoltaics (REN21, 2012). Investment in renewables (excluding hydropower) has increased by 20–30% per annum, reaching $US260 billion (AUD 245 billion) in 2011. The credibility of proposals for economies based largely on renewables is gaining recognition. These developments suggest that a satisfactory response to the dire projections around climate change can be implemented. To do so, understanding of the potential and status of renewables needs to be more widespread and accelerated on formal, informal and policy-making levels. Environmental educators within formal and informal settings can promote understanding and action so that the potential of such renewable energies is realised.

Type
Feature Articles
Copyright
Copyright © The Authors 2013

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References

Australian Energy Market Commission (AEMC). (2011). Possible future retail electricity price movements: 1 July 2011 to 30 June 2014 (Final report). Sydney, Australia. Retrieved from http://www.aemc.gov.au/market-reviews/completed/possible-future-retail-electricity-price-movements-1-july-2011-to-30-june-2014.htmlGoogle Scholar
Albion, K. (2012, 23 May). Explaining the Clean Energy Finance Corporation. Melbourne, Australia: Australian Youth Climate Coalition. Retrieved from http://aycc.org.au/2012/05/23/cefc/Google Scholar
Anderson, C. (2011). Q & A: Bill Gates on the world's energy crisis. Wired Magazine. Retrieved from http://www.wired.com/magazine/2011/06/mf_qagates/all/1Google Scholar
Australian Government. (2012). Clean energy future: An overview of the clean energy legislative package. Retrieved from http://www.cleanenergyfuture.gov.au/wp-content/uploads/2012/05/CEF-overview_Apr2012.pdfGoogle Scholar
Banksia Environmental Foundation. (2009). Winners & finalists. Melbourne, Australia. Retrieved from http://www.banksiafdn.com/the-awards/43/137.htmlGoogle Scholar
Banksia Environmental Foundation. (2010). Winners & finalists. Melbourne, Australia. Retrieved from http://www.banksiafdn.com/the-awards/43/183.htmlGoogle Scholar
Banksia Environmental Foundation. (2011). Winners & finalists. Melbourne, Australia. Retrieved from http://www.banksiafdn.com/the-awards/43/215.htmlGoogle Scholar
Bazilian, M., IjeomaOnyeji, Liebreich, M., MacGill, I., Chase, J., Shah, J., . . . Zhengrong, S. (2012). Reconsidering the economics of photovoltaic power. Retrieved from http://www.bnef.com/WhitePapers/download/82Google Scholar
Berger, P.L., & Luckmann, T. (1966). The social construction of reality: A treatise in the sociology of knowledge. London: Doubleday.Google Scholar
Beyond Zero Emissions (BZE). (2010). Zero Carbon Australia stationary energy plan. Beyond zero emissions (lead authors Wright, M., & Hearps, P.). Melbourne, Australia: Energy Institute, University of Melbourne. Retrieved from http://media.beyondzeroemissions.org/ZCA2020_Stationary_Energy_Report_v1.pdfGoogle Scholar
Beyond Zero Emissions (BZE). (2012). Repowering Port Augusta: A blueprint to replace Northern and Playford B coal power stations with renewable energy. Beyond Zero Emissions. Retrieved from http://media.beyondzeroemissions.org/Repowering_PortAugusta.pdfGoogle Scholar
Birdsall, S. (2010). Empowering students to act: Learning about, through and from the nature of action. Australian Journal of Environmental Education, 26, 6584.CrossRefGoogle Scholar
Bloomberg New Energy Finance (BNEF). (2011a). Solar energy hardware prices plunge (media release). Retrieved from http://bnef.com/PressReleases/view/155Google Scholar
Bloomberg New Energy Finance (BNEF). (2011b). Onshore wind energy to reach parity with fossil‐fuel electricity by 2016. Retrieved from http://bnef.com/Downloads/pressreleases/172/pdffile/Google Scholar
