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Reactivation of spent S-Zorb adsorbents for gasoline desulfurization

机译:用于汽油脱硫的废S- Zorb吸附剂的再活化

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摘要

Spent adsorbents from the S-Zorb technology are hazardous wastes. Reactivating and recycling the spent S-Zorb adsorbents is of great significance to environmental protection. However, no report concerning this subject has been found yet. Herein, we have developed an acid-base coupling method to reactivate the spent S-Zorb adsorbents. To achieve this goal, the deactivation factors of the adsorbents were studied. The results show that the formation of Zn2SiO4 phase, which results in loss of active phase (ZnO) for sulfur storage, is the main deactivation factor. The acid-base coupling method can transform Zn2SiO4 into soluble Zn2+ via nitric acid, followed by precipitation as Zn(OH)(2) with sodium hydroxide addition. After calcination, the loss of ZnO can be supplemented. The newly formed ZnO bears a willow-leaf shape that is remarkably different from the original one. Also, it has smaller particle size compared to that of fresh adsorbents. Of note is that mesopores and Lewis acid sites are created over the adsorbents via the acid-base coupling method, accelerating the mass transfer and conversion of sulfur compounds. Carbon deposited over the adsorbent surface is removed and metal sulfides (ZnS and NiS) are oxidized into metal oxides (ZnO and NiO) via calcination of the spent adsorbents. The desulfurization efficiency of the reactivated adsorbent is superior to that of the regenerated adsorbent and reaches a level comparable to that of the fresh adsorbent in gasoline desulfurization.
机译:S-Zorb技术的废物吸附剂是危险废物。重新激活和再循环所花费的S- Zorb吸附剂对环保具有重要意义。但是,目前没有发现有关此主题的报告。在此,我们开发了一种酸基偶联方法,可重新激活S-Zorb吸附剂。为了实现这一目标,研究了吸附剂的失活因子。结果表明,形成Zn2SiO4相的形成,导致硫储存的活性相(ZnO)的损失是主要的失活因子。酸基偶联方法可以通过硝酸将Zn2SiO 4转化为可溶性Zn2 +,然后用氢氧化钠添加作为Zn(OH)(2)。煅烧后,可以补充ZnO的损失。新成立的ZnO承受柳叶形状,与原始叶片相差。而且,与新鲜吸附剂相比,它具有较小的粒径。值得注意的是,通过酸碱偶联方法在吸附剂上产生中孔和路易斯酸部位,加速了硫化合物的传质和转化。将沉积在吸附剂表面上的碳除去,并通过煅烧废吸收剂将金属硫化物(ZnS和NIS)氧化成金属氧化物(ZnO和NiO)。重新激活吸附剂的脱硫效率优于再生吸附剂的脱硫效率,并达到与汽油脱硫中新鲜吸附剂的水平相当。

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