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OXIDATION OF PETROLEUM HYDROCARBON IN LIQUID PHASE

机译:液相中石油烃的氧化

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Oxidation of n-Paraffins at a low pressure of Oxygen and a low temperature in the liquid phase has been carried out. The role of the Catalyst to help the Oxidation process has been investigated. The catalyst used in the process is Cobalt Naphthenate. Products derived from the so called catalytic oxidation of a n-Cetane as reference and n-Hydrocarbons extracted from gas oil as main feed-stock includes: Hydroperoxides converting to Aldehydes, Ketones, Alcohols and Carboxylic Acids.It was found that oxidation of branched chain hydrocarbons at similar conditions results in the production of more hydroperoxides. In any case, the amount of hydroperoxides produced which remains intact at the end of the process is insignificant. When oxygen pressure in the reactor increases and temperature is also elevated, almost all the hydroperoxides produced will decompose, yielding other oxygen containing compounds as mentioned above.In a different process the joint effect of SO_2 and O_2 on the n-Paraffin Hydrocarbons derived also from gas oil while Gamma-rays acting as catalyst are also studied.
机译:已经在氧气的低压和液相的低温下氧化了正构烷烃。已经研究了催化剂在帮助氧化过程中的作用。该方法中使用的催化剂是环烷酸钴。所谓的正十六烷作为参考的催化氧化和从粗柴油中提取的正烃作为主要原料的衍生产品包括:氢过氧化物转化为醛,酮,醇和羧酸。 发现在类似条件下支链烃的氧化导致产生更多的氢过氧化物。在任何情况下,在处理结束时保持完整的氢过氧化物的量都是微不足道的。当反应器中的氧气压力增加并且温度也升高时,几乎所有产生的氢过氧化物都会分解,从而产生如上所述的其他含氧化合物。 在一个不同的过程中,还研究了SO_2和O_2对同样来自瓦斯油的正构烷烃的联合作用,同时还研究了伽马射线作为催化剂的作用。

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