首页> 外文期刊>Energy & fuels >Comparison of MoS_2 Catalysts Prepared from Mo-Micelle and Mo-Octoate Precursors for Hydroconversion of Cold Lake Vacuum Residue: Catalyst Activity, Coke Properties and Catalyst Recycle
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Comparison of MoS_2 Catalysts Prepared from Mo-Micelle and Mo-Octoate Precursors for Hydroconversion of Cold Lake Vacuum Residue: Catalyst Activity, Coke Properties and Catalyst Recycle

机译:Mo-Micelle和Mo-辛酸酯前体制备的冷湖真空渣油加氢转化MoS_2催化剂的比较:催化剂活性,焦炭性能和催化剂循环利用

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摘要

The hydroconversion of cold lake vacuum residue (CLVR) in a semibatch, slurry-phase reactor was studied at 415-445℃, 13.8 MPa, and a reaction time of 1 h, using MoS_2 catalysts prepared from Mo-octoate and Mo-micelle precursors. Both precursors yielded MoS_2 with the same activity in terms of coke suppression, residue conversion, and hydrogen uptake. The coke yield decreased from 22 wt % in the absence of a catalyst, to 4.8 wt % in the presence of 100 ppm Mo. A Mo concentration of 600 ppm was found to be optimum in terms of maximizing the residue conversion (84 wt %) and minimizing the coke yield (2.9 wt %). The characteristics of the recovered coke as a function of catalyst concentration and age in the reactor were also investigated. At high catalyst concentrations (>600 ppm Mo) and short reaction times, the generated coke was relatively amorphous, with a high H/C ratio. The solid catalyst-coke recovered from the reactor was recycled without further treatment The catalytic activity of the recycled catalyst was the same as the fresh catalyst, and no catalyst deactivation was observed under the hydroconversion conditions of the present study.
机译:使用由辛酸和胶束前体制备的MoS_2催化剂,在415-445℃,13.8 MPa和1 h的反应时间下研究了半间歇式淤浆相反应器中冷湖真空残渣(CLVR)的加氢转化。 。在抑制焦炭,残渣转化和吸收氢气方面,两种前体均产生具有相同活性的MoS_2。焦炭收率从不存在催化剂的情况下的22 wt%降至在100 ppm Mo的情况下的4.8 wt%。发现600 ppm的Mo浓度对于最大程度地提高残留物转化率(84 wt%)是最佳的并且使焦炭产率(2.9wt%)最小。还研究了回收的焦炭的特征与反应器中催化剂浓度和寿命的关系。在高催化剂浓度(> 600 ppm Mo)和短反应时间下,生成的焦炭是相对无定形的,具有较高的H / C比。从反应器回收的固体催化剂焦炭无需进一步处理即可循环使用。循环使用的催化剂的催化活性与新鲜催化剂相同,在本研究的加氢转化条件下未观察到催化剂失活。

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  • 来源
    《Energy & fuels》 |2012年第mayajuna期|p.2768-2778|共11页
  • 作者单位

    Department of Chemical and Biological Engineering, University of British Columbia, Vancouver, BC, Canada;

    Department of Chemical and Biological Engineering, University of British Columbia, Vancouver, BC, Canada;

    Department of Chemical and Biological Engineering, University of British Columbia, Vancouver, BC, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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