School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310018, China.
School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China.
Sci Total Environ. 2022 Nov 10;846:157217. doi: 10.1016/j.scitotenv.2022.157217. Epub 2022 Jul 8.
Controlled release materials (CRMs) are an emerging oxidant delivery technique for in-situ chemical oxidation (ISCO) that solve the problems of contaminant rebound, backflow and wake during groundwater remediation. CRMs were fabricated using ordered mesoporous manganese oxide (O-MnOx) and sodium persulfate (NaSO) as active components, for the removal of antibiotic pollutants from groundwater. In both static and dynamic groundwater environments, persulfate can first be activated by O-MnOx within CRMs to form sulfate radicals and hydroxyl radicals, with these radicals subsequently dissolving out from the CRMs and degrading tetracycline (TC). Due to their excellent persulfate activation performance and good stability, the constructed CRMs could effectively degrade TC in both static and dynamic simulated groundwater systems over a long period (>21 days). The TC removal rate reached >80 %. Changing the added content of O-MnOx and persulfate could effectively regulate the performance of the CRMs during TC degradation in groundwater. The process and products of TC degradation in the dynamic groundwater system were the same as in the static groundwater system. Due to the strong oxidizing properties of sulfate radicals and hydroxyl radicals, TC molecules were completely mineralized within the groundwater systems, resulting in only trace levels of degradation products being detectable, with low- or non-toxicity. Therefore, the CRMs constructed in this study exhibited good potential for practical application in the remediation of organic pollutants from both static and dynamic groundwater environments.
控释材料(CRMs)是一种新兴的原位化学氧化(ISCO)氧化剂输送技术,可解决地下水修复过程中污染物反弹、回流和尾流等问题。CRMs 采用有序介孔氧化锰(O-MnOx)和过硫酸钠(NaSO)作为活性成分,用于去除地下水中的抗生素污染物。在静态和动态地下水环境中,过硫酸盐首先可以被 CRMs 中的 O-MnOx 激活,形成硫酸根自由基和羟基自由基,这些自由基随后从 CRMs 中溶解出来,并降解四环素(TC)。由于其优异的过硫酸盐激活性能和良好的稳定性,构建的 CRMs 可以在静态和动态模拟地下水系统中有效降解 TC 长达 21 天以上。TC 的去除率达到了>80%。改变 O-MnOx 和过硫酸盐的添加含量可以有效地调节 CRMs 在地下水 TC 降解过程中的性能。在动态地下水系统中,TC 的降解过程和产物与静态地下水系统相同。由于硫酸根自由基和羟基自由基具有很强的氧化性能,TC 分子在地下水系统中完全矿化,只有痕量的降解产物可检测到,具有低毒性或无毒性。因此,本研究构建的 CRMs 在静态和动态地下水环境中修复有机污染物方面具有良好的实际应用潜力。