Bloomberg New Energy Finance (BNEF). (2012). Solar surge drives record clean energy investment in 2011. Retrieved from http://bnef.com/Downloads/pressreleases/180/pdffile/Google Scholar
Bollinger, B., & Gillingham, K. (2011). Peer effects in the diffusion of solar photovoltaic panels. Retrieved from http://www.yale.edu/gillingham/BollingerGillingham_PeerEffectsSolar.pdfGoogle Scholar
Bony, L., Doig, S., Hart, C., Maurer, E., & Newman, S. (2010). Achieving low-cost solar PV: Industry workshop recommendations for near-term balance of system cost reductions. Boulder, CO: Rocky Mountain Institute. Retrieved from http://www.rmi.org/Content/Files/BOSReport.pdfGoogle Scholar
Branker, K., Pathak, M.J.M., & Pearce, J.M. (2011). A review of solar photovoltaic levelized cost of electricity. Renewable and Sustainable Energy Reviews, 15 (9), 44704482.CrossRefGoogle Scholar
Bray, A., & Soutar, L. (2012, 30 May). Vita-Weats, green tea and real democracy. Sydney, Australia: 100% Renewables. Retrieved from http://100percent.org.au/blogs/vita-weats-green-tea-and-real-democracyGoogle Scholar
Clean Energy Council (CEC). (2011). Clean energy Australia report. Melbourne, Australia. Retrieved from http://www.cleanenergycouncil.org.au/cec/resourcecentre/reports/cleanenergyaustraliaGoogle Scholar
Clean Energy Finance Corporation (CEFC). (2012). Clean Energy Finance Corporation expert review: Report to government (March 2012). Canberra, Australia. Retrieved from http://www.cefcexpertreview.gov.au/content/report/downloads/CEFC_report.pdfGoogle Scholar
Commonwealth Scientific and Industrial Research Organisation (CSIRO). (2011). Unlocking Australia's energy potential. Newcastle, Australia: CSIRO Energy Transformed Flagships. Retrieved from http://www.ret.gov.au/energy/Documents/Unlocking_Australias_Energy_Potential.pdfGoogle Scholar
Clean Technology Fund (CTF). (2009a). Clean Technology Fund: Concept note for a concentrated solar power scale-up program in the Middle East and North Africa region. Washington, DC: Climate Investment Funds. Retrieved from http://www.climateinvestmentfunds.org/cif/sites/climateinvestmentfunds.org/files/CSPConceptNoteApril27.pdfGoogle Scholar
Clean Technology Fund (CTF). (2009b). Investment plan for concentrated solar power in the Middle East and North Africa region. Washington, DC: Climate Investment Funds. Retrieved from http://siteresources.worldbank.org/INTCC/Resources/mna_csp_ctf_investment_plan_111009.pdfGoogle Scholar
Cunliffe, A.L. (2008). Orientations to social constructionism: Relationally responsive social constructionism and its implications for knowledge and learning. Management Learning, 39 (2), 123139.CrossRefGoogle Scholar
Curran, G. (2009). Ecological modernisation and climate change in Australia. Environmental Politics, 18 (2), 201217.CrossRefGoogle Scholar
Delucchi, M.A., & Jacobson, M.Z. (2010). Providing all global energy with wind, water, and solar power, Part II: Reliability, system and transmission costs, and policies. Energy Policy, 39 (3), 11701190.CrossRefGoogle Scholar
Denholm, P., & Mehos, M. (2011). Enabling greater penetration of solar power via the use of CSP with thermal energy storage. Washington, DC: National Renewable Energy Laboratories. Retrieved from http://www.nrel.gov/docs/fy12osti/52978.pdfCrossRefGoogle Scholar
Department of Climate Change and Energy Efficiency (DCEE). (2010). Report of the Prime Minister's Task Group on Energy Efficiency. Canberra, Australia. Retrieved from http://www.climatechange.gov.au/~/media/submissions/pm-taskforce/report-prime-minister-task-group-energy-efficiency.pdfGoogle Scholar
Department of Environment, Water, Heritage and the Arts (DEWHA). (2009). Living sustainably: The Australian Government's National Action Plan for Education for Sustainability. Canberra, Australia. Retrieved from http://www.environment.gov.au/education/publications/pubs/national-action-plan.pdfGoogle Scholar
