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Beyond Mitigation : Potential Options for Counter-Balancing the Climatic and Environmental Consequences of the Rising Concentrations of Greenhouse Gases

2009

MacCracken, Mike


Bibliographic information
Other Subjects
Ch4; Waste; Fossil fuel emissions; Power plant; Climate feedback mechanisms; Atmospheric composition; High altitudes; Water vapor; Efficiency of energy production; Costs of climate change; Solar technologies; Sediments; Volcanic aerosols; Adverse impact; Temperature change; Ecological impacts; Impacts of climate change; Ipcc; Optical depth; Greenhouse gas concentration; Atmospheric burden; Stratosphere.; Cloud; Oil field; Sulfate particles; Cfcs; Fuel; Atmospheric concentrations; Renewable energy technologies; Global warming potential; Perfluorocarbons; Coastal regions; Co2 emissions; Montreal; Greenhouse gas concentrations; Carbon uptake; Natural ecosystems; Weather patterns; Kyoto protocol; Changes in climate; Mist; Ice sheet; Alternative energy technologies; Emission levels; Atmospheric concentration; Reflectivity; Anthropogenic interference; High sulfur coal; Climate sensitivity; Mitigation potential; Radiative forcing; Surface albedo; Tropical cyclones; Environmental research; Emissions; Thermal expansion; Absorbed radiation; N2o; Renewable sources of energy; Coal combustion; Fossil fuel; Solar power; Rocks; Glacier; Alternative approach; Carbon content; Carbon credits; Oscillations; Biosphere; Stratus; Tropopause; Greenhouse gas; Ghgs; Climatic impacts; Cold climate; Gwp; So2; Energy policy; Global greenhouse; Enhanced greenhouse effect; Renewable sources; Negotiations; Changes in the earth; Climatic changes; Sea level rise; Demand for energy; Greenhouse; Programs; Heat trapping; Hurricane; Climate impacts; Environmental consequences; Air pollutants; Environmental modification; Heat transport; Montreal protocol; Tons of carbon; Global climate change; Solar irradiance; Changing land use; Mountain glaciers; Tropical storms; Heat capacity; Tree growth; Generation; Mesosphere; Power production; Natural emissions; Halocarbon; Particles; Global greenhouse gas; Climate feedback; Solar load; Stratospheric ozone layer; Particle; Combustion technologies; Soils; Framework convention on climate change; Chemical reaction; Global environment; Carbonyl sulfide; Global average temperature; Air mass; Acid; Industrial activities

2021-06-15
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