Coagulation performance and mechanism of different novel covalently bonded organic silicon-aluminum/iron composite coagulant for As(V) removal from water: The role of hydrolysate species and the effect of coexisting microplastics

IF 12.2 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Journal of Hazardous Materials Pub Date : 2024-09-11 DOI:10.1016/j.jhazmat.2024.135819
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Abstract

Arsenate [As(V)] pollution is a challenge for water treatment, and the effect of coexisting microplastics (MPs) on As(V) removal is still not clear. In this study, series novel covalently bonded organic silicon-aluminum/iron composite coagulants (CSA/F) with different Al/Fe molar ratios were prepared for enhancing As(V) removal. The effect mechanism of MPs (PS MPs and PS-COOH MPs) on As(V) removal by using CSAF coagulation was analyzed. CSAF and CSF showed significantly better As(V) removal performance than other coagulants under the same conditions, especially CSF, more than 90 % As(V) removal was achieved at dosage of 20 mg/L and pH of 4.0–8.0. Interestingly, the introduction of silane coupling agent and the increase of Fe content in CSA/F changed the Al/Fe species distribution. Charge neutralization dominant in As(V) removal by using CSA, whereas adsorption and net sweeping contributed to As(V) coagulation by using CSAF and CSF with higher iron proportion at neutral pH. 3 µm MPs were removed by net sweeping of amorphous Al/Fe hydroxides, while 26 µm MPs were charge-neutralized or surface adsorbed by coagulant hydrolysates. The aliphatic C-H and -COOH functional groups of MPs were the main sites of hydrogen bonding adsorption with the hydroxyl groups of coagulant hydrolysates. This study is conducive to mitigating the environmental toxicity of arsenic and provides new insights into the interaction mechanism between composite pollutants and coagulants in waters.

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不同新型共价键有机硅铝铁复合混凝剂去除水中As(V)的混凝性能和机理:水解物种类的作用和共存微塑料的影响
砷酸盐[As(V)]污染是水处理面临的一个挑战,而共存的微塑料(MPs)对 As(V) 的去除效果尚不明确。本研究制备了一系列不同 Al/Fe 摩尔比的新型共价键有机硅铝铁复合混凝剂(CSA/F),以提高对 As(V) 的去除率。分析了 MPs(PS MPs 和 PS-COOH MPs)对 CSAF 混凝法去除 As(V) 的影响机理。在相同条件下,CSAF和CSF对As(V)的去除效果明显优于其他混凝剂,尤其是CSF,在投加量为20 mg/L、pH值为4.0-8.0时,对As(V)的去除率超过90%。有趣的是,CSA/F 中硅烷偶联剂的引入和铁含量的增加改变了铝/铁的物种分布。使用 CSA 时,电荷中和在去除 As(V)方面占主导地位,而使用 CSAF 和 CSF 时,在中性 pH 条件下,铁的比例越高,吸附和净扫作用对 As(V)的凝聚越有利。无定形铝/铁氢氧化物的净扫除去了 3 微米的 MPs,而 26 微米的 MPs 则被电荷中和或被混凝剂水解物表面吸附。MPs 的脂肪族 C-H 和 -COOH 官能团是与混凝剂水解物羟基发生氢键吸附的主要部位。该研究有助于减轻砷的环境毒性,并对水体中复合污染物与混凝剂之间的相互作用机理提供了新的见解。
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来源期刊
Journal of Hazardous Materials
Journal of Hazardous Materials 工程技术-工程:环境
CiteScore
25.40
自引率
5.90%
发文量
3059
审稿时长
58 days
期刊介绍: The Journal of Hazardous Materials serves as a global platform for promoting cutting-edge research in the field of Environmental Science and Engineering. Our publication features a wide range of articles, including full-length research papers, review articles, and perspectives, with the aim of enhancing our understanding of the dangers and risks associated with various materials concerning public health and the environment. It is important to note that the term "environmental contaminants" refers specifically to substances that pose hazardous effects through contamination, while excluding those that do not have such impacts on the environment or human health. Moreover, we emphasize the distinction between wastes and hazardous materials in order to provide further clarity on the scope of the journal. We have a keen interest in exploring specific compounds and microbial agents that have adverse effects on the environment.
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