Removal of mixed pollutants of perfluorooctanoic acid and 2,4,6-trichlorophenol via adsorption-photocatalysis using Ga2O3-Bi4O7 combining with fluorine-doped covalent triazine framework: Role of different active species

IF 9.4 1区 化学 Q1 CHEMISTRY, PHYSICAL Journal of Colloid and Interface Science Pub Date : 2024-07-24 DOI:10.1016/j.jcis.2024.07.188
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Abstract

Perfluorooctanoic acid (PFOA) and 2,4,6-trichlorophenol (2,4,6-TCP) are significant pollutants found in textile wastewater, posing severe threats to ecological environments. The construction of an adsorption-photocatalytic system enables the efficient removal of mixed pollutants by harnessing their synergistic effect, thereby overcoming the limitations of removing mixed pollutants with single water treatment technologies. Herein, fluorine-doped covalent triazine framework (F-CTF) was combined with Ga2O3-Bi4O7 heterojunction to obtain Ga2O3-Bi4O7/F-CTF (GaBi/CTF). F-CTF greatly facilitates the adsorption process and provides convenience for photocatalysis. Simultaneously, the excellent conductivity of F-CTF promoted the separation of photoinduced charge carriers in Ga2O3-Bi4O7. GaBi/CTF5 (5 is the mass percentage of F-CTF) showed excellent degradation performance, and the removal rates of PFOA and 2,4,6-TCP reached 93.0 % and 100.0 % within 90 min, respectively. Mechanistic analysis revealed that 2,4,6-TCP and PFOA were attacked by distinct active species because of the disparate characteristics. The presence of phenolic hydroxyl groups makes 2,4,6-TCP more vulnerable to superoxide radicals (·O2) and hydroxyl radicals (·OH), whereas PFOA is oxidized by holes (h+). The coexistence of mixed pollutants with diverse characteristics enables optimal utilization of active species generated within photocatalytic system. Moreover, the good stability of GaBi/CTF5 provides a feasible solution for efficient treatment of mixed pollutants in textile wastewater.

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利用结合了掺氟共价三嗪框架的 Ga2O3-Bi4O7 通过吸附-光催化去除全氟辛酸和 2,4,6- 三氯苯酚混合污染物:不同活性物种的作用。
全氟辛酸(PFOA)和 2,4,6-三氯苯酚(2,4,6-TCP)是纺织废水中的重要污染物,对生态环境构成严重威胁。通过构建吸附-光催化系统,可以利用混合污染物的协同效应高效去除混合污染物,从而克服单一水处理技术去除混合污染物的局限性。本文将掺氟共价三嗪框架(F-CTF)与 Ga2O3-Bi4O7 异质结相结合,得到了 Ga2O3-Bi4O7/F-CTF (GaBi/CTF)。F-CTF 大大促进了吸附过程,为光催化提供了便利。同时,F-CTF 优异的导电性促进了 Ga2O3-Bi4O7 中光诱导电荷载流子的分离。GaBi/CTF5 (5 为 F-CTF 的质量百分比)表现出优异的降解性能,在 90 分钟内对 PFOA 和 2,4,6-TCP 的去除率分别达到 93.0% 和 100.0%。机理分析表明,2,4,6-TCP 和 PFOA 因其不同的特性而受到不同活性物种的攻击。酚羟基的存在使 2,4,6-TCP 更容易受到超氧自由基(-O2-)和羟基自由基(-OH)的攻击,而 PFOA 则会被空穴(h+)氧化。具有不同特性的混合污染物共存,使光催化系统内产生的活性物种得到了最佳利用。此外,GaBi/CTF5 的良好稳定性为高效处理纺织废水中的混合污染物提供了可行的解决方案。
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来源期刊
CiteScore
16.10
自引率
7.10%
发文量
2568
审稿时长
2 months
期刊介绍: The Journal of Colloid and Interface Science publishes original research findings on the fundamental principles of colloid and interface science, as well as innovative applications in various fields. The criteria for publication include impact, quality, novelty, and originality. Emphasis: The journal emphasizes fundamental scientific innovation within the following categories: A.Colloidal Materials and Nanomaterials B.Soft Colloidal and Self-Assembly Systems C.Adsorption, Catalysis, and Electrochemistry D.Interfacial Processes, Capillarity, and Wetting E.Biomaterials and Nanomedicine F.Energy Conversion and Storage, and Environmental Technologies
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