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FutureGen 2.0计划设计信息系统第1卷(2013年)FUTUREGEN 2.0 PROGRAM-DEIS-Volume I(2013) FutureGen 2.0计划设计信息系统第1卷(2013年)FUTUREGEN 2.0 PROGRAM-DEIS-Volume I(2013)

FutureGen 2.0计划设计信息系统第1卷(2013年)FUTUREGEN 2.0 PROGRAM-DEIS-Volume I(2013)

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对于“未来发电2.0”项目,该联盟将使用先进的氧燃烧技术建造并运营一座168兆瓦的电力总产出(MWe)燃煤发电工厂。该工厂将使用现有的基础设施,包括现有的蒸汽涡轮发电机(4号机组),位于阿莫林能源公司(Ameren Energy Resources)的梅里多西亚能源中心(Meredosia Energy Center),该中心位于伊利诺斯州梅里多西亚以南的伊利诺伊河上。拟议的项目将包括旨在捕获至少90%的二氧化碳(CO2)的设施,否则这些二氧化碳将被排放到大气中,相当于每年捕获约120万吨(110万公吨)的二氧化碳。捕获的二氧化碳会被压缩,通过一个新的地下管线,大约30英里长,直径12英寸,摩根郡东部地质存储区域,它将被注入和存储在Mt。西蒙形成(咸水层)大约4000到4500英尺在地面以下。该项目还将采用监测、核查和核算地质上储存的二氧化碳的系统。一个访客和研究中心和一个培训设施将被安置在伊利诺斯州杰克逊维尔附近。拟议的项目将提供性能和排放数据,并建立操作和维修经验,这将有助于今后大规模商业部署氧气燃烧技术和地质储存二氧化碳。

For the FutureGen 2.0 Project, the Alliance would construct and operate a 168-megawatt electrical (MWe) gross output coal-fueled electric generation plant using advanced oxy-combustion technology. The plant would use existing infrastructure, including the existing steam turbine generator (Unit 4), at Ameren Energy Resources’ Meredosia Energy Center on the Illinois River just south of Meredosia, Illinois. The proposed project would include facilities designed to capture at least 90 percent of the carbon dioxide (CO2) that would otherwise be emitted to the atmosphere, equivalent to approximately 1.2 million tons (1.1 million metric tons) of CO2 captured per year. The captured CO2 would be compressed and transported via a new underground pipeline, approximately 30 miles long and 12 inches in diameter, to a geologic storage area in eastern Morgan County, where it would be injected and stored in the Mt. Simon Formation (a saline aquifer) approximately 4,000 to 4,500 feet below the ground surface. The project would also employ systems for the monitoring, verification, and accounting of the CO2 being geologically stored. A visitor and research center and a training facility would be sited in the vicinity of Jacksonville, Illinois. The proposed project would provide performance and emissions data, as well as establish operating and maintenance experience, that would facilitate future large-scale commercial deployment of oxy-combustion technology and geologic CO2 storage.

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