Department of Petrochemical Engineering, SVS College of Engineering, Coimbatore, India.
Department of Petroleum Engineering, JCT College of Engineering & Technology, Coimbatore, India.
Chemosphere. 2022 Jan;287(Pt 4):132371. doi: 10.1016/j.chemosphere.2021.132371. Epub 2021 Sep 28.
The ability of polypyrrole-Iron oxide-seaweed nanocomposite has been tested for the removal of congo red from aqueous solution. The characteristics of nanocomposite after adsorption of Congo red (CR) have been analyzed. FTIR results authorized the involvement of various functional groups in the adsorption of CR. The change in morphology of nanocomposite was analyzed using scanning electron microscope (SEM). TEM and BET analysis were performed to characterize the nanocomposite. The effect of various parameters namely pH, adsorbent dosage, initial dye concentration, adsorption time and temperature are studied. The optimum condition for the effective removal of CR are: pH-3, initial CR concentration- 40 mg/L, nanocomposite dosage- 20 mg, contact time-40 min and temperature-40C. Adsorption isotherm studies and kinetic studies were done. Langmuir isotherm fits with the experimental data very well with high coefficient of determination (R = 0.98) and maximum dye uptake of 500 mg/g is reported. In kinetic studies, pseudo second order model was obeyed (R = 0.994). Thermodynamic properties were determined and found that the nature of process is spontaneous, endothermic and increased in randomness. The mechanism of sorption was proposed. Desorption studies were carried out and showed that the nanocomposite could be effectively reused up to five cycles. Thus the outcomes proved that the polypyrrole-iron oxide-seaweed nanocomposite to be an operative, recyclable and low-cost adsorbent for the treatment of dye bearing water.
聚吡咯-氧化亚铁-海藻酸钠纳米复合材料的去除水中刚果红的能力已经过测试。对吸附刚果红(CR)后的纳米复合材料的特性进行了分析。FTIR 结果证实了各种官能团参与 CR 的吸附。通过扫描电子显微镜(SEM)分析纳米复合材料的形貌变化。通过 TEM 和 BET 分析对纳米复合材料进行了表征。研究了各种参数的影响,即 pH 值、吸附剂用量、初始染料浓度、吸附时间和温度。有效去除 CR 的最佳条件为:pH 值为 3、初始 CR 浓度为 40mg/L、纳米复合材料用量为 20mg、接触时间为 40min 和温度为 40°C。进行了吸附等温线研究和动力学研究。Langmuir 等温线非常符合实验数据,具有高相关系数(R=0.98),报道的最大染料吸附量为 500mg/g。在动力学研究中,遵循拟二级模型(R=0.994)。确定了热力学性质,发现该过程的性质是自发的、吸热的和增加的随机性。提出了吸附的机理。进行了脱附研究,表明纳米复合材料可以有效重复使用多达 5 次。因此,结果表明聚吡咯-氧化亚铁-海藻酸钠纳米复合材料是一种用于处理含染料废水的有效、可回收和低成本的吸附剂。