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Abstract: . . . taking place. For this purpose hydrogen produced with electricity seem to be most promising. Table 2. CO 2 emission from utilized high temperature geothermal fields 2000 g/kWh Krafla 173 Námafjall 210 Svartsengi 181 Nesjavellir (electricity) 28 Nesjavellir (co-generation) 10 Page 6 References Árni Ragnarsson, 2001: Orkunotkun á Íslandi. Orkuþing 2001. Arni Ragnarsson, 2000: Geothermal development in Iceland 1995 – 1999. Proceedings World Geothermal Congress 2000. . . . . . . result turnes out to be positive the first power plant can be in operation there in 2005. New exploratory well in the Trölladyngja thermal field is promising and future development is expected there in the next years. Environmental impact studies are now conducted for three geothermal power plants, i.e. for the extension up to 100 MW of the Krafla power plant and two new power plants, one at Reykjanes and the other in Námafjall. Industrial uses of geothermal energy are also under consideration, mainly as cascading applications to the electrical production. Experiments to replace fossil fuel with renewable energy sources for transport and the fishing fleet are now taking place. For this purpose hydrogen produced with electricity seem to be most promising. Table 2. CO 2 emission from utilized high temperature geothermal fields 2000 g/kWh Krafla 173 Námafjall 210 Svartsengi 181 . . . . . . taking place. For this purpose hydrogen produced with electricity seem to be most promising. Table 2. CO 2 emission from utilized high temperature geothermal fields 2000 g/kWh Krafla 173 Námafjall 210 Svartsengi 181 Nesjavellir (electricity) 28 Nesjavellir (co-generation) 10 Page 6 References Árni Ragnarsson, 2001: Orkunotkun á Íslandi. Orkuþing 2001. Arni Ragnarsson, 2000: Geothermal development in Iceland 1995 – 1999. Proceedings World Geothermal Congress 2000. . . . --2660,3,443,2035,13301
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