Diesendorf, M. (2011). A cheaper path to 100% renewables. Climate Spectator. Melbourne, Australia: Business Spectator Pty Ltd. Retrieved from http://www.climatespectator.com.au/commentary/cheaper-path-100-renewablesGoogle Scholar
Doherty, T.J., & Clayton, S. (2011). The psychological impacts of global climate change. American Psychologist, 66 (4), 265.CrossRefGoogle ScholarPubMed
Dunn, R., Hearps, P., & Wright, M. (2012). Molten-salt power towers: Newly commercial concentrating solar storage. Proceedings of the IEEE (Institute of Electrical and Electronics Engineers), 100 (2), 504515.CrossRefGoogle Scholar
Dyer, A., & BrightSource, . (2011, October). Ivanpah — Project update. Paper presented at the All Energy Australia Conference, Melbourne, Australia. Retrieved from http://www.all-energy.com.au/userfiles/file/Andrew-Dyer-121011.pdfGoogle Scholar
Electric Power Research Institute EPRI. (2012). Program on technology innovation: Integrated generation technology options. Inwood, S. & Hutchinson, J., Principal Investigators. Palo Alto, CA. Retrieved from http://my.epri.com/portal/server.pt?Abstract_id=000000000001019539Google Scholar
Elliston, B., Diesendorf, M., & MacGill, I. (2012). Simulations of scenarios with 100% renewable electricity in the Australian National Electricity Market. Energy Policy, 45, 606613.CrossRefGoogle Scholar
Energy Efficiency and Renewable Energy EERE. (2010a). Draft — Solar vision study: Executive summary. Washington, DC: Solar Energy Technologies Program, U.S. Department of Energy (DOE). Retrieved 12 February, 2012 from http://www1.eere.energy.gov/solar/pdfs/svs_executive_summary.pdfGoogle Scholar
Energy Efficiency and Renewable Energy EERE. (2010b). $1/W photovoltaic systems white paper to explore a grand challenge for electricity from solar. Washington, DC: Advanced Research Projects Agency, U.S. Department of Energy. Retrieved from http://www1.eere.energy.gov/solar/sunshot/pdfs/dpw_white_paper.pdfGoogle Scholar
Energy Efficiency and Renewable Energy EERE. (2011). SunShot initiative: Cost-competitve solar energy. Washington, DC: U.S. Department of Energy. Retrieved 12 December, 2012, from http://www1.eere.energy.gov/solar/sunshot/about.htmlGoogle Scholar
Energy Information Administration EIA. (2010). Updated capital cost estimates for electricity generation plants. Washington, DC: U.S. Department of Energy. Retrieved from http://www.eia.gov/oiaf/beck_plantcosts/pdf/updatedplantcosts.pdfGoogle Scholar
European Academies Science Advisory Council EASAC. (2011). Concentrating solar power: its potential contribution to a sustainable energy future. Halle, Germany. Retrieved from http://www.easac.eu/fileadmin/Reports/Easac_CSP_Web-Final.pdfGoogle Scholar
European Commission EC. (2011). A roadmap for moving to a competitive low carbon economy in 2050. Brussels. Retrieved from http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=COM:2011:0112:FIN:EN:PDFGoogle Scholar
European Concentrated Solar Thermal Road-Mapping ECOSTAR. (2005). European concentrated solar thermal road-mapping — Full report. Retrieved from http://www.solarpaces.org/Library/docs/ECOSTAR_Roadmap_Document.pdfGoogle Scholar
European Wind Energy Association EWEA. (2010). Wind energy and electricity prices: Exploring the ‘merit order effect’ (A literature review by Pöyry for the European Wind Energy Association) Brussels. Retrieved from http://www.ewea.org/fileadmin/ewea_documents/documents/publications/reports/MeritOrder.pdfGoogle Scholar
Gergen, K.J., McNamee, S., & Barrett, F.J. (2001). Toward transformative dialogue. International Journal of Public Administration, 24 (7), 679707.CrossRefGoogle Scholar
Habermas, J. (1987). The theory of communicative action, Vol. 2, Lifeworld and system: A critique of functionalist reason. Oxford, UK: Polity.Google Scholar
