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Hydrotreater Feed Filter Fouling and Its Remedy

机译:水溶器饲料过滤器污垢及其补救措施

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摘要

The root cause of hydrotreater feed filter fouling in a bitumen upgrading plant was revealed through a step-by-step scientific investigation. It was first confirmed that the fouling problem was related to a process flow sheet change that introduced a heavy vacuum gas oil (HVGO) stream into the coker combined gas oil (KCGO) stream prior to filtration. Characterization of the foulant and the feed indicated that the fouling reactions are likely oxidative polymerization. Iron naphthenate or naphthenic acid in the HVGO stream could act as a catalyst for such a reaction. A bench-scale oxidation test was carried out to compare the oxygen uptake rates and the C_7-insoluble contents after oxidation in KCGO, KCGO plus HVGO, KCGO plus iron naphthenate, and KCGO plus naphthenic acid streams. While the oxygen uptake kinetics for these samples were similar, the C_7-insoluble contents for KCGO plus HVGO and KCGO plus iron naphthenate increased significantly after oxidation compared to the base case of KCGO. No significant increase of the C_7-insoluble content was observed for KCGO plus naphthenic acid, indicating that it was the iron naphthenate that catalyzed the fouling reactions. Iron naphthenate was a corrosion product in the HVGO stream, which could be eliminated by preventing corrosion in the vacuum distillation unit. The filter fouling problem indeed disappeared after the installation of corrosion-resistant equipment.
机译:通过逐步的科学调查揭示了沥青升级厂中水闸饲料过滤器污垢的根本原因。首先证实,结垢问题与在过滤之前将重型真空煤气(HVGO)流引入焦化的气体油(KCGO)流中的过程流动片。污垢和饲料的表征表明,污垢反应可能是氧化聚合。在HVGO流中的萘甲酸环烷或环烷酸可以作为这种反应的催化剂。进行了长凳氧化试验,以比较KCGO,KCGO Plo HVGO,KCGO加铁萘酸盐氧化后的氧吸收率和C_7 - 不溶性含量,以及KCGO加环烷烃。虽然这些样品的氧气吸收动力学相似,但与KCGO的基本情况相比,KCGO Plus HVGO和KCGO加铁萘酸盐的C_7 - 不溶性含量显着增加。对于KCGO加环酸未观察到C_7 - 不溶性含量的显着增加,表明它是催化结垢反应的铁萘酸酯。铁萘酸酯是HVGO流中的腐蚀产物,可以通过防止真空蒸馏单元的腐蚀来消除。耐腐蚀设备安装后,过滤器污垢问题确实消失了。

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