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Successful deployment of carbon capture and storage (CCS) is critically dependent on comprehensive policy support. While policy plays an important role in the deployment of many low-carbon technologies, it is especially crucial for CCS. This is because, in contrast to renewable energy or...
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Public opinion related to the consumption of coal is directed primarily to its environmental impact in light of ongoing efforts to reduce CO2 emissions and tackle global climate change. Nevertheless, the benefits of coal as a widely available and relatively cheap source of energy underscores its...
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The Model Framework proposes principles for addressing twenty-nine key issues associated with regulating CCS, based on the work of early-movers such as Australia, Europe and the United States, to assist national and regional CCS regulatory framework development. For each issue, an explanation is...
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The International Energy Agency (IEA) estimates that 100 Carbon Capture and Storage (CCS) projects will be required by 2020 and over 3 000 by 2050 if CCS is to contribute fully to the least-cost technology portfolio for CO2 mitigation. For CCS to reach its emissions reduction potential, the 2009...
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Bioenergy with Carbon Capture and Storage (BECCS) is a carbon reduction technology that offers permanent net removal of carbon dioxide (CO2) from the atmosphere. This has been termed 'negative carbon dioxide emissions', and offers a significant advantage over other mitigation alternatives, which...
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