Habermas, J. (1996). Civil society and the public sphere. In Between facts and norms: Contributions to a discourse theory of law and democracy (pp. 329387). Cambridge: Polity.CrossRefGoogle Scholar
Habermas, J. (1997). The public sphere. In Goodin, R.E. & Pettit, P. (Eds.), Contemporary political philosophy: An anthology (pp. 105108). Oxford, UK: Blackwell.Google Scholar
Habermas, J. (2003). Truth and justification. Cambridge, MA: MIT Press.Google Scholar
Hansard. 1943. House of Commons rebuilding. Government of the United Kingdom: United Kingdom Parliament. Retrieved from http://hansard.millbanksystems.com/commons/1943/oct/28/house-of-commons-rebuildingGoogle Scholar
Hansen, J., Sato, M., Kharecha, P., Beerling, D., Berner, R., Masson-Delmotte, V., . . . Zachos, J.C. (2008). Target atmospheric CO2: Where should humanity aim? Open Atmospheric Science Journal, 2, 217231.CrossRefGoogle Scholar
Hayward, J.A., Graham, P.W., & Campbell, P.K. (2011). Projections of the future costs of electricity generating technologies: An application of CSIRO's Global and Local Learning Model (GALLM). Melbourne, Australia: CSIRO. Retrieved from http://www.csiro.au/resources/GALLM-report.htmlGoogle Scholar
Hearps, P., & McConnell, D. (2011). Renewable energy technology cost review, Melbourne Energy Institute. Retrieved from http://energy.unimelb.edu.au/index.php?page=technical-publication-seriesGoogle Scholar
Independent Pricing and Regulatory Tribunal IPART. (2012). Changes in regulated electricity retail prices from 1 July 2012: Final report. Independent Pricing and Regulatory Tribunal. Retrieved from http://www.ipart.nsw.gov.au/files/a73eff3a-91ba-4150-b90d-a06f00a603a2/Final_Report_-_Changes_in_regulated_electricity_retail_prices_from_1_July_2012.pdfGoogle Scholar
International Energy Agency IEA. (2009). Technology roadmap — Wind energy. Chandler, H., Paris. Retrieved from http://www.ieawind.org/wnd_info/IEA_Paris/Wind_Roadmap.pdfGoogle Scholar
International Energy Agency IEA. (2010a). Technology roadmap: Solar PV energy. Paris. Retrieved from http://www.iea.org/papers/2010/pv_roadmap.pdfGoogle Scholar
International Energy Agency IEA. (2010b). Technology roadmap: Concentrating solar power. Philibert, C., Paris. Retrieved from http://www.iea.org/papers/2010/csp_roadmap.pdfGoogle Scholar
International Energy Agency IEA. (2011a). Renewable energy policy considerations for deploying renewables. Müller, S., Brown, A. & Ölz, S., Paris. Retrieved from http://www.iea.org/papers/2011/Renew_Policies.pdfGoogle Scholar
International Energy Agency IEA. (2011b). Deploying renewables — Executive summary. Paris. Retrieved from http://www.iea.org/Textbase/npsum/DeployRenew2011SUM.pdfGoogle Scholar
International Energy Agency IEA. (2011c). Interactions of policies for renewable energy and climate. Philibert, C., Paris. Retrieved from http://www.iea.org/papers/2011/interactions_policies.pdfGoogle Scholar
International Energy Agency IEA. (2011d). Renewable energy: Markets and prospects by technology. Brown, A., Müller, S. & Dobrotková, Z., Paris. Retrieved from http://www.iea.org/papers/2011/Renew_Tech.pdfGoogle Scholar
Intergovernmental Panel on Climate Change IPCC. (2011). IPCC special report on renewable energy sources and climate change mitigation. Madruga, R.P., Edenhofer, O., & Sokona, Y. (Eds.). Cambridge, United Kingdom. Retrieved from http://www.ipcc.ch/pdf/special-reports/srren/srren_full_report.pdfGoogle Scholar
Jablonski, S., Tarhini, M., Touati, M., Gonzalez Garcia, D., & Alario, J. (2012). The Mediterranean Solar Plan: Project proposals for renewable energy in the Mediterranean Partner Countries region. Energy Policy, 44 (0), 291300.CrossRefGoogle Scholar
