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基于碳材料在受限接触时间下联合吸附/臭氧化用于靛蓝染料脱色

Carbon-Based Materials in Combined Adsorption/Ozonation for Indigo Dye Decolorization in Constrain Contact Time.

作者信息

Fallah Naghmeh, Bloise Ermelinda, García-López Elisa I, Mele Giuseppe

机构信息

Department of Engineering for Innovation, University of Salento, Via Monteroni, 73100 Lecce, Italy.

Institute of Atmospheric Sciences and Climate, ISAC-CNR, Str. Prv. Lecce-Monteroni km 1.2, 73100 Lecce, Italy.

出版信息

Molecules. 2024 Aug 31;29(17):4144. doi: 10.3390/molecules29174144.

Abstract

This study presents a comprehensive evaluation of catalytic ozonation as an effective strategy for indigo dye bleaching, particularly examining the performance of four carbon-based catalysts, activated carbon (AC), multi-walled carbon nanotubes (MWCNT), graphitic carbon nitride (g-CN), and thermally etched nanosheets (CN-TE). The study investigates the efficiency of catalytic ozonation in degrading Potassium indigotrisulfonate (ITS) dye within the constraints of short contact times, aiming to simulate real-world industrial wastewater treatment conditions. The results reveal that all catalysts demonstrated remarkable decolorization efficiency, with over 99% of indigo dye removed within just 120 s of mixing time. Besides, the study delves into the mechanisms underlying catalytic ozonation reactions, elucidating the intricate interactions between the catalysts, ozone, and indigo dye molecules with the processes being influenced by factors such as PZC, pKa, and pH. Furthermore, experiments were conducted to analyze the adsorption characteristics of indigo dye on the surfaces of the materials and its impact on the catalytic ozonation process. MWCNT demonstrated the highest adsorption efficiency, effectively removing 43.4% of the indigo dye color over 60 s. Although the efficiency achieved with CN-TE was 21.4%, which is approximately half of that achieved with MWCNT and less than half of that with AC, it is noteworthy given the significantly lower surface area of CN-TE.

摘要

本研究对催化臭氧化作为一种有效的靛蓝染料漂白策略进行了全面评估,特别考察了四种碳基催化剂的性能,即活性炭(AC)、多壁碳纳米管(MWCNT)、石墨相氮化碳(g-CN)和热蚀刻纳米片(CN-TE)。该研究在短接触时间的限制下,研究了催化臭氧化降解靛蓝三磺酸钾(ITS)染料的效率,旨在模拟实际工业废水处理条件。结果表明,所有催化剂均表现出显著的脱色效率,在混合时间仅120秒内就去除了超过99%的靛蓝染料。此外,该研究深入探讨了催化臭氧化反应的潜在机制,阐明了催化剂、臭氧和靛蓝染料分子之间的复杂相互作用,这些过程受到诸如零电荷点(PZC)、酸解离常数(pKa)和pH值等因素的影响。此外,还进行了实验,以分析靛蓝染料在材料表面的吸附特性及其对催化臭氧化过程的影响。MWCNT表现出最高的吸附效率,在60秒内有效去除了43.4%的靛蓝染料颜色。尽管CN-TE的效率为21.4%,约为MWCNT的一半,且低于AC的一半,但考虑到CN-TE的表面积显著较低,这一点值得注意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e142/11397410/a8fe2c3494a7/molecules-29-04144-g001.jpg

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