Faculty of Civil Engineering, K. N. Toosi University of Technology, Tehran, Iran; Functional Materials, Department of Applied Physics, School of Engineering Sciences, KTH Royal Institute of Technology, Stockholm, Sweden.
Faculty of Civil Engineering, K. N. Toosi University of Technology, Tehran, Iran.
Chemosphere. 2021 Jan;263:127945. doi: 10.1016/j.chemosphere.2020.127945. Epub 2020 Aug 18.
To reduce undesired iron leaching in Fenton reaction and to realize reusability of catalyst, chitosan-coated activated carbon cloth support loaded with nano zero-valent iron (ACC-CH-nZVI) was applied as a heterogeneous Fenton catalyst to treat melanoidin wastewater. Chitosan coating on ACC by chemical crosslinking results in 6% chitosan on ACC subsequently loading 3.5% iron. At optimum conditions, ACC-CH-nZVI leads to 88.4% and 76.2% of color and chemical oxygen demand (COD) removal, respectively, upon treating synthetic melanoidin wastewater of 8000 mg/l COD. The corresponding weight ratio of consumed HO to COD is 1.02, far below the stoichiometric ratio 2.125, indicating the economic value of this catalyst. Reusability of ACC-CH-nZVI is demonstrated for five cycles of treatment with minimal iron leaching (<2%). The high removal efficiency and very low levels of iron leaching suggests that ACC-CH-nZVI is a highly efficient and cost-effective catalyst for Fenton-like oxidation of non-biodegradable organic wastes in water.
为了减少芬顿反应中不希望的铁浸出,并实现催化剂的可重复使用,用壳聚糖涂覆的载有纳米零价铁的活性炭布载体(ACC-CH-nZVI)被用作非均相芬顿催化剂来处理类黑精废水。通过化学交联在 ACC 上涂覆壳聚糖导致 ACC 上随后负载 3.5%的铁。在最佳条件下,当处理 8000mg/L COD 的合成类黑精废水时,ACC-CH-nZVI 分别导致 88.4%和 76.2%的颜色和化学需氧量(COD)去除率。相应的消耗 HO 与 COD 的重量比为 1.02,远低于化学计量比 2.125,表明该催化剂具有经济价值。用 ACC-CH-nZVI 进行了五次处理循环,铁浸出量最小(<2%),证明了其可重复使用性。高去除效率和极低的铁浸出水平表明,ACC-CH-nZVI 是一种高效且具有成本效益的催化剂,可用于水中非生物降解有机废物的类芬顿氧化。