Jacobson, M., Colella, W., & Golden, D. (2005). Cleaning the air and improving health with hydrogen fuel-cell vehicles. Science, 308 (5730), 19011905.CrossRefGoogle ScholarPubMed
Jacobson, M.Z., & Delucchi, M.A. (2010). Providing all global energy with wind, water, and solar power, Part I: Technologies, energy resources, quantities and areas of infrastructure, and materials. Energy Policy, 39 (3), 11541169.CrossRefGoogle Scholar
Jickling, B. (2003). Environmental education and environmental advocacy: Revisited. Journal of Environmental Education, 34 (2), 2027.CrossRefGoogle Scholar
Jickling, B. (2010). Reflecting on the 5th World Environmental Education Congress, Montreal, 2009. Journal of Education for Sustainable Development, 4 (1), 2536.CrossRefGoogle Scholar
Kefford, R.F. (2006). Medical heat for climate change. Medical Journal of Australia, 184 (1), 582.CrossRefGoogle ScholarPubMed
Kemmis, S. (2006). Participatory action research and the public sphere. Educational Action Research, 14 (4), 459476.CrossRefGoogle Scholar
Kemmis, S., & McTaggart, R. (2005). Participatory action research: Communicative action and the public sphere. In Denzin, N. & Lincoln, Y. (Eds.), The Sage handbook of qualitative research (3rd ed., pp. 559603). Thousand Oaks: Sage.Google Scholar
Kolb, G., Ho, C., Mancini, T., & Gary, J. (2011). Power tower technology roadmap and cost reduction plan, Sandia National Laboratories for the U.S. Department of Energy. Retrieved from http://prod.sandia.gov/techlib/access-control.cgi/2011/112419.pdfGoogle Scholar
Lacey, S. (2011). Solar gets cheap fast. Grist. Retrieved from http://grist.org/solar-power/2011-06-09-solar-getting-cheaper-fast/Google Scholar
Laird, J. (2011). PV's falling costs: In the U.S., the DOE is pioneering research in order to reduce the cost of installed PV to below a dollar-per-Watt by 2017. Renewable Energy Focus, 12 (2), 5256.CrossRefGoogle Scholar
Lawrence, P. (2009). Australian climate policy and the Asia Pacific partnership on clean development and climate (APP). From Howard to Rudd: continuity or change? Int Environ Agreements, 9, 281299.CrossRefGoogle Scholar
Lovei, L., & Walters, J. (2010, October). Global climate finance: Supporting concentrated solar power (CSP) scale-up in MENA. Presentation at the DII Annual Conference 2010 ‘Energy from the Desert’ Barcelona. Retrieved from http://www.dii-eumena.com/fileadmin/Daten/files/Lovei_Laszlo_Dii_Conf_2010.pdfGoogle Scholar
Makower, J., Pernick, R., & Wilder, C. (2009). Clean energy trends 2009. Clean Edge. Retrieved from http://www.cleanedge.com/sites/default/files/Trends2009.pdf?attachment=trueGoogle Scholar
Mathiesen, B.V., Lund, H., & Karlsson, K. (2011). 100% Renewable energy systems, climate mitigation and economic growth. Applied Energy, 88 (2), 488501.CrossRefGoogle Scholar
Mills, A., & Wiser, R. (2010). Implications of wide-area geographic diversity for short-term variability of solar power, Lawrence Berkeley National Laboratory. Retrieved from http://eetd.lbl.gov/ea/emp/reports/lbnl-3884e.pdfGoogle Scholar
Mills, G., Passey, R., Watt, M., Franklin, S., Bruce, A., & Johnson, W. (2011). Modelling of PV & electricity prices in the Australian residential sector. APVA — Australian Photovoltaic Association, with support of ASI — Australian Solar Initiative. Retrieved from http://www.apva.org.au/sites/default/files/documents/APVA%20Reports/Residential%20Sector%20Modelling%20of%20PV%20and%20Electricity%20Prices%20-%20APVA%20Nov%202011.pdfGoogle Scholar
Mills, G., Passey, R., Watt, M., Franklin, S., Bruce, A., & Johnson, W. (2011). Modelling of PV and electricity prices in the Australian commercial sector. APVA — Australian photovoltaic Assocation, with support of ASI (Australian Solar Initiative). Retrieved from http://www.apva.org.au/sites/default/files/documents/APVA%20Reports/Commercial%20Sector%20Modelling%20of%20PV%20and%20Electricity%20Prices%20-%20APVA%20Nov%202011.pdfGoogle Scholar
