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Hydroxamic acid mediated heterogeneous Fenton-like catalysts for the efficient removal of Acid Red 88, textile wastewater and their phytotoxicity studies

机译:异羟肟酸介导的非均相类Fenton催化剂可有效去除酸性红88,纺织废水及其植物毒性研究

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Heterogeneous Fenton-like catalyst and its industrial application are increasingly given importance for its non-selective mineralization of organic pollutants in broad pH range. Current study, utilized an aromatic hydroxamic acid derivative 2-hydroxypyridine-N-oxide (HpO), for the construction of iron-Hpo ligand catalyst supported on granular activated carbon (GAC). 8-Hydroxyquinoline and citric acid as non-hydroxamic aromatic and aliphatic Fenton-like catalysts were used for comparative evaluation of the efficiency with targeted catalyst (iron-HpO-GAC). This novel catalyst iron-HpO-GAC exhibits excellent efficiency in Acid Red 88 dye removal in the presence of hydrogen peroxide as oxidant at acidic, basic as well as at neutral conditions. Operational conditions for the catalytic oxidation including temperature, dye concentration, pH and catalyst dosage were systematically investigated and analyzed through kinetic studies. Thermodynamic analysis of the catalytic dye removal revealed that the system could oxidize pollutants faster with less activation energy requirement. Higher level of recyclability and stability of the catalyst with less iron leaching was achieved. Finally, the real time application of the catalyst was investigated through successful repeated treatment for actual industrial wastewater. The phytotoxicity assay (with respect to plant Phaseolus mungo) revealed that the degradation of Acid Red 88 and dye wastewater produced nontoxic metabolites which increases its potential application. This study emphasizes the viability of hydroxamate mediated efficient Fenton-like oxidation as a novel approach in designing economically viable pollutant removal technology.
机译:非均相类Fenton催化剂及其工业应用越来越受到重视,因为它在宽pH范围内非选择性地矿化有机污染物。当前的研究利用芳族异羟肟酸衍生物2-羟基吡啶-N-氧化物(HpO)来构建负载在颗粒活性炭(GAC)上的铁-Hpo配体催化剂。使用8-羟基喹啉和柠檬酸作为非异羟肟酸酯的芳族和脂族类芬顿催化剂,比较了目标催化剂(铁-HpO-GAC)的效率。这种新型的催化剂铁-HpO-GAC在酸性,碱性以及中性条件下,在过氧化氢作为氧化剂的存在下,在酸性红88染料去除方面显示出优异的效率。通过动力学研究系统地研究了催化氧化的操作条件,包括温度,染料浓度,pH和催化剂用量。催化染料去除的热力学分析表明,该系统可以更快地氧化污染物,而所需的活化能更少。在较少的铁浸出的情况下,实现了更高水平的催化剂可回收性和稳定性。最后,通过对实际工业废水的成功重复处理,研究了催化剂的实时应用。植物毒性试验(针对植物菜豆)显示,酸性红88和染料废水的降解产生了无毒代谢产物,从而增加了其潜在应用。这项研究强调了异羟肟酸酯介导的高效Fenton样氧化的可行性,这是设计经济可行的污染物去除技术的一种新方法。

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