Department of Chemical Engineering, Federal University of Technology, PMB.65, Minna, Niger State, Nigeria; Department of Chemical Engineering, Chukwuemeka Odumegwu Ojukwu University, PMB 02, Uli, Anambra State, Nigeria; Nanotechnology Research Group, Africa Centre of Excellence for Mycotoxin and Food Safety, Federal University of Technology, P.M.B 65, Minna, Niger State, Nigeria.
Department of Chemical Engineering, Federal University of Technology, PMB.65, Minna, Niger State, Nigeria; Nanotechnology Research Group, Africa Centre of Excellence for Mycotoxin and Food Safety, Federal University of Technology, P.M.B 65, Minna, Niger State, Nigeria.
Chemosphere. 2021 Mar;266:128937. doi: 10.1016/j.chemosphere.2020.128937. Epub 2020 Nov 16.
Herein, Taguchi L orthogonal array was used for the first time to optimize synthesis of diameter-controlled multi walled carbon nanotubes (MWCNTs). The nanoadsorbents, MWCNTs and MWCNTs were applied for Pb(II) and Ni(II) ion removal from paint, battery and electroplating wastewater. The results indicated successful synthesis of MWCNTs with diameter distribution ranges of 5-15 nm and 16-25 nm. The synthetized smaller diameter MWCNTs revealed higher Brunauer-Emett-Teller (BET) surface area of 1306 ± 5 m/g compared to larger diameter MWCNTswith the surface area of 1245 ± 4 m/g. They demonstrated excellent adsorption of Pb(II) and Ni(II) ions within the permissible concentration proposed by WHO at pH, contact time, adsorbent dosage and temperature of 5, 60 min, 30 mg/L and 50 °C, respectively. Particularly, MWCNTs possessed high adsorption capacity of 215.38 ± 0.03 mg/g for Pb(II) and 230.78 ± 0.01 mg/g for Ni(II). Again, the maximum adsorption capacity of 201.35 ± 0.02 and 206.40 ± 0.02 mg/g was achieved for Pb(II) and Ni(II) using MWCNTs. All in all, the adsorption capacity of the nanoadsorbents at the investigated diameter range showed higher efficiency compared to other materials for heavy metals elimination from chemical industrial wastewater.
在此,首次使用田口 L 正交数组来优化控制直径的多壁碳纳米管 (MWCNTs) 的合成。纳米吸附剂、MWCNTs 和 MWCNTs 被应用于从涂料、电池和电镀废水中去除 Pb(II) 和 Ni(II) 离子。结果表明成功合成了直径分布范围为 5-15nm 和 16-25nm 的 MWCNTs。与直径较大的 MWCNTs(比表面积为 1245 ± 4m/g)相比,合成的较小直径 MWCNTs 具有更高的 Brunauer-Emmett-Teller(BET)比表面积(1306 ± 5m/g)。它们在 pH 值、接触时间、吸附剂用量和温度分别为 5、60min、30mg/L 和 50°C 的情况下,对 Pb(II) 和 Ni(II) 离子的吸附符合世界卫生组织规定的可允许浓度。特别是,MWCNTs 对 Pb(II) 的吸附容量为 215.38 ± 0.03mg/g,对 Ni(II) 的吸附容量为 230.78 ± 0.01mg/g。此外,MWCNTs 对 Pb(II) 和 Ni(II) 的最大吸附容量分别为 201.35 ± 0.02mg/g 和 206.40 ± 0.02mg/g。总之,在所研究的直径范围内,纳米吸附剂对重金属的吸附能力比其他材料从化学工业废水中去除重金属的效率更高。