Mukwaya, P. (2011, April). Solar power prospects in North Africa's Sahara desert. Backgrounder, No. 4. Retrieved from http://dspace.cigilibrary.org/jspui/bitstream/123456789/31061/1/Backgrounder%20No.%204.pdf?1Google Scholar
National Renewable Energy Laboratory NREL. (2011). Ivanpah solar electric generating station. Washington, DC. Retrieved from http://www.nrel.gov/csp/solarpaces/project_detail.cfm/projectID=62Google Scholar
Parkinson, G. (2011). Is baseload power necessary? Climate Spectator. Retrieved from http://www.climatespectator.com.au/commentary/renewable-energy-baseload-power-David-Mills-solar-windGoogle Scholar
Parkinson, G. (2011). Why we won't need coal. Climate Spectator. Retrieved from http://www.climatespectator.com.au/commentary/why-we-wont-need-coalGoogle Scholar
Parkinson, G. (2012a). The end of baseload? It may come sooner than you think. Renew Economy. Retrieved from http://reneweconomy.com.au/2012/the-end-of-baseload-it-may-come-sooner-than-you-think-29425Google Scholar
Parkinson, G. (2012b). Why generators are terrified of solar. RenewEconomy. Retrieved from http://reneweconomy.com.au/2012/why-generators-are-terrified-of-solar-44279Google Scholar
Pearse, G. (2007). High and dry: John Howard, climate change and the selling of Australia's future. Melbourne, Australia: Penguin.Google Scholar
Productivity Commission. (2011a). Carbon emission policies in key economies (Productivity Commission Research Report). Retrieved from http://www.pc.gov.au/__data/assets/pdf_file/0003/109830/carbon-prices.pdfCrossRefGoogle Scholar
Productivity Commission. (2011b). Supplement to research report (Carbon emission policies in key economies: Responses to feedback on certain estimates for Australia). Retrieved from http://www.pc.gov.au/__data/assets/pdf_file/0003/109830/carbon-prices.pdfCrossRefGoogle Scholar
Regulación Eólica con Vehículos Eléctricos REVE. (2012). Five new wind farm projects were commissioned in 2011 in Australia. Madrid. Retrieved from http://www.evwind.es/noticias.php?id_not=18028Google Scholar
REN21. (2011). Renewables 2011 — Global status report. Renewable Energy Policy Network for the 21st century. Retrieved from http://bit.ly/REN21_GSR2011Google Scholar
REN21. (2012). Renewables 2012 — Global status report. Renewable Energy Policy Network for the 21st Century. Retrieved from http://www.map.ren21.net/GSR/GSR2012_low.pdfGoogle Scholar
Resources, Energy and Tourism RET. (2011). Draft Energy White Paper 2011 — Strengthening the foundation for Australia's energy future. Canberra, Australia: Department of Resources Energy and Tourism. Retrieved from http://www.ret.gov.au/energy/Documents/ewp/draft-ewp-2011/Draft-EWP.pdfGoogle Scholar
Resources, Energy and Tourism RET. (2012a). Australian Renewable Energy Agency. Canberra, Australia: Department of Resources Energy and Tourism. Retrieved from http://www.ret.gov.au/energy/clean/arena/Pages/arena.aspxGoogle Scholar
Resources, Energy and Tourism RET. (2012b). Solar Flagships Program Round 1: Guidelines and process. Canberra, Australia: Department of Resources Energy and Tourism. Retrieved from http://www.ret.gov.au/energy/clean/sfp/round-one/Pages/round-1.aspxGoogle Scholar
Reynolds, H.L., Brondizio, E.S., & Robinson, J.M. (2010). Teaching environmental literacy: Across campus and across the curriculum. Bloomington, IN: Indiana University Press.Google Scholar
Rocky Mountain Institute. (2011). Electricity executive summary: Unprecedented change is necessary and desirable. Boulder, CO. Retrieved from http://www.rmi.org/rfelectricityexecutivesummaryGoogle Scholar
Shotter, J. (1993). Conversational realities: Constructing life through language. Thousand Oaks, CA: Sage.Google Scholar
