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    • 1. 发明授权
    • Hydrocracking process
    • 加氢裂化过程
    • US06387245B1
    • 2002-05-14
    • US09669791
    • 2000-09-26
    • Tom N. KalnesDavid B. Gates
    • Tom N. KalnesDavid B. Gates
    • C10G6902
    • C10G65/12
    • A hydrocracking process wherein a hydrocarbonaceous feedstock and a hot hydrocracking zone effluent containing hydrogen is passed to a hydrocracking reaction zone to produce lower boiling hydrocarbon compounds. The resulting hot, uncooled effluent from the hydrocracking zone is hydrogen stripped in a stripping zone maintained at essentially the same pressure as the preceding hydrocracking reaction zone with a hydrogen-rich gaseous stream to produce a vapor stream comprising hydrogen, hydrocarbonaceous compounds boiling at a temperature below the boiling range of the fresh feedstock, hydrogen sulfide and ammonia, and a liquid hydrocarbonaceous stream which is countercurrently contacted with hydrogen in a hydrogenation zone located in the bottom end of the stripping zone.
    • 加氢裂化方法,其中将含烃原料和含氢气的热加氢裂化区流出物通入加氢裂化反应区产生低沸点烃化合物。 所得到的来自加氢裂化区的热未冷却流出物在汽提区中被汽提,在汽提区中保持与前述加氢裂化反应区基本相同的压力,用富氢气流产生包含氢气的蒸气流,温度为沸点的烃类化合物 低于新鲜原料的沸程,硫化氢和氨,以及在位于汽提区底端的氢化区中与氢气逆流接触的液态烃流。
    • 2. 发明授权
    • Hydrocracking process
    • 加氢裂化过程
    • US06596155B1
    • 2003-07-22
    • US09669790
    • 2000-09-26
    • David B. GatesTom N. Kalnes
    • David B. GatesTom N. Kalnes
    • C10G6902
    • C10G65/08C10G65/02C10G65/043C10G65/12
    • A hydrocracking process wherein a hydrocarbonaceous feedstock and a hot hydrocracking zone effluent containing hydrogen is passed to a denitrification and desulfurization reaction zone to produce hydrogen sulfide and ammonia to thereby clean up the fresh feedstock. The resulting hot, uncooled effluent from the denitrification and desulfurization zone is hydrogen stripped in a stripping zone maintained at essentially the same pressure as the preceding reaction zone with a hydrogen-rich gaseous stream to produce a vapor stream comprising hydrogen, hydrocarbonaceous compounds boiling at a temperature below the boiling range of the fresh feedstock, hydrogen sulfide and ammonia, and a liquid hydrocarbonaceous stream which is countercurrently contacted with hydrogen in a hydrogenation zone located in the bottom end of the stripping zone.
    • 加氢裂化方法,其中含烃原料和含氢气的热加氢裂化区流出物通入脱氮和脱硫反应区以产生硫化氢和氨,从而清洁新鲜原料。 所得到的来自脱氮和脱硫区的热未冷却流出物在汽提区中被氢气汽提,在汽提区中与富氧气流保持与前述反应区基本相同的压力,以产生包含氢气的蒸气流, 温度低于新鲜原料的沸程,硫化氢和氨,以及在位于汽提区底端的氢化区中与氢气逆流接触的液态烃流。