Effective and simultaneous removal of organic/inorganic arsenic using polymer-based hydrated iron oxide adsorbent: Capacity evaluation and mechanism

吸附 砷酸盐 化学 Zeta电位 氧化铁 无机化学 X射线光电子能谱 水处理 亚砷酸盐 氧化物 化学工程 腐植酸 核化学 朗缪尔吸附模型 吸附 环境化学 饮用水净化 纳米颗粒 有机化学 工程类
作者
Biming Liu,Zhenxue Liu,Haixia Wu,Shunlong Pan,Xing Cheng,Yongjun Sun,Yanhua Xu
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:742: 140508-140508 被引量:49
标识
DOI:10.1016/j.scitotenv.2020.140508
摘要

In this study, resin-based hydrated iron oxide (HFOR) composites were prepared and used as a functional adsorbent for the simultaneous removal of p-Arsanilic acid (p-ASA) and arsenate (As (V)). The effects of solution pH and coexisting substances on the adsorption of different arsenic species were also investigated. Results showed that the coexisting substances slightly affected the adsorption process of two arsenic species. Analysis of the adsorption behavior, isotherm equilibrium, and adsorption kinetics, as well as that results of the X-ray photoelectron spectroscopy, zeta potential, and other analytical methods revealed that the satisfactory adsorption performance of HFOR can be attributed to the electrostatic interactions induced by the positively charged groups and the coordination of the hydrated iron oxide nanoparticles, which exhibited excellent specific adsorption for both arsenic species. Moreover, HFOR showed high acid and alkali resistance and reusability, as well as a constant co-removal performance for different arsenic species in five consecutive operating cycles (55 mg As/g of As(V) and 18 mg/g of p-ASA). Results of continuous running fixed-bed column experiments confirmed that HFOR enabled excellent simultaneous adsorption for p-ASA and As(V).
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