首页> 外文会议>International topical meeting on high temperature reactor technology;HTR 2008 >USE OF HIGH-TEMPERATURE REACTOR HEAT IN REFINIERIES, UNDERGROUND REFINING, AND BIOREFINERIES FOR LIQUIUD FUELS PRODUCTION
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USE OF HIGH-TEMPERATURE REACTOR HEAT IN REFINIERIES, UNDERGROUND REFINING, AND BIOREFINERIES FOR LIQUIUD FUELS PRODUCTION

机译:在炼油厂,地下炼油厂和生物炼油厂中使用高温反应器加热来生产液体燃料

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The production of liquid fuels (gasoline, diesel, and jet fuel) from hydrocarbons or biomass is energy intensive. For example, the thermal energy input into U.S. refineries is approximately equal to the thermal energy output of the nation's nuclear power plants. The yield of liquid fuels per barrel of oil or ton of biomass can be increased if nuclear energy provides the thermal heat necessary for conversion of such feedstocks into liquid fuels. This allows the hydrocarbons and biomass that would have been burnt for the production of heat to be used as additional feedstocks for production of additional liquid fuels. Simultaneously, the carbon dioxide emissions from production facilities are reduced.The use of heat from high-temperature reactors would increase liquid fuels production by 10 to 30% per ton of hydrocarbon or biomass feedstock with corresponding reductions in greenhouse gas releases. The maximum temperature of heat to be supplied is generally less than 700°C to avoid thermal decomposition of the hydrocarbons or biomass. The temperature requirements, heat requirements, and the ultimate market size for these different applications of high-temperature heat are described.
机译:由碳氢化合物或生物质生产液体燃料(汽油,柴油和喷气燃料)是能源密集型的。例如,输入美国炼油厂的热能大约等于美国核电厂的热能输出。如果核能提供将此类原料转化为液体燃料所必需的热能,则可以提高每桶石油或吨生物质的液体燃料的产率。这使得原本会被燃烧产生热量的碳氢化合物和生物质可用作生产额外液体燃料的额外原料。同时,减少了生产设备的二氧化碳排放量。 来自高温反应堆的热量的使用将使液体燃料的生产每吨碳氢化合物或生物质原料增加10%到30%,同时温室气体排放量相应减少。所提供的热量的最高温度通常低于700°C,以避免碳氢化合物或生物质的热分解。描述了高温热的这些不同应用的温度要求,热量要求和最终市场规模。

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