SMH. (2011, June 15). Most want 100% renewable energy: Survey. Sydney Morning Herald. Retrieved from http://www.smh.com.au/environment/energy-smart/most-want-100-renewable-energy-survey-20110615-1g3ho.htmlGoogle Scholar
Solar-Energy. (2012, January). Let's dig into business strategies of the world's largest PV company, Suntech. Market Insight. Retrieved from http://www.solarnenergy.com/eng/info/show.php?c_id=4996&pg=1&s_sort=&sub_cat=2&s_type=&s_word=Google Scholar
Sovacool, B. (in press). The avian benefits of wind energy: A 2009 update. Renewable Energy.Google Scholar
Stern, N. (2006). Stern review on the economics of climate change. London: UK Treasury.Google Scholar
Stevenson, R.B., & Evans, N. (2011). The distinctive characteristics of environmental education research in Australia: An historical and comparative analysis. Australian Journal of Environmental Education, 27, 2445.CrossRefGoogle Scholar
Trainer, T. (2010). Comments on Zero Carbon Australia. Retrieved from http://socialsciences.arts.unsw.edu.au/tsw/ZCAcrit.htmlGoogle Scholar
The Treasury. (2011). Strong growth, low pollution: Modelling a carbon price. Canberra, Australia. Retrieved from http://www.treasury.gov.au/carbonpricemodelling/content/report.aspGoogle Scholar
Trieb, F., Müller-Steinhagen, H., & Kern, J. (2011). Financing concentrating solar power in the Middle East and North Africa — ‘Subsidy or investment?Energy Policy, 39 (1), 307317.CrossRefGoogle Scholar
Trieb, F., Schillings, C., Pregger, T., & O'Sullivan, M. (2012). Solar electricity imports from the Middle East and North Africa to Europe. Energy Policy, 42, 341353.CrossRefGoogle Scholar
UNEP. (2011). Global trends in renewable energy investment 2011. United Nations Environment Program and Bloomberg New Energy Finance. Retrieved from http://www.unep.org/pdf/BNEF_global_trends_in_renewable_energy_investment_2011_report.pdfGoogle Scholar
UNESCO/UNEP. (2007, November). Moving forward from Ahmedabad: Environmental Education in the 21st century. Recommendations from the 4th International Conference on Environmental Education (Tbilisi plus 30). Retrieved from http://www.tbilisiplus30.org/Final%20Recommendations.pdfGoogle Scholar
Whelan, J. (2005). Popular education for the environment: Building interest in the educational dimension of social action. Australian Journal of Environmental Education, 21, 117128.CrossRefGoogle Scholar
Wiser, R., & Bolinger, M. (2011). 2010 Wind technologies market report. U.S. Department of Energy. Retrieved from http://www1.eere.energy.gov/wind/pdfs/51783.pdfGoogle Scholar
World Bank. (2007). Cost of pollution in China: economic estimates of physical damages. Washington, DC: Rural Development, Natural Resources and Environment Management Unit, East Asia and Pacific Region, The World Bank. Retrieved from http://siteresources.worldbank.org/INTEAPREGTOPENVIRONMENT/Resources/China_Cost_of_Pollution.pdfGoogle Scholar
World Wind Energy Association WWEA. (2012). World market recovers and sets a new record: 42 GW of new capacity in 2011, total at 239 GW. Bonn, Energy. Retrieved from http://www.wwindea.org/home/index.php?option=com_content&task=view&id=345&Itemid=43Google Scholar
Wyld Group & McLennan Magasanik Associates MMA. (2008). High temperature solar thermal technology roadmap (Report prepared for the New South Wales and Victorian Governments. Melbourne, Australia: Wyld Group in conjunction with McLennan Magasanik Associates. Retrieved from www.coag.gov.au/reports/docs/HTSolar_thermal_roadmap.docGoogle Scholar
Yanow, D. (2006). Thinking interpretively: Philosophical presuppositions and the human sciences. In Yanow, D. & Schwartz-Shea, P. (Eds.), Interpretation and method: Empirical research methods and the interpretive turn (pp. 526). London: Sharpe.Google Scholar