Tianjin Academy of Eco-Environmental Sciences, Tianjin, 300191, China.
Tianjin Academy of Eco-Environmental Sciences, Tianjin, 300191, China.
Chemosphere. 2021 Apr;268:129237. doi: 10.1016/j.chemosphere.2020.129237. Epub 2020 Dec 7.
Wastewater contains a large number of anions and organics which can scavenge reactive radicals and limit the application of sulfate radical-based advanced oxidation processes (SR-AOPs) in practical engineering. Here, we studied the removal rate and mechanism of aniline by SR-AOPs in different influencing factors, such as sodium persulfate dosage, ferrous ions dosage, solution pH, Cl, HCO, NO, and other organic matter. By recognizing and analyzing free radicals, we concluded that SO plays a major role in aniline degradation. The aniline removal rate increased with the initial concentrations of persulfate and ferrous ions, but aniline degradation was inhibited by excessive dosage. The aniline removal rate by ferrous-ions-catalyzed persulfate was higher under acidic conditions and could be improved under alkaline conditions if no ferrous ions were added. The addition of bicarbonate ions inhibited aniline removal, and the addition of nitrate ions barely caused the effect. While the addition of chloride ions promoted aniline degradation, which was confirmed that HClO generated from the reacting of Cl and persulfate played a key role. However, TOC indicated that aniline was not completely mineralized in the process. Further analysis of the products from GC-MS demonstrated that chloride-ion additions produced some harmful halogenated by-products. Our results can act as a basis for developing processes for the aniline degradation in wastewater.
污水中含有大量的阴离子和有机物,它们可以清除活性自由基,并限制基于硫酸盐自由基的高级氧化工艺(SR-AOPs)在实际工程中的应用。在这里,我们研究了在不同影响因素下,SR-AOPs 对苯胺的去除率和去除机制,如过硫酸钠用量、二价铁离子用量、溶液 pH 值、Cl、HCO、NO 等有机物。通过识别和分析自由基,我们得出结论,SO 在苯胺降解中起主要作用。苯胺的去除率随着过硫酸盐和二价铁离子的初始浓度增加而增加,但过量的剂量会抑制苯胺的降解。在酸性条件下,亚铁离子催化过硫酸盐的苯胺去除率较高,如果不添加亚铁离子,则可以在碱性条件下提高。碳酸氢根离子的添加抑制了苯胺的去除,而添加硝酸盐离子几乎没有效果。氯离子的添加促进了苯胺的降解,这证实了 Cl 和过硫酸盐反应生成的 HClO 发挥了关键作用。然而,TOC 表明在这个过程中苯胺并没有完全矿化。GC-MS 对产物的进一步分析表明,氯离子的添加产生了一些有害的卤代副产物。我们的研究结果可以为开发废水处理中苯胺降解的工艺提供依据。