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酸活化粉煤灰从水相中吸附去除有机物:“废”吸附剂的制备、吸附和 Fenton 再生增值。

Adsorptive removal of organics from aqueous phase by acid-activated coal fly ash: preparation, adsorption, and Fenton regenerative valorization of "spent" adsorbent.

机构信息

School of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, People's Republic of China.

Beijing Key Laboratory of Pipeline Critical Technology and Equipment for Deepwater Oil & Gas Development, Beijing, 102617, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 May;25(13):12481-12490. doi: 10.1007/s11356-018-1560-y. Epub 2018 Feb 20.

Abstract

Raw coal fly ash was activated to an adsorbent by sulfuric acid impregnation. The activation condition, the adsorption capacity, and the regenerative valorization of the adsorbent were studied. The results show that the optimal preparation conditions of the adsorbent are [HSO] = 1 mol L, activation time = 30 min, the ratio of coal fly ash to acid = 1:20 (g:mL), calcination temperature = 100 °C. The adsorption of p-nitrophenol on the adsorbent accords with the pseudo-second-order kinetic equation and the adsorption rate constant is 0.089 g mg min. The adsorption on this adsorbent can be considered enough after 35 min, when the corresponding adsorption capacity is 1.07 mg g (85.6% of p-nitrophenol removal). Compared with raw coal fly ash, the adsorbent has a stable adsorption performance at low pH range (pH = 1-6) and the adsorption of p-nitrophenol is an exothermic process. Ninety minutes is required for the regenerative valorization of saturated adsorbent by Fenton process. The regenerative valorization for this saturated adsorbent can reach 89% under the optimal proposed conditions (30 °C, pH = 3, [HO] = 5.0 mmol L, [Fe] = 5.5 mmol L). Within 15 experimental runs, the adsorbent has a better and better stability with the increase of experimental runs. Finally, the mechanism of activating coal fly ash is proposed, being verified by the results of the SEM and BET test.

摘要

原煤飞灰经硫酸浸渍活化得到吸附剂,研究了其活化条件、吸附性能及再生利用价值。结果表明,制备吸附剂的最佳条件为:[HSO] = 1 mol·L,活化时间 30 min,煤飞灰与酸的比例为 1:20(g:mL),煅烧温度为 100°C。对 p-硝基苯酚的吸附符合准二级动力学方程,吸附速率常数为 0.089 g·mg·min。35 min 后吸附基本达到平衡,对应的吸附量为 1.07 mg·g(p-硝基苯酚去除率 85.6%)。与原煤飞灰相比,该吸附剂在低 pH 值范围内(pH = 1-6)具有稳定的吸附性能,p-硝基苯酚的吸附是一个放热过程。Fenton 法再生饱和吸附剂需要 90 min。在优化条件下(30°C、pH = 3、[HO] = 5.0 mmol·L、[Fe] = 5.5 mmol·L),饱和吸附剂的再生利用率可达 89%。在 15 次实验运行中,随着实验运行次数的增加,吸附剂的稳定性越来越好。最后,通过 SEM 和 BET 测试结果验证了煤飞灰的活化机理。

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