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Adsorptive Removal of Dibenzothiophene in Diesel Fuel on an Adsorbent from Rice Hull Activated by Phosphoric Acid

机译:用磷酸活化的稻米壳吸附剂对柴油燃料中二苯并噻吩的吸附性去除

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Rice hull (designated with RH) was activated by phosphoric acid to prepare an adsorbent for the removal of sulfur-containing compounds from diesel fuel. Adsorption tests for both, a 300 μg.g~(-1) dibenzothiophene (DBT)-containing n-octane solution using as model oil and a commercial hydro-treated diesel fuel, were performed to elucidate the effect of varying phosphoric acid to RH ratio, treating temperature and the removal of silica from the adsorbent on the combination of the textural structure, surface chemical property and adsorption capacity. It was indicated that high surface area and micro-pore volume of the adsorbent favored the adsorption of DBT and its derivatives. Richening of oxygen-containing compounds on the adsorbent surface was advantageous to the adsorption and removal of DBTs. At a phosphoric acid and RH weight ratio of 3:1 by using a two-step treatment, a satisfactory adsorbent with an adsorption capacity of 28.89 mg S/g was successfully prepared. If the silica in the adsorbent was further removed, the product exhibited the highest performance, reaching 30.43 mg S/g for the model oil and 21.79 mg S/g for the commercial diesel fuel. Both the textural structure and the surface chemical property like acidic groups of a RH-based adsorbent play important roles in its adsorption behaviors, and the formation of donor-acceptor complexes between surface acidic groups and DBT may probably benefit DBT adsorption capacity.
机译:亚壳(用RH指定)被磷酸活化,制备吸附剂,用于从柴油燃料中除去含硫化合物。进行300μg.g〜(-1)二苯并噻吩(DBT)的吸附试验,使用作为模型油和商业水力处理的柴油燃料进行N-辛烷溶液,以阐明不同磷酸与RH的效果从吸附剂中的纹理结构,表面化学性能和吸附容量的组合中的比例,处理温度和二氧化硅的除去。结果表明吸附剂的高表面积和微孔体积赞成DBT及其衍生物的吸附。在吸附剂表面上的含氧化合物的测压是有利于吸附和除去DBT。通过使用双步处理磷酸和rh重量比为3:1,成功制备了吸附容量的令人满意的吸附剂28.89mg S / g。如果进一步除去吸附剂中的二氧化硅,该产品表现出最高的性能,用于模型油的30.43mg S / g,用于商业柴油燃料21.79mg S / g。纹理结构和表面化学性质,如Rh基吸附剂的酸性基团在其吸附行为中起重要作用,并且在表面酸性基团和DBT之间的供体 - 受体复合物的形成可能会使DBT吸附能力有益。

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