"La 4e de couverture indique : "Le stockage géologique souterrain du dioxyde de carbone (CO2) a un potentiel considérable pour atténuer le changement climatique. Le CO2 peut être injecté et stocké en toute sécurité sur des sites bien caractérisés et bien gérés. L'injection du dioxyde de carbone dans des formations géologiques profondes peut être stocké sous terre pendant de longues périodes de temps. Les réservoirs de gaz et de pétrole épuisés, les aquifères salins et les formations carbonifères peuvent être utilisés pour le stockage du CO2, ainsi que dans les mines de charbon abandonnées. A des profondeurs inférieures à 800-1000 mètres, le CO2 a une densité analogue à un liquide qui permet l'utilisation efficace de réservoirs souterrains dans les roches sédimentaires poreuses. Les articles de ce volume écrits par d'éminents experts dans le domaine du stockage de CO2 ont été présentés lors d'un atelier international sur "le stockage de CO2 dans les formations carbonifères et les mines de charbon abandonnées" (Beijing, Chine, 8-9 janvier 2011). Le stockage du CO2 dans des mines de charbon abandonnées, semble avoir un avenir radieux. Bien que le stockage du CO2 dans les formations carbonifères et les mines de charbon abandonnées soit principalement destiné aux ingénieurs des Mines, ingénieurs en environnement, et aux géologues de l'ingénierie, ce livre sera également utile aux ingénieurs civils, aux universitaires, et aux professionnels en géophysique et en géochimie"."
"CO2 Storage in Carboniferous Formations and Abandoned Coal Mines."@en
"Underground geological storage of carbon dioxide (CO2) has considerable potential for mitigating climate change. CO2 can be safely injected and stored at well characterized and properly managed sites. Injecting carbon dioxide in deep geological formations can store it underground for long periods of time. Depleted oil and gas reservoirs, saline aquifers and carboniferous formations can be used for storage of CO2, as well as in abandoned coal mines. At depths below about 800-1000m, CO2 has a liquid-like density that permits the efficient use of underground reservoirs in porous sedimentary rocks.The papers in the present volume are from leading experts in the field of CO2 storage and were presented at an International Workshop on CO2 Storage in Carboniferous Formations and Abandoned Coal Mines (Beijing, China, 8-9 January 2011). CO2 storage in abandoned coal mines appears to have a bright future. Although CO2 Storage in Carboniferous Formations and Abandoned Coal Mines is primarily intended for mining engineers, environmental engineers and engineering geologists, the book will also be useful to civil engineers, and academics and professionals in geophysics and geochemistry."
"Underground geological storage of carbon dioxide (CO2) has considerable potential for mitigating climate change. CO2 can be safely injected and stored at well characterized and properly managed sites. Injecting carbon dioxide in deep geological formations can store it underground for long periods of time. Depleted oil and gas reservoirs, saline aquifers and carboniferous formations can be used for storage of CO2, as well as in abandoned coal mines. At depths below about 800-1000m, CO2 has a liquid-like density that permits the efficient use of underground reservoirs in porous sedimentary rocks."@en
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International Workshop on C02, Storage in Carboniferous Formations and Abandoned Coal Mines (2011 : Beijing, Chine)
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International Workshop on CO2 Storage in Carboniferous Formations and Abandoned Coal Mines (2011 : Beijing)
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International Workshop on CO2 Storage in Carboniferous Formations and Abandoned Coal Mines (2011 : Beijing, China)
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TECHNOLOGY & ENGINEERING Power Resources Fossil Fuels.
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