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Titlebook: Climate and Energy: The Feasibility of Controlling CO2 Emissions; P. A. Okken,R. J. Swart,S. Zwerver Book 1989 Kluwer Academic Publishers

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Vlad Damian Vintilă,Ana-Maria Vintilă the amounts of carbon involved in these processes. Three options for using forestry as a means of CO. control are prevention of deforestation, long-rotation plantation forestry, and fuel wood production as substitute to fossil fuel. Reforestation is also needed for several productive and environmen
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Vlad Damian Vintilă,Ana-Maria Vintilă coal plant 90% of the carbon dioxide can be recovered using a chemical absorption process to clean up the flue gases. As a consequence the plant efficiency will decrease from 40.0 to 29.3% and the production costs of electricity will increase from Dct 7.0 to 11.7 per kWh. From these figures a cost
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Word-Naming in Right-Brain-Damaged Subjects, from combustion of fossil fuels. From the annual fossil fuel CO. emission by mankind of 5–6 GtC/yr about half or 2–3 GtC/yr is currently taken up by the oceans. The rate of CO. transfer through the surface ocean, which acts as a barrier between atmosphere and deep ocean, is critical. The transfer r
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https://doi.org/10.1007/978-1-4471-3853-2ation to cumulated natural gas and uranium-oxide (U. O.) requirements. Some methodological issues in reserve estimation are discussed; next, an overview is given of proved and unproved as well as speculative reserve estimates of methane and uranium. The geostatistical approach is discussed in some d
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Mark K. Friedberg,Andrew N. Redington To identify cost-effective CO. reduction strategies two scenarios are calculated with a 50% reduction of CO. emissions in 2020. CO. reduction sharpens the contrast between both scenarios: the nuclear supply-oriented all-electric strategy in the “Trend” scenario, versus the demand oriented gas strat
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