Du Linlin, Gao Peng, Meng Yide, Liu Yuanli, Le Shangwang, Yu Chuanbai
Guangxi Key Laboratory of Optical and Electronic Materials and Devices, College of Materials Science and Engineering, Guilin University of Technology, Guilin 541004, China.
ACS Omega. 2020 Mar 20;5(12):6651-6660. doi: 10.1021/acsomega.9b04438. eCollection 2020 Mar 31.
Pyrrole (Py) is easily agglomerated during the polymerization process, affecting its performance. In this paper, polypyrrole/monodispersed latex sphere (PPy/MLS) composites were prepared using in-situ polymerization for the adsorption of hexavalent chromium (Cr(VI)). The specific surface area of PPy/MLS (39.30 m/g) was increased relative to that of PPy (24.82 m/g), thus providing more effective adsorption sites. In addition, the adsorption properties of Cr(VI) under different conditions, including Py content, pH of the aqueous solution, and PPy/MLS dosage, were investigated to reveal the adsorption mechanism. The results showed that PPy/MLS possessed high Cr(VI) adsorption capacities when the Py content was 50 wt %. The maximum adsorption capacity was 343.64 mg/g at pH 2.0 and 25 °C. Remarkably, the adsorbents exhibited an excellent removal rate of Cr(VI) after three cycles of adsorption-desorption (over 99%), suggesting that the adsorbents had exceptional recyclability. Furthermore, the adsorption process followed quasi-second-order kinetics and Langmuir isothermal adsorption model. The high adsorption performance, sustainability, and cost-efficiency make this adsorbent a promising candidate for large-scale Cr(VI) contaminant removal.
吡咯(Py)在聚合过程中容易团聚,影响其性能。本文采用原位聚合法制备了聚吡咯/单分散乳胶球(PPy/MLS)复合材料用于吸附六价铬(Cr(VI))。相对于PPy(24.82 m²/g),PPy/MLS的比表面积(39.30 m²/g)有所增加,从而提供了更有效的吸附位点。此外,研究了不同条件下(包括Py含量、水溶液pH值和PPy/MLS用量)Cr(VI)的吸附性能,以揭示吸附机理。结果表明,当Py含量为50 wt%时,PPy/MLS具有较高的Cr(VI)吸附容量。在pH 2.0和25°C条件下,最大吸附容量为343.64 mg/g。值得注意的是,吸附剂在三个吸附-解吸循环后对Cr(VI)表现出优异的去除率(超过99%),表明吸附剂具有出色的可回收性。此外,吸附过程遵循准二级动力学和朗缪尔等温吸附模型。这种吸附剂具有高吸附性能、可持续性和成本效益,使其成为大规模去除Cr(VI)污染物的有前途的候选材料。