Guangdong Provincial Key Laboratory of Radionuclides Pollution Control and Resources, Rural Non-point Source Pollution Comprehensive Management Technology Center of Guangdong Province, School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510006, China.
Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, PR China.
Chemosphere. 2019 Aug;228:412-417. doi: 10.1016/j.chemosphere.2019.04.164. Epub 2019 Apr 25.
In this work, ultrasound (US) irradiation assisted powder zero valent iron (ZVI) corrosion was conducted for peroxymonosulfate (PMS) activation. PMS activation activity was evaluated by Rhodamine-B (Rh B) degradation efficiency. The other US/PMS, ZVI/PMS, Fe/PMS and US/PMS/Fe systems were performed to investigate the synergistic effects of US and ZVI on PMS activation activity. US/PMS/ZVI system performed the highest activity of Rh B degradation. 99.76% of Rh B was removed within 12 min under the optimum condition (pH = 4.5, ZVI dosage = 1 g/L, PMS = 1 mM, US power = 50 W). A comparison of US/PMS/ZVI system with PMS/ZVI and homogeneous US/PMS/Fe systems for Rh B degradation was conducted, indicating that ultrasound irradiation contributed to acceleration of ZVI corrosion and removal of passive films. Besides, the electrons transformation from Fe to PMS made main contribution to the generation of sulfate radical, which resulted in the ability of degradation of Rh B. ZVI could be reused for five cycles with efficient activity of PMS activation. Exhaustion of ZVI led to the decrease in PMS activation at the sixth recycle. Thus, this work presents important information on understanding reuse of iron fillings for PMS/PS activation in practical application of pollution remediation.
在这项工作中,进行了超声(US)辐照辅助零价铁粉(ZVI)腐蚀以活化过一硫酸盐(PMS)。通过 Rhodamine-B(Rh B)降解效率来评估 PMS 活化活性。进行了其他 US/PMS、ZVI/PMS、Fe/PMS 和 US/PMS/Fe 系统,以研究 US 和 ZVI 对 PMS 活化活性的协同作用。US/PMS/ZVI 系统对 Rh B 降解表现出最高的活性。在最佳条件下(pH = 4.5,ZVI 用量 = 1 g/L,PMS = 1 mM,US 功率 = 50 W),在 12 min 内去除了 99.76%的 Rh B。对 US/PMS/ZVI 系统与 PMS/ZVI 和均相 US/PMS/Fe 系统进行 Rh B 降解的比较表明,超声辐照有助于加速 ZVI 腐蚀和去除钝化膜。此外,电子从 Fe 向 PMS 的转化对硫酸盐自由基的生成做出了主要贡献,从而导致 Rh B 的降解能力。ZVI 可以在五次循环中重复使用,对 PMS 活化具有高效活性。第六次循环时,ZVI 的耗尽导致 PMS 活化能力下降。因此,这项工作提供了关于在污染修复的实际应用中理解铁屑再用于 PMS/PS 活化的重要信息。