School of Materials Science and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, People's Republic of China.
School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, People's Republic of China.
J Colloid Interface Sci. 2022 Mar;609:825-837. doi: 10.1016/j.jcis.2021.11.086. Epub 2021 Nov 20.
Facile fabrication of the ultra-high-performance adsorbent can effectively ameliorate the Cr(VI)-pollution elimination in sewage control. Herein, a simple synthesis strategy is proposed to tap a versatile chelating resin poly(pyrogallol-tetraethylene pentamine) (PPTA) with respect to Cr(VI) removal from solution. Multiple changing factors which affect the adsorption behavior of PPTA are explored sequentially, such as initial pH, adsorbate concentration, adsorbent dosage, temperature, foreign ions, etc. The microstructure and functional mechanism of synthetic adsorbent are investigated systematically by means of various characterizations including TEM, EDS, FT-IR, XPS, etc. Consequently, the as-prepared PPTA-3 microsphere by reactant ratio of 1: 1 represents a brilliant synergistic adsorption and reduction result for Cr(VI) by the drastic electrostatic interaction of -NH and -OH groups, including satisfactory removal efficiency which closes to 100 % in low concentration, favorable specificity for the influence from coexistent ions (Mo(VI), Mn(VII), Cl, Cr(III), etc), and passable recyclability. Following the surpassingly fitting with Langmuir isotherm model, its maximum capacity reaches 714.29 mg g at 30 °C. The removal performance is essentially in agreement with the pseudo-second-order kinetics, simultaneously, suffers the rate-limiting impact depending on intra-particle diffusion process. In brief, this newly developed chelating resin presents an effective means with regard to the Cr(VI)-wastewater treatment or other uses in the future.
从废水中有效去除六价铬(Cr(VI))是当今环境保护领域的一个重要课题。本研究提出了一种简便的合成策略,用于制备多功能螯合树脂聚(邻苯三酚-四乙烯五胺)(PPTA),以去除废水中的 Cr(VI)。系统地探讨了多种因素对吸附剂吸附行为的影响,如初始 pH 值、吸附质浓度、吸附剂用量、温度、共存离子等。采用 TEM、EDS、FT-IR、XPS 等多种表征手段对合成吸附剂的微观结构和功能机制进行了系统研究。结果表明,反应物摩尔比为 1:1 时制备的 PPTA-3 微球通过-NH 和-OH 基团的强烈静电相互作用,对 Cr(VI)具有出色的协同吸附还原效果,包括在低浓度下接近 100%的去除效率、对共存离子(Mo(VI)、Mn(VII)、Cl、Cr(III)等)的良好选择性以及可重复使用性。该吸附剂符合 Langmuir 等温吸附模型,在 30°C 时最大吸附容量达到 714.29 mg·g。吸附动力学研究表明,该吸附过程符合准二级动力学模型,同时受内扩散过程的限制。总之,这种新型螯合树脂为 Cr(VI)废水处理或未来其他用途提供了一种有效的方法。