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    • 9. 发明授权
    • Method for the preparation of sulphur hexafluoride of high purity
    • 制备高纯度六氟化硫的方法
    • US4186180A
    • 1980-01-29
    • US897741
    • 1978-04-17
    • Alberto Di GioacchinoGiulio TommasiMario de Manuele
    • Alberto Di GioacchinoGiulio TommasiMario de Manuele
    • C01B17/45C01B17/46
    • C01B17/453
    • Process and apparatus are disclosed for the preparation of sulphur hexafluoride of high purity, starting from elemental fluorine and sulphur, both in gaseous phase, and operating with an excess of fluorine, characterized in that the fluorine is fed into a reaction chamber through inlets in a metal plate, maintained at between 30.degree. and 70.degree. C., while the sulphur is fed in through the nozzle of a burner, by regulating a current of an inert gas which is saturated with sulphur by passing same through a zone containing molten sulphur at a temperature between 250.degree. and 500.degree. C., and subsequently superheating the inert gas thus saturated with sulphur to a temperature between 300.degree. and 550.degree. C., and introducing a separate current of the same inert gas between the plate and the burner so as to ensure that the flame that develops when the sulphur and the fluorine come into reactive contact with each other shall be kept insulated from the nozzle, and recovering and purifying the resulting sulphur hexafluoride.
    • 公开了用于制备高纯度六氟化硫的方法和装置,从元素氟和硫开始,两者在气相中,并且与过量的氟一起操作,其特征在于,氟通过入口中的入口进料到反应室中 金属板保持在30℃和70℃之间,而硫通过燃烧器的喷嘴进入,通过调节硫饱和的惰性气体的电流通过含有熔融硫的区域, 温度在250-500℃之间,然后将硫饱和的惰性气体过热至300-550℃,并在板和燃烧器之间引入相同惰性气体的单独电流,以便 为了确保硫和氟彼此反应接触时产生的火焰应与喷嘴保持绝缘,并回收和净化残余物 六氟化硫。
    • 10. 发明授权
    • Apparatus for carrying out gaseous phase reactions
    • 用于进行气相反应的装置
    • US4246236A
    • 1981-01-20
    • US48165
    • 1979-06-12
    • Alberto Di GioacchinoGiulio TommasiMario de Manuele
    • Alberto Di GioacchinoGiulio TommasiMario de Manuele
    • C01B17/45C01B17/46B01J19/26B05B7/06
    • C01B17/453
    • Apparatus is disclosed for the carrying out of gaseous phase reactions, illustrated by way of example by the preparation of sulphur hexafluoride of high purity, starting from elemental fluorine and sulphur, both in gaseous phase. One of the gaseous reactants, e.g., the fluorine, is fed into a reaction chamber through inlets in a metal plate, maintained at between 30.degree. and 70.degree. C. while the other, e.g., sulphur in gaseous phase, is fed in through the nozzle of a burner, e.g., by regulating a current of an inert gas which is saturated with sulphur by passing same through a zone containing molten sulphur at a temperature between 250.degree. and 500.degree. C., and subsequently superheating the inert gas thus saturated with sulphur to a temperature between 300.degree. and 550.degree. C., and introducing a separate current of the same inert gas between the plate and the burner so as to ensure that the flame that develops when the sulphur and the fluorine come into reactive contact with each other shall be kept insulated from the nozzle.
    • 公开了用于进行气相反应的装置,例如通过以气相形式从元素氟和硫开始制备高纯度的六氟化硫。 气态反应物(例如氟)中的一种通过金属板中的入口进料到反应室中,保持在30℃和70℃之间,而另一个例如气相中的硫通过 燃烧器的喷嘴,例如通过在250℃和500℃之间的温度下通过使含有熔融硫的区域通过相同的方式调节硫饱和的惰性气体的电流,并且随后将由此饱和的惰性气体过热 硫至300℃至550℃的温度,并在板和燃烧器之间引入相同惰性气体的单独电流,以确保当硫和氟与每个反应性接触时产生的火焰 其他应与喷嘴保持绝缘。