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天然和化学改性西瓜皮在水溶液和地下水中去除砷。

Arsenic removal by natural and chemically modified water melon rind in aqueous solutions and groundwater.

机构信息

Institute of Soil and Environmental Sciences, University of Agriculture Faisalabad, Faisalabad 38040, Pakistan; Department of Environmental Sciences and Engineering, Government College University Faisalabad, Faisalabad 38000, Pakistan.

Institute of Soil and Environmental Sciences, University of Agriculture Faisalabad, Faisalabad 38040, Pakistan; MARUM and Department of Geosciences, University of Bremen, Bremen D-28359, Germany.

出版信息

Sci Total Environ. 2018 Dec 15;645:1444-1455. doi: 10.1016/j.scitotenv.2018.07.218. Epub 2018 Jul 24.

Abstract

Contamination of groundwater with toxic arsenic (As) has become an emerging health and environmental problem around the world, which has seen significant attention amongst the scientists for development of new sorbents to remediate As-contaminated water. Here, we explored the arsenate (As(V)) and arsenite (As(III)) sorption to natural water melon rind (WMR), xanthated WMR and citric acid-modified WMR in aqueous solutions, and determined potential of the most potent sorbent for As removal in groundwater. Xanthated WMR (X-WMR) showed relatively higher As(V) and As(III) removal than the citric acid modified WMR (CA-WMR) and natural WMR. The maximum As(III) (99%) and As(V) (98%) removal was obtained at pH 8.2 and 4.6, respectively, by X-WMR at 4 mg L initial As(V) and As(III) concentrations and sorbent dose of 1 g L. Langmuir isotherm model best fitted (R of up to 0.96) the data both for As(III) and As(V) sorption to X-WMR. Sorption kinetics of As(V) and As(III) was well described (R of up to 0.99) by the pseudo second-order model on surface of the X-WMR. Thermodynamic investigations revealed that As(V) and As(III) sorption was endothermic and spontaneous. The FTIR spectroscopy depicted the presence of different surface function groups (OH, COOH, S-bearing (C=S, S=O and S-S)) which were involved in As(V) and As(III) sequestration on the sorbents examined here. Significantly, X-WMR showed (up to 49%) greater As(III) and As(V) sorption than that of natural WMR. Our results demonstrated that X-WMR efficiently removed 94%-100% (n = 16) of As from As-contaminated drinking well water which possessed detectable concentrations of some anions (e.g., SO, CO, HCO). This study highlights that the X-WMR has potential to remove As, notably As(III), from solutions and drinking water, and might be utilized as a reactive medium for the treatment of As-contaminated water.

摘要

地下水受有毒砷(As)污染已成为全球范围内一个新出现的健康和环境问题,引起了科学家们的广泛关注,他们正在开发新的吸附剂来修复受 As 污染的水。在这里,我们研究了天然西瓜皮(WMR)、黄原酸化 WMR 和柠檬酸改性 WMR 对水溶液中砷酸盐(As(V))和亚砷酸盐(As(III))的吸附,并确定了最有效的吸附剂去除地下水砷的潜力。黄原酸化 WMR(X-WMR)对 As(V)和 As(III)的去除率相对较高,而柠檬酸改性 WMR(CA-WMR)和天然 WMR 则相对较低。在初始 As(V)和 As(III)浓度为 4mg/L、X-WMR 用量为 1g/L 的情况下,在 pH 值为 8.2 和 4.6 时,X-WMR 对 As(III)和 As(V)的最大去除率分别为 99%和 98%。Langmuir 等温线模型对 X-WMR 吸附 As(III)和 As(V)的数据拟合度最高(高达 0.96)。As(V)和 As(III)的吸附动力学很好地符合(高达 0.99)X-WMR 表面的拟二级模型。热力学研究表明,As(V)和 As(III)的吸附是吸热和自发的。傅里叶变换红外光谱(FTIR)表明,不同的表面官能团(OH、COOH、含 S 基团(C=S、S=O 和 S-S))参与了吸附剂对吸附的吸附。值得注意的是,X-WMR 对 As(III)和 As(V)的吸附能力(高达 49%)高于天然 WMR。我们的研究结果表明,X-WMR 能有效去除受污染饮用水井水中的 As,去除率高达 94%-100%(n=16),这些饮用水井水中含有一些阴离子(如 SO、CO、HCO)。本研究强调,X-WMR 具有从溶液和饮用水中去除 As,特别是 As(III)的潜力,可作为处理受 As 污染水的反应性介质。

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