首页> 外文期刊>石油学会誌 >Ultra-deep Hydrodesulfurization of Kerosene for Fuel Cell System (Part 2) Regeneration of Sulfur-poisoned Nickel Catalyst in Hydrogen and Finding of Auto-regenerative Nickel Catalyst
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Ultra-deep Hydrodesulfurization of Kerosene for Fuel Cell System (Part 2) Regeneration of Sulfur-poisoned Nickel Catalyst in Hydrogen and Finding of Auto-regenerative Nickel Catalyst

机译:燃料电池系统煤油的超深度加氢脱硫(第二部分)氢气中硫中毒镍催化剂的再生及自蓄式镍催化剂的发现

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An idea to regenerate sulfur-poisoned Ni catalyst in flowing H_2 was tried. That is, sulfur-poisoned Ni catalyst prticles are mixed with ZnO fine particles in a H_2 atmosphere at 600 K, then the each poisoned catalyst particle would releases a few pb of H_2S through the H_2 atmosphere and the released H_2S would be accepted on neighboring ZnO particles. Then, a million-fold effective improvement in the regeneration of sulfur-poisoned Ni catalyst in a flow of H_2 would be realized. After only a 90 h of trial operation, sulfur-poisoned 60% Ni/Al_2O_3 catalyst was regenerated. Applying this idea, 12.3% Ni/ZnO was prepared and tested as a model catalyst for adsorptive ultra-deep hydrodesulfurization (UD-HDS) of kerosene in a stream of H_2 containing 25% CO_2 at 600 K. Residual sulfur in the treated kerosene was not detectable (< 0.06 wt ppm) by the ready-made sensitive sulfur analyzer even after 800 h of operation. Comparing with the conventional Ni/Al_2O_3 catalyst, the Ni/ZnO ctatalyst did not produce any CH_4. The ZnO support is regarded to serve as a kind of SMSI and to regenerate Ni catalyst automatically in the HDS. To the best of our knowledge, this is the first time that the regeneration of the sulfur-poisoned Ni catalyst in a H_2 stream was realized and realized and the automatic regenerative Ni catalyst for adsorptive HDS was demonstrated. Other materials for the catalyst of adsorptive UD-HDS were investigated. Al_2O_3 and Fe_2O_3 were useful as sub-materials, however, Cu, Co, Mo, Pd, and Pt were not comparable to Ni and ZnO.
机译:尝试了在流动的H_2中再生硫中毒的Ni催化剂的想法。也就是说,将硫中毒的Ni催化剂颗粒与ZnO微粒在600 K的H_2气氛中混合,然后每个中毒的催化剂颗粒将通过H_2气氛释放几pb的H_2S,并且释放的H_2S将被相邻的ZnO接受粒子。然后,将实现在H_2流中硫中毒的Ni催化剂再生的百万倍有效改进。在仅运行90小时后,再生了硫中毒的60%Ni / Al_2O_3催化剂。应用此思想,制备了12.3%的Ni / ZnO并作为模型催化剂进行了测试,该模型催化剂用于在600 K的H_2气流中含有25%CO_2的煤油吸附超深度加氢脱硫(UD-HDS)。即使在运行800小时后,现成的灵敏硫分析仪也检测不到(<0.06 wt ppm)。与常规的Ni / Al_2O_3催化剂相比,Ni / ZnO催化剂不产生任何CH_4。 ZnO载体被视为一种SMSI,并在HDS中自动再生Ni催化剂。据我们所知,这是第一次实现并实现了H_2流中硫中毒的Ni催化剂的再生,并展示了用于吸附HDS的自动再生Ni催化剂。研究了吸附性UD-HDS催化剂的其他材料。 Al_2O_3和Fe_2O_3可用作子材料,但是Cu,Co,Mo,Pd和Pt不能与Ni和ZnO相比。

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