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Study of accelerated deactivation of hydrotreating catalysts by vanadium impregnation method

机译:钒浸渍法加速加氢处理催化剂失活的研究

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The main causes of catalysts deactivation for hydrotreating are coking and metals deposition.In this present work,accelerated deactivation of hydrotreating catalysts was studied.In this respect,vanadium which is deposited with nickel during hydrotreating reaction was impregnated into the fresh hydrotreating catalyst.Different percentage of vanadium was impregnated and their hydrodemetalization (HDM) and hydrodesulfur-ization (HDS) activities were studied in bench-scale reactor of heavy crude oil.Accelerated deactivations for both HDM and HDS were observed on vanadium impregnated catalysts.The rate of HDS deactivation was faster than that of HDM reaction.The rapid deactivation of HDS may be due to the coverage of active sites by impregnated vanadium atom.The deactivation is slower when the V loading is low;but above 10 wt% loading a rapid deactivation is observed.A comparison of deactivation is made in between normal deactivation and the deactivation by vanadium impregnation.It was found that deactivation by vanadium impregnation is lower than that of normal deactivation.It suggests that at initial stage the formation of coke causes deactivation of the catalyst whereas at later stage when metals sulfides deposition is quite high,these sulfides take part in deactivation.
机译:加氢精制催化剂失活的主要原因是焦化和金属沉积。在本工作中,研究了加氢精制催化剂的加速失活。为此,将加氢精制反应过程中镍沉积的钒浸入新鲜的加氢精制催化剂中。在重质原油台式反应器中对钒进行了浸渍,研究了它们的加氢脱金属(HDM)和加氢脱硫(HDS)活性,并观察了钒浸渍催化剂对HDM和HDS的加速失活,HDS失活速率为HDS的快速失活可能是由于浸渍的钒原子覆盖了活性位点;当V的负载量较低时,失活较慢;但在10 wt%以上的负载下,则发生了快速失活。比较了正常失活与钒浸渍失活之间的失活。 d钒的失活低于正常的失活。这表明在初期阶段,焦炭的形成导致催化剂失活,而在后期阶段,当金属硫化物的沉积量很高时,这些硫化物参与失活。

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