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Effects of Asphaltene Content in Atmospheric Residue and Mean Pore Size of Catalyst on Initial Deactivation of Hydrodesulfurization Catalyst

机译:大气残渣中沥青质含量和催化剂平均孔径对加氢脱硫催化剂初始失活的影响

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摘要

Hydrodesulfurization (HDS) of atmospheric residue (AR) over Ni-Co-Mo catalysts supported on y-alumina was carried out to examine the effect of alumina pore size on HDS activity, hydrodemetallization (HDM) activity and initial catalyst deactivation under deep hydrodesulfurization conditions. HDM activity slightly increased with alumina pore size, but HDS activity decreased due to the decrease in the surface area of the support. Deactivation of the HDS catalyst was greater on large pore size supports than on medium pore size supports. The combination of HDS catalyst with large pore size supports (40%) and medium pore size supports (60%) did not improve the catalyst life. HDS was carried out with the large pore size support catalyst at the upstream side in the first reactor and the medium pore size support catalyst at the upstream side in another reactor. Catalyst deactivation was greater in the former than in the latter reactor. These results suggest that HDS catalyst supported on alumina with medium pore size has a higher performance than HDS catalyst supported on alumina with large pore size for deep HDS. To examine the behavior of asphaltene (ASP) at the reaction temperature, adsorption of ASP was investigated on catalyst supports with different pore size. ASP was a large molecule at low temperatures, but the molecular size decreased at HDS reaction temperature caused by the dissociation of the molecular structure. Furthermore, ASP containing sulfur was preferentially adsorbed on the catalyst support. The chemical interaction between ASP and alumina indicates that alumina is a good support for the HDS reaction.
机译:进行了y-氧化铝负载的Ni-Co-Mo催化剂上常压渣油(AR)的加氢脱硫(HDS),以研究氧化铝孔径对HDS活性,加氢脱金属(HDM)活性和深度加氢脱硫条件下催化剂初始失活的影响。 。 HDM活性随氧化铝孔径的增加而略有增加,但HDS活性由于载体表面积的减少而降低。 HDS催化剂的失活在大孔径载体上比在中孔径载体上更大。 HDS催化剂与大孔径载体(40%)和中孔径载体(60%)的组合不能提高催化剂寿命。 HDS在第一反应器的上游侧用大孔径载体催化剂和在另一反应器的上游侧用中等孔径载体催化剂进行。前者中的催化剂失活大于后者中的催化剂失活。这些结果表明,对于深层HDS,中等孔径的氧化铝负载的HDS催化剂比大孔径的氧化铝负载的HDS催化剂具有更高的性能。为了检查沥青质(ASP)在反应温度下的行为,研究了ASP在不同孔径的催化剂载体上的吸附情况。 ASP在低温下是大分子,但是在HDS反应温度下由于分子结构的解离而使分子尺寸减小。此外,含硫的ASP优先吸附在催化剂载体上。 ASP和氧化铝之间的化学相互作用表明,氧化铝是HDS反应的良好载体。

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