Natural and Exact Sciences Department, Universidad de la Costa, Calle 58 #55 - 66, 080002, Barranquilla, Colombia; Escuela de Ingeniería Química, Universidad del Valle, Cali, Colombia.
Escuela de Ingeniería Química, Universidad del Valle, Cali, Colombia.
J Hazard Mater. 2020 Jun 15;392:122389. doi: 10.1016/j.jhazmat.2020.122389. Epub 2020 Mar 6.
The ultraviolet light activation of persulfate (PS) was evaluated for the degradation of cobalt cyanocomplexes, which are considered as some of the most recalcitrant compounds present in mining wastewater. The influence of the solution pH (11 and 13), initial concentration of PS (0.1, 0.3, 0.5, 0.7 and 0.9 g/L), dissolved oxygen and initial concentration of contaminant were evaluated. Photolysis results showed that [Formula: see text] is photosensitive to UVC radiation, while the activation of PS by alkaline pH does not contribute to the degradation of the cyanocomplex. There was no presence of CN at both solution pH values using UVC/PS. But at pH 13, the degradation of cobalt cyanocomplexes and the pseudo-first-order rate constant increased. This was attributed to the effective conversion of SO to HO and to the increase in the oxidative photolysis of PS at high pH. Additional tests demonstrated better performance of UVC/PS in the absence of oxygen which may be caused by the quenching effect of O to the higher energy excited state of the cyanocomplex that must be reached to initiate degradation reactions. Increasing the initial concentration of [Formula: see text] will increase the amount of Co removed but it represents the higher specific energy consumption.
研究了过硫酸盐(PS)在紫外光(UVC)下的活化,以降解钴氰络合物,这类物质被认为是矿山废水中最难降解的化合物之一。考察了溶液 pH 值(11 和 13)、PS 初始浓度(0.1、0.3、0.5、0.7 和 0.9 g/L)、溶解氧和污染物初始浓度对钴氰络合物降解的影响。光解结果表明,[Formula: see text]对 UVC 辐射敏感,而碱性 pH 值下 PS 的活化对氰络合物的降解没有贡献。在两种溶液 pH 值下均未检测到 CN 的存在。但在 pH 13 时,钴氰络合物的降解和伪一级速率常数增加。这归因于 SO 有效转化为 HO 和在高 pH 值下 PS 的氧化光解增加。进一步的测试表明,在缺乏氧气的情况下,UVC/PS 的性能更好,这可能是由于 O 对氰络合物较高能量激发态的猝灭效应所致,必须达到该激发态才能引发降解反应。增加[Formula: see text]的初始浓度会增加去除的 Co 量,但会导致更高的比能耗。