Department of Applied Chemistry, University of Johannesburg, Johannesburg, South Africa.
Saha Institute of Nuclear Physics, Kolkata, West Bengal, India.
J Colloid Interface Sci. 2016 Aug 15;476:103-118. doi: 10.1016/j.jcis.2016.05.013. Epub 2016 May 12.
Polypyrrole/hydrous tin oxide nanocomposites (PPy/HSnO NC 1, 2, 3, 4 and 5) were synthesized through encapsulating HSnO by the PPy via an in situ polymerization for fluoride removal. The optimized adsorbent i.e. PPy/HSnO NC 3 was characterized using FE-SEM, HR-TEM, ATR-FTIR, XRD, BET, TGA and zeta sizer. Microscopic images revealed the encapsulation of HSnO by precipitating PPy during polymerization. The FTIR and XRD studies confirmed the presence of both constituents. The BET surface area and pHpzc of the adsorbent were estimated to be 65.758m(2)/g and 7.6, respectively. The fluoride adsorption followed pseudo-second-order model and was commendably rapid. The monolayer adsorption capacity was found to be 26.16-28.99mg/g at pH 6.5±0.1. The thermodynamic parameters indicated the sorption of F(-) was spontaneous, endothermic and that physisorption occurred. The calculated activation energy (Ea∼20.05kJ/mol) provided further evidence of a physisorption mechanism. Moreover, the adsorbent performed very well over a considerably wide pH range of 3.5-8.5 and in the presence of other co-existing ions. The regeneration of the F(-) laden PPy/HSnO NC 3 showed a high desorption efficiency of 95.81% up to 3 cycles. Ground water tested results also demonstrate the potential utility of the PPy/HSnO NC as an effective adsorbent.
聚吡咯/水合氧化锡纳米复合材料(PPy/HSnO NC 1、2、3、4 和 5)通过 PPy 原位聚合将 HSnO 封装起来,用于去除氟化物。优化的吸附剂即 PPy/HSnO NC 3 通过 FE-SEM、HR-TEM、ATR-FTIR、XRD、BET、TGA 和zeta 粒径仪进行了表征。微观图像显示了聚合过程中 PPy 沉淀对 HSnO 的封装。FTIR 和 XRD 研究证实了两种成分的存在。吸附剂的 BET 表面积和 pHpzc 分别估计为 65.758m²/g 和 7.6。氟化物吸附符合准二级模型,且吸附速度很快。在 pH 6.5±0.1 下,单层吸附容量为 26.16-28.99mg/g。热力学参数表明 F(-)的吸附是自发的、吸热的,并且发生物理吸附。计算出的活化能(Ea∼20.05kJ/mol)进一步证明了物理吸附机制。此外,该吸附剂在相当宽的 pH 范围 3.5-8.5 内以及存在其他共存离子的情况下表现良好。F(-)负载的 PPy/HSnO NC 3 的再生显示出高达 95.81%的高解吸效率,可重复使用 3 次。地下水测试结果也证明了 PPy/HSnO NC 作为有效吸附剂的潜力。