School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, 250101, PR China.
School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, 250101, PR China; Resources and Environment Innovation Institute, Shandong Jianzhu University, Jinan, 250101, PR China.
Chemosphere. 2023 Nov;341:140044. doi: 10.1016/j.chemosphere.2023.140044. Epub 2023 Sep 1.
To achieve excellent activation efficiency of peroxymonosulfate (PMS), this work prepared a biochar-supported CuO (CuO@BC) catalyst, and the CuO@BC/PMS system was proposed to remove the organic matter in natural surface water and reduce the fouling of ultrafiltration membrane. The successful synthesis of CuO@BC was demonstrated through characterization of its microscopic morphology and chemical composition by various techniques. The prepared heterogeneous catalyst showed a strong catalytic effect on PMS, which significantly removed natural organic matter through the production of active substances (OH, SO, O and O) from water. With respective degradation rates of 39.4% and 59.4%, the concentrations of DOC and UV dropped to 1.702 mg/L and 0.026 cm, respectively. Additionally, the CuO@BC/PMS oxidation displayed potent oxidation capabilities for contaminants and fluorescent organics with various molecular weights. The system effectively decreased the amount of organic matter that caused reversible and irreversible fouling of polyethersulfone membranes in natural water by 85.8% and 56.3%, respectively. The main fouling mechanisms changed as well, with standard and complete blocking dominating the entire filtration process. The results demonstrated the capacity of the CuO@BC/PMS system to remove contaminants in natural water and mitigate membrane fouling.
为了实现过一硫酸盐(PMS)的高效活化,本工作制备了一种负载型氧化铜(CuO@BC)催化剂,并提出了 CuO@BC/PMS 体系来去除天然地表水中的有机物和减少超滤膜的污染。通过各种技术对其微观形貌和化学成分进行了表征,证明了 CuO@BC 的成功合成。所制备的非均相催化剂对 PMS 表现出很强的催化作用,通过产生来自水中的活性物质(OH、SO、O 和 O),显著去除了天然有机物。DOC 和 UV 的浓度分别降至 1.702 mg/L 和 0.026 cm,降解率分别为 39.4%和 59.4%。此外,CuO@BC/PMS 氧化对不同分子量的污染物和荧光有机物具有很强的氧化能力。该体系有效地减少了天然水中引起聚醚砜膜可逆和不可逆污染的有机物的量,分别减少了 85.8%和 56.3%。主要的污染机制也发生了变化,标准和完全堵塞主导了整个过滤过程。结果表明,CuO@BC/PMS 体系具有去除天然水中污染物和减轻膜污染的能力。