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水中锑氧阴离子的凝聚行为:pH值、无机和有机物质对铁沉淀物物理化学特性的影响

Coagulation Behavior of Antimony Oxyanions in Water: Influence of pH, Inorganic and Organic Matter on the Physicochemical Characteristics of Iron Precipitates.

作者信息

Inam Muhammad Ali, Lee Kang Hoon, Soni Hira Lal, Mangi Kashif Hussain, Channa Abdul Sami, Khan Rizwan, Wie Young Min, Lee Ki Gang

机构信息

Institute of Environmental Sciences and Engineering (IESE), School of Civil and Environmental Engineering (SCEE), National University of Sciences and Technology (NUST), H-12 Campus, Islamabad 44000, Pakistan.

Department of Energy and Environmental Engineering, The Catholic University of Korea, 43 Jibong-ro, Bucheon-si 14662, Korea.

出版信息

Molecules. 2022 Mar 3;27(5):1663. doi: 10.3390/molecules27051663.

Abstract

The presence of inorganic and organic substances may alter the physicochemical properties of iron (Fe) salt precipitates, thereby stabilizing the antimony (Sb) oxyanions in potable water during the chemical treatment process. Therefore, the present study aimed to examine the surface characteristics, size of Fe flocs and coagulation performance of Sb oxyanions under different aqueous matrices. The results showed that surface properties of Fe flocs significantly varies with pH in both Sb(III, V) suspensions, thereby increasing the mobility of Sb(V) ions in alkaline conditions. The negligible change in surface characteristics of Fe flocs was observed in pure water and Sb(III, V) suspension at pH 7. The key role of Van der Waals forces of attraction as well as hydration force in the aggregation of early formed flocs were found, with greater agglomeration capability at higher more ferric chloride dosage. The higher Sb(V) loading decreased the size of Fe flocs and reversed the surface charge of precipitates, resulting in a significant reduction in Sb(V) removal efficiency. The competitive inhibition effect on Sb(III, V) removal was noticed in the presence of phosphate anions, owing to lowering of ζ-potential values towards more negative trajectory. The presence of hydrophobic organic matter (humic acid) significantly altered the surface characteristics of Fe flocs, thereby affecting the coagulation behavior of Sb in water as compared to the hydrophilic (salicylic acid). Overall, the findings of this research may provide a new insight into the variation in physicochemical characteristics of Fe flocs and Sb removal behavior in the presence of inorganic and organic compounds during the drinking water treatment process.

摘要

无机和有机物质的存在可能会改变铁(Fe)盐沉淀物的物理化学性质,从而在化学处理过程中使饮用水中的锑(Sb)含氧阴离子稳定下来。因此,本研究旨在考察不同水相基质下铁絮体的表面特性、尺寸以及锑含氧阴离子的混凝性能。结果表明,在Sb(III,V)悬浮液中,铁絮体的表面性质均随pH值显著变化,从而增加了碱性条件下Sb(V)离子的迁移率。在pH值为7的纯水和Sb(III,V)悬浮液中,观察到铁絮体表面特性的变化可忽略不计。研究发现,范德华吸引力以及水化力在早期形成的絮体聚集中起关键作用,在较高的氯化铁投加量下具有更强的团聚能力。较高的Sb(V)负载量会减小铁絮体的尺寸并使沉淀物的表面电荷反转,导致Sb(V)去除效率显著降低。由于ζ电位值向更负的方向降低,在存在磷酸根阴离子的情况下,观察到对Sb(III,V)去除的竞争抑制作用。与亲水性物质(水杨酸)相比,疏水性有机物(腐殖酸)的存在显著改变了铁絮体的表面特性,从而影响了水中锑的混凝行为。总体而言,本研究结果可能为饮用水处理过程中无机和有机化合物存在下铁絮体物理化学特性的变化以及锑的去除行为提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9fe/8912098/a865a4ca4f6e/molecules-27-01663-g001.jpg

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