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    • 1. 发明授权
    • Method of manufacturing methanol
    • 制造甲醇的方法
    • US06218439B1
    • 2001-04-17
    • US09456145
    • 1999-12-07
    • Kazuto KobayashiHideaki NagaiHiroyuki OsoraYoshio SeikiTetsuya Imai
    • Kazuto KobayashiHideaki NagaiHiroyuki OsoraYoshio SeikiTetsuya Imai
    • C07C2700
    • C07C29/1518C07C31/04
    • A raw material gas containing hydrocarbon as a main component is supplied together with steam to a reformer through a moistening device to form a synthetic gas containing hydrogen, carbon monoxide and carbon dioxide as main components by the reaction between the hydrocarbon contained in the raw material gas and the steam. In forming the synthetic gas, carbon dioxide is supplied to at least one fluid passageway selected from the group consisting of the fluid passageway positioned upstream of the moistening device and the fluid passageway interposed between the moistening device and the reformer. As a result, the excess hydrogen contained in the gas formed in the reformer is effectively utilized without bringing about deactivation of the methanol synthesizing catalyst in the methanol synthesizing step. Also, carbon dioxide is effectively utilized to decrease the amount of carbon dioxide discharged to the outside of the system. Further, it is possible to decrease the amount of steam supplied to the reformer.
    • 将以烃为主要成分的原料气体与蒸汽一起通过润湿装置与重整器一起供给,通过原料气体中所含的烃之间的反应形成含有氢,一氧化碳和二氧化碳作为主要成分的合成气体 和蒸汽。 在形成合成气体时,将二氧化碳供应到至少一个流体通道,该流体通道选自由位于润湿装置上游的流体通道和插入润湿装置和重整器之间的流体通道。 结果,在甲醇合成步骤中,在重整器中形成的气体中所含的过剩氢被有效地利用而不会导致甲醇合成催化剂失活。 而且,二氧化碳被有效地用于减少排放到系统外部的二氧化碳的量。 此外,可以减少供给重整器的蒸汽量。