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Effect of reduction temperature on the structure and hydrodesulfurization performance of Na doped Ni2P/MCM-41 catalysts

机译:还原温度对掺Na的Ni2P / MCM-41催化剂结构和加氢脱硫性能的影响

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The removal of sulfur compounds from petroleum is increasingly important because of the environmental pollution caused by sulfur compounds. In this work, Na doped Ni _(2) P/MCM-41 catalysts were successfully prepared, and their hydrodesulfurization (HDS) performances were assessed using dibenzothiophene (DBT) as a model molecule. Moreover, the effects of reduction temperature (450–600 °C) on the structure and HDS performance of the Ni _(2) P/Na-MCM-41 catalysts were studied. Results showed that: (a) the reduction temperature of the catalyst could be as low as 450 °C due to Na doping, which is about 200 °C lower than that of the conventional temperature-programmed reduction method (650–1000 °C); (b) increasing the reduction temperature lead to an increase in the diameter of Ni _(2) P particles, which was demonstrated by size distribution analysis; (c) the HDS performance of the Ni _(2) P/Na-M41- T catalysts increases with reduction temperature and 99.2% DBT conversion was observed for Ni _(2) P/Na-M41-600, whereas the hydrogenation route of the catalysts decreased with increasing the reduction temperature, which indicates the lower reduction temperature favored the direct desulfurization pathway (DDS).
机译:由于含硫化合物对环境的污染,从石油中去除含硫化合物变得越来越重要。在这项工作中,成功地制备了Na掺杂的Ni _(2)P / MCM-41催化剂,并使用二苯并噻吩(DBT)作为模型分子评估了它们的加氢脱硫(HDS)性能。此外,研究了还原温度(450–600°C)对Ni _(2)P / Na-MCM-41催化剂的结构和HDS性能的影响。结果表明:(a)由于Na掺杂,催化剂的还原温度可能低至450°C,比常规的程序升温还原方法(650–1000°C)低约200°C。 ; (b)提高还原温度导致Ni_(2)P颗粒的直径增加,这通过尺寸分布分析证明; (c)Ni _(2)P / Na-M41-600催化剂的HDS性能随还原温度的升高而提高,Ni _(2)P / Na-M41-600的DBT转化率达到99.2%,而氢化途径催化剂的还原温度随还原温度的升高而降低,这表明较低的还原温度有利于直接脱硫途径(DDS)。

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