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A Removal of Sulfur-containing Compounds from Fuel Oils Using a Naturally Occurring Iron Oxyhydroxide

机译:使用天然存在的羟基氧化铁从燃料油中除去含硫化合物

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The paper deals with removing sulfur-containing compounds (SCC) from a fuel oil during oxidative desulfurization in the presence of a naturally occurring iron oxyhydroxide. A natural iron oxyhydroxide is obtained by deferrization of underground water. Iron oxyhydroxide activated at 100, 200, 250, 350, and 700°C, is used as a catalyst. The process of removing SCC from the fuel oil includes two steps: oxidation using hydrogen peroxide and a catalyst and extraction of oxidized sulfur compounds with aqueous acetonitrile. A temperature of 45 °C and the duration of 60 minutes at a sulfur:oxidant molar ratio of 1:3... 1:5 have been found out as the optimal condition for the oxidation process. A correlation is made between the activation temperature of the catalyst and the degree of sulfur removal from fuel oil. It is established that the use of catalytic samples of iron oxyhydroxide treated at a temperature of 200 or 250°C is most preferred. The optimum catalyst content in the reaction mixture is 2.0 wt.%. According to the above steps and conditions, the degree of removal of sulfur from the fuel oil in the course of a sequential removing SCC from the fuel oil is 92.3 wt.%.
机译:本文涉及在氧化脱硫在天然存在的铁羟基氧化铁存在下从燃料油中从燃料油中除去含硫化合物(SCC)。通过渗透地下水得到天然铁羟基氧化铁。在100,200,250,350和700℃下活化的铁羟基氧化铁用作催化剂。从燃料油中去除SCC的方法包括两个步骤:使用过氧化氢和催化剂的氧化和用乙腈水溶液提取氧化硫化合物。温度为45℃,硫的持续时间为60分钟:氧化摩尔比为1:3 ...... 1:5作为氧化过程的最佳条件。在催化剂的活化温度和燃料油中除去的硫的活化程度之间进行相关性。建立在200或250℃的温度下处理处理的铁羟基氧化铁的催化样品是最优选的。反应混合物中的最佳催化剂含量为2.0重量%。%。根据上述步骤和条件,从燃料油中序列除去SCC的过程中,从燃料油中除去硫的除去程度为92.3重量%。

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