用于去除亚甲基蓝的稳定有效的 Fe-alginate/PVDF 复合电纺纳米纤维光 Fenton 催化剂

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES International Journal of Environmental Science and Technology Pub Date : 2024-07-26 DOI:10.1007/s13762-024-05903-2
Qian Feng, Jia Liu, Zhigang Liu, Yuhong Zhou, Yuze Zhou, Zhihui Dong, Dongyan Tang
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引用次数: 0

摘要

由于工业的快速发展,含有有机污染物的废水已造成严重的环境问题,并严重威胁人类健康。芬顿工艺是最经济的高级氧化方法之一,可以有效地分解和完全矿化有机污染物。Fenton 工艺已广泛应用于废水处理中去除有机染料,但由于铁污泥的二次污染,其实际应用受到限制。本研究采用电纺丝技术制备出质量比为 1:0.3 的海藻酸铁/PVDF 纳米纤维,然后用铁离子交换剂(0.08 wt%)作为光 Fenton 催化剂。对 20 mg/L 亚甲基蓝的催化降解结果表明,海藻酸盐/PVDF 纳米纤维(10 mg)具有显著的光-芬顿催化性能,在优化条件下(pH 值为 3,H2O2 浓度为 0.20 mM),40 分钟内可降解 97.24% 的亚甲基蓝。此外,海藻酸铁的润湿性和配位结构的发展防止了铁的浸出,并增强了海藻酸铁/PVDF 纳米纤维的结构稳定性,从而限制了应用过程中对废水的二次污染。此外,Fe-alginate/PVDF 纳米纤维可在 3.0-9.0 的宽 pH 值范围内有效去除甲基溴,适用于大多数工业废水(中性或微酸性 pH 值条件)。这项工作为制备稳定且经济高效的异相光-芬顿催化剂提供了一种简便的策略,展示了在工业规模废水处理中的潜在应用。
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Stable and effective photo-Fenton catalysts of Fe-alginate/PVDF composite electrospun nanofibers for the removal of methylene blue

Wastewater containing organic pollutants has created serious environmental issues and severely threatened human health due to the industry’s rapid development. Fenton processes, among the most economical advanced oxidation methods, can efficiently decompose and completely mineralize organic pollutants. Fenton processes have been widely employed in wastewater treatment to remove organic dyes; however, their practical application is limited due to the secondary pollution of Fe sludge. This work used the electrospinning technique to create Fe-alginate/PVDF nanofibers with a mass ration of 1:0.3, followed by iron ion exchange (0.08 wt%) as a photo-Fenton catalyst. The catalytic degradation of 20 mg/L methylene blue revealed that Fe-alginate/PVDF nanofibers (10 mg) had remarkable photo-Fenton catalytic performance, degrading 97.24% of methylene blue within 40 min under optimized conditions (pH of 3, H2O2 concentration of 0.20 mM). Additionally, the wetting property and the development of the Fe-alginate coordination structure prevented iron leaching and strengthened the Fe-alginate/PVDF nanofibers’ structure stability, thus limiting secondary pollution of wastewater during application. Moreover, Fe-alginate/PVDF nanofibers could effectively remove MB over a wide pH range of 3.0–9.0, applied to the majority industrial wastewater (neutral or slightly acidic pH conditions). This work provides a facile strategy to prepare stable and cost-effective heterogeneous photo-Fenton catalysts, demonstrating potential applications in industrial-scale wastewater treatment.

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来源期刊
CiteScore
5.60
自引率
6.50%
发文量
806
审稿时长
10.8 months
期刊介绍: International Journal of Environmental Science and Technology (IJEST) is an international scholarly refereed research journal which aims to promote the theory and practice of environmental science and technology, innovation, engineering and management. A broad outline of the journal''s scope includes: peer reviewed original research articles, case and technical reports, reviews and analyses papers, short communications and notes to the editor, in interdisciplinary information on the practice and status of research in environmental science and technology, both natural and man made. The main aspects of research areas include, but are not exclusive to; environmental chemistry and biology, environments pollution control and abatement technology, transport and fate of pollutants in the environment, concentrations and dispersion of wastes in air, water, and soil, point and non-point sources pollution, heavy metals and organic compounds in the environment, atmospheric pollutants and trace gases, solid and hazardous waste management; soil biodegradation and bioremediation of contaminated sites; environmental impact assessment, industrial ecology, ecological and human risk assessment; improved energy management and auditing efficiency and environmental standards and criteria.
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