用浸渍了活性 TiO2-Nps 的聚苯胺对工业染料废水进行 Fenton 介导的太阳能光催化处理

IF 3.261
Joshua Akinropo Oyetade, Revocatus Lazaro Machunda, Askwar Hilonga
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引用次数: 0

摘要

为治理污染严重的工业染料废水,人们研究了各种综合技术。此外,已知这些染料中有 70% 以上完全是纺织工业中使用的偶氮染料,其中 5-30% 以松散染料分子的形式存在于废水中,这些染料对处理具有顽抗性。这些挑战促使人们对节能工艺(太阳能)进行研究,并制造出高性能纳米光催化剂,用于染料废水的高效光催化,同时利用芬顿试剂对该工艺进行调解。该研究通过聚苯胺(PANI)与表面活性 TiO2 NPs 的新型原位耦合和浸渍,制备了纳米多聚物催化剂复合材料(P-AKT)。这种制备方法旨在开发一种高性能催化剂,它对来自太阳光照射的光子具有快速、高效的光催化活性。光催化过程使用新型 Fenton 试剂来促进染料降解自由基的生成。利用各种仪器表征方法研究了所制备纳米复合光催化剂的结构、分子、元素、功能和光电特性。结果表明,功能基团有助于染料与催化剂的结合,而形态相互作用则揭示了嵌入 PANI 大分子链中的 TiO2-Nps 的锐钛矿和金红石的表面活性四方晶体混合物。研究还揭示了 20 毫克用量、10 毫克/升初始浓度的最佳条件,在 pH 值为 5 和 7 时具有显著效果。然而,最有效的光催化剂是 P-AKT-2 % 和 P-AKT-3%,在太阳光照射 90 分钟时的效率分别为 95 % 和 94 %。这种光催化剂同样显示了其污水处理能力,可使用 4 个周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fenton-mediated solar-driven photocatalysis of industrial dye effluent with polyaniline impregnated with activated TiO2-Nps

Fenton-mediated solar-driven photocatalysis of industrial dye effluent with polyaniline impregnated with activated TiO2-Nps

Various integrated technologies have been investigated for the remediation of heavily polluted industrial dye effluent. Also, more than 70 % of these dyes are known to be solely azo dyes used in the textile industry with 5–30 % presence in the effluent as loose dye molecules which are recalcitrant to treatment. These challenges led to the investigation of energy-efficient processes (solar) and the fabrication of high-performance nano-photocatalysts for proficient photocatalysis of dye effluent while mediating the process with Fenton reagents. The study fabricated nanopolymeric catalyst composites (P-AKT) via novel in situ coupling and impregnation of the polyaniline (PANI) with surface-activated TiO2 NPs. This fabrication is aimed at developing a high-performance catalyst with rapid and proficient photocatalytic activities to photons from sunlight irradiation. The photocatalytic process was mediated using a novel Fenton reagent to enhance the generation of radical species for dye degradation. Various instrumental characterization methods were used to study the structural, molecular, elemental, functional and optoelectronic properties of the fabricated nanocomposite photocatalysts. The result reveals functional groups aiding dye-catalyst bonding and morphological interaction reveal a surface-activated tetragonal crystalline mixture of anatase and rutile from TiO2Nps embedded in the macromolecular chain of PANI. It also reveals the optimal conditions of 20 mg dosage, 10 mg/L initial concentration with substantial effectiveness at pH of 5 and 7. However, the most efficient photocatalyst recorded was P-AKT-2 % and P-AKT-3 % having 95 % and 94 % efficiencies at 90 min of solar irradiation. The photocatalyst equally demonstrated its capacity for effluent treatability up to 4 cycles of use.

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