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Microwave-induced catalytic degradation of a textile dye using bentonite-poly(o-toluidine) nanohybrid

机译:膨润土-聚(甲苯胺)纳米杂化剂对微波诱导的纺织品染料的催化降解

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The present study highlights the potential use of natural clay based organic-inorganic hybrids as eco-friendly catalysts for the degradation of Malachite Green under microwave irradiation. Bentonite-poly(o-toluidine) nano hybrid was prepared through microwave-assisted solid state in situ intercalation and polymerization. The intercalation of poly(o-toluidine) was confirmed by X-ray diffraction analysis, while its conducting state was confirmed by UV-visible spectroscopy. Transmission electron microscopic studies revealed that poly(o-toluidine) extracted from the bentonite interlayer space formed nano spheres and tablets of controlled dimensions. The catalytic efficiency of the nanohybrid in degrading Malachite Green under microwave irradiation was investigated in 100 ppm dye solution in the presence of 200 mg of the catalyst for different time intervals. The degradation efficiency of the nanohybrid was observed to be as high as 95% in 10 min. Kinetic analysis demonstrated pseudo first order reaction rate with k values equal to 0.17 min(-1) and 0.19 min(-1) respectively at 300 nm and 625 nm in presence of nanohybrid catalyst. Liquid chromatography-mass spectroscopy confirmed the degradation of dye into intermediates of molar mass as low as m/z 89 and 58. TOC analysis showed 94% mineralization of the dye in 20 min in presence of nanohybrid catalyst. Thus, this nanohybrid could be used as a benign microwave catalyst for the non