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使用清道夫鱼骨炭吸附水中的二元氟化物和五价砷。

Binary fluoride and As(V) adsorption in water using pleco fish bone chars.

机构信息

Environmental Agenda, Multidisciplinary Graduate Program in Environmental Sciences, University of San Luis Potosi, Av. Dr. M Nava No. 201, Zona Universitaria, 78210, San Luis Potosi, Mexico.

Postgraduate Study and Research Center, Faculty of Engineering, Autonomous University of San Luis Potosi, Zona Universitaria, Av. Dr. M Nava No. 8, 78290, San Luis Potosi, Mexico.

出版信息

Environ Sci Pollut Res Int. 2024 Jun;31(28):40156-40173. doi: 10.1007/s11356-023-29101-8. Epub 2023 Aug 9.

Abstract

The present work studied individual and binary adsorption of fluorides and As(V) in water on pleco fish bone chars (BC), as well as the effect of BC mass variation on the adsorption capacity of fluoride and As(V) in water for human consumption. The results of individual adsorption indicated that the adsorption of fluoride and As(V) on BC depends on solution pH. The adsorption capacity of fluorides at an initial concentration of 30 mg L increases approximately 3 times, from 5.9 to 15.3 mg g, when decreasing the pH of the solution from 9 to 5, however, for the case of As(V) an antagonistic effect is observed, the adsorption capacity increases 7 times when raising the pH from 5 to 9, from 18.4 to 132.1 µg g at an initial As(V) concentration of 300 µg L. Besides, in the binary adsorption, BC showed a higher affinity to adsorb fluoride since its adsorption capacity decreased from 16.55 to 12.50 mg g as the As(V) concentration increased from 0 to 800 µg L in solution. In contrast, As(V) adsorption was severely affected, decreasing from 140.2 to 32.7 µg g when the fluoride concentration in the solution increased from 0 to 100 mg L. On the other hand, in the adsorption of groundwater contaminated with fluoride and As(V), it was determined that increasing the mass of BC from 0.5 to 20 g increases the removal percentage, reaching 99.3 and 75.7% removal for fluoride and As(V), respectively, due to the fact that increasing the mass of the adsorbent leads to a larger area and a greater number of sites that allow the adsorption of these contaminants. The thermodynamic study revealed the spontaneity of fluoride and As(V) adsorption, better affinity for fluoride but higher adsorption rate of As(V) on BC. Characterization techniques such as XRD and EDS allowed identifying hydroxyapatite as the mineral phase of BC, which is responsible for the adsorption of BC. By studying the effect of solution pH on the adsorption capacities and the characterization of BC such as XRD, EDS and TGA, it was determined that the mechanisms of fluoride adsorption are by electrostatic attractions and ion exchange, and for As(V) it is by coprecipitation and ion exchange. It was concluded that BC from pleco fish could be an alternative for treating water contaminated by fluorides and As(V).

摘要

本研究工作旨在研究氟化物和 As(V)在水中的单组分和双组分吸附以及鱼鳞鱼骨炭(BC)质量变化对饮用水中氟化物和 As(V)吸附能力的影响。单组分吸附的结果表明,BC 对氟化物和 As(V)的吸附取决于溶液 pH 值。当溶液 pH 值从 9 降低到 5 时,氟化物在初始浓度为 30mg/L 时的吸附容量增加了约 3 倍,从 5.9mg/g 增加到 15.3mg/g,而对于 As(V),则观察到拮抗作用,当 pH 值从 5 升高到 9 时,As(V)的吸附容量增加了 7 倍,从 300µg/L 时的初始浓度 18.4µg/g 增加到 132.1µg/g。此外,在双组分吸附中,BC 对氟化物的吸附亲和力更高,因为随着溶液中 As(V)浓度从 0 增加到 800µg/L,其吸附容量从 16.55mg/g 降低到 12.50mg/g。相比之下,As(V)的吸附受到严重影响,当溶液中氟化物浓度从 0 增加到 100mg/L 时,其吸附容量从 140.2µg/g 降低到 32.7µg/g。另一方面,在受氟化物和 As(V)污染的地下水吸附研究中,确定将 BC 的质量从 0.5g 增加到 20g,去除率分别达到 99.3%和 75.7%,从而去除氟化物和 As(V),这是因为增加吸附剂的质量会导致更大的面积和更多的位点,从而允许这些污染物的吸附。热力学研究表明,氟化物和 As(V)的吸附是自发的,氟化物的亲和力更好,但 As(V)在 BC 上的吸附速率更高。XRD 和 EDS 等特征技术确定了羟磷灰石是 BC 的矿物相,这是 BC 吸附的原因。通过研究溶液 pH 值对吸附容量的影响以及对 XRD、EDS 和 TGA 等 BC 的特征分析,确定氟化物吸附的机制是静电吸引和离子交换,而 As(V)的吸附机制是共沉淀和离子交换。研究结果表明,来自食人鱼的鱼鳞鱼骨炭可以作为处理氟化物和 As(V)污染水的一种替代方法。

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