Department of Petrochemical Engineering, SVS College of Engineering, Coimbatore, India.
Department of Petroleum Engineering, JCT College of Engineering & Technology, Coimbatore, India.
Environ Res. 2021 Oct;201:111626. doi: 10.1016/j.envres.2021.111626. Epub 2021 Jul 2.
The present work explains the sorption ability of a novel nano-composite, Polypyrrole -iron oxide-seaweed (PPy - FeO - SW), for Cr(VI) removal. The influence of operating parameters, namely pH, contact time, nanocomposite dosage, initial Chromium concentration and operating temperature, on the hexavalent chromium removal was studied. The novel nano-composite was analyzed using FTIR, SEM and EDS to confirm the sorption of Cr(VI) and to understand the mechanism of sorption. PPy - FeO- SW nano-composite removed 96.36% of Cr(VI) at the optimized conditions of pH = 2, temperature = 30 °C, initial Cr(VI) concentration = 50 mg/L, nanocomposite dosage = 100 mg and contact time = 30min. PPy-FeO-SW nanocomposite has a maximum sorption capacity of 144.93 mg/g. The kinetic studies revealed that the metal adsorption obeys pseudo second order (PSO) model and the sorption was found to be monolayer in nature as confirmed by Langmuir isotherm (R > 0.9985). Electrostatic interaction and ion-exchange are identified as the fundamental mechanisms for Cr(VI) sorption on PPy-FeO-SW composite.
本工作解释了一种新型纳米复合材料聚吡咯-氧化铁-海藻(PPy-FeO-SW)对六价铬(Cr(VI))去除的吸附能力。研究了操作参数,即 pH、接触时间、纳米复合材料用量、初始铬浓度和操作温度对六价铬去除的影响。使用 FTIR、SEM 和 EDS 对新型纳米复合材料进行了分析,以确认 Cr(VI)的吸附,并了解吸附的机理。在优化条件下,即 pH = 2、温度 = 30°C、初始 Cr(VI)浓度 = 50mg/L、纳米复合材料用量 = 100mg 和接触时间 = 30min,PPy-FeO-SW 纳米复合材料去除了 96.36%的 Cr(VI)。PPy-FeO-SW 纳米复合材料的最大吸附容量为 144.93mg/g。动力学研究表明,金属吸附符合准二级(PSO)模型,吸附被发现是单层的,如朗缪尔等温线(R>0.9985)所证实。静电相互作用和离子交换被确定为 Cr(VI)在 PPy-FeO-SW 复合材料上吸附的基本机制。