Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University, Chengdu, 611756, China.
Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University, Chengdu, 611756, China.
Chemosphere. 2020 Sep;254:126773. doi: 10.1016/j.chemosphere.2020.126773. Epub 2020 Apr 13.
In this study, persulfate (PS) activated with microwave (MW) irradiation was used to treat strongly alkaline (pH = 12.70-12.80) wastewater containing dinitrodiazophenol (DDNP). The effects of key factors such as the PS dosage, MW output power, influent chemical oxygen demand (COD), and inorganic anions concentration were studied, and the presence of reactive oxygen species was monitored in the MW-PS process. The results showed that at a PS dosage of 6.0 g L, MW output power of 750 W, and reaction time of 16 min, the COD was reduced by 74.07% and the color number by 99.40%. In addition, the reaction during the MW-PS process for the treatment of industrial wastewater containing DDNP was comparatively stable and it was relatively unaffected by anions (i.e., chloride, carbonate, nitrate, and bicarbonate ions). Furthermore, SO·-, OH·, and O·- jointly degraded organics in the MW-PS process, and O·- played a vital role in the degradation of organics in the industrial wastewater containing DDNP. Controlled experiments showed that the MW-PS process performed better than MW-HO and ozonation processes in the treatment of alkaline industrial wastewater containing DDNP. Ultraviolet-visible and Fourier transform infrared spectroscopy analyses also indicated that refractory organic compounds with functional groups such as benzene rings, nitro groups (-NO), and diazo groups (-NN-) were effectively decomposed in the MW-PS process and transformed into intermediate products that contained N-H and -OH. Overall, the MW-PS process was found to be highly effective in the treatment of a strongly alkaline wastewater containing DDNP.
在这项研究中,使用过硫酸盐(PS)与微波(MW)辐射联合处理强碱性(pH=12.70-12.80)含二硝基重氮酚(DDNP)废水。研究了PS 用量、MW 输出功率、进水化学需氧量(COD)和无机阴离子浓度等关键因素的影响,并监测了 MW-PS 过程中活性氧物质的存在。结果表明,PS 用量为 6.0g/L、MW 输出功率为 750W、反应时间为 16min 时,COD 去除率为 74.07%,色度去除率为 99.40%。此外,MW-PS 过程处理含 DDNP 工业废水时,反应较为稳定,受阴离子(即氯离子、碳酸根离子、硝酸根离子和碳酸氢根离子)影响较小。此外,SO·-、OH·和 O·-共同降解 MW-PS 过程中的有机物,O·-在降解含 DDNP 工业废水中有机物方面发挥着重要作用。对照实验表明,MW-PS 过程在处理含 DDNP 的强碱性工业废水时,优于 MW-HO 和臭氧氧化过程。紫外可见和傅里叶变换红外光谱分析也表明,MW-PS 过程中含苯环、硝基(-NO)和重氮基(-NN-)等官能团的难降解有机化合物被有效分解,并转化为含有 N-H 和-OH 的中间产物。总体而言,MW-PS 过程在处理含 DDNP 的强碱性废水方面非常有效。