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Effect of pretreatment on the performance of metal-contaminated fluid catalytic cracking (FCC) catalysts

机译:预处理对金属污染的流化催化裂化(FCC)催化剂性能的影响

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摘要

Effects of both hydrogen and methane pretreatment on the performance of metal-contaminated equilibrium fluid catalytic cracking (FCC) catalysts from a refinery were investigated. Both hydrogen and methane pretreatment at 700°C were proven to be advantageous since the yields of hydrogen and coke from sour imported gas oil (SIHGO) cracking decrease while light cycle oil (LCO) and gasoline yields increase. The catalysts pretreated with hydrogen have shown slightly better improvement than the catalysts pretreated with methane. The decrease in the yields of hydrogen and coke was attributed to decrease in the dehydrogenation activity of vanadium oxides, which are present at high concentrations on the equilibrium FCC catalysts. This decrease in dehydrogenation activity after the pretreatment was also confirmed by low hydrogen-to-methane ratio. It was found that reduced vanadium has lower dehydrogenation activity since it produces less coke and hydrogen compared to oxidized vanadium. Hydrogen transfer reactions were evaluated by measuring C4 paraffin-to-C4 olefin ratios. Hydrogen transfer reactions decreased with increasing metal concentration. Both hydrogen and methane pretreatment caused the hydrogen transfer reactions to increase. Improved hydrogen transfer reactions caused an increase in the gasoline range products.
机译:研究了氢气和甲烷预处理对精炼厂金属污染的平衡流化催化裂化(FCC)催化剂性能的影响。事实证明,在700°C下进行氢气和甲烷预处理均具有优势,因为来自酸性进口粗柴油(SIHGO)裂化的氢气和焦炭的收率降低,而轻循环油(LCO)和汽油的收率提高。用氢预处理的催化剂显示出比用甲烷预处理的催化剂稍好的改进。氢气和焦炭收率的下降归因于钒氧化物的脱氢活性降低,而钒氧化物以高浓度存在于平衡FCC催化剂上。预处理后这种脱氢活性的降低也通过低的氢甲烷比来证实。发现还原的钒具有较低的脱氢活性,因为与氧化的钒相比,它产生较少的焦炭和氢气。氢转移反应通过测量C4链烷烃与C4烯烃的比率进行评估。氢转移反应随着金属浓度的增加而降低。氢气和甲烷预处理均导致氢气转移反应增加。改善的氢转移反应导致汽油范围产品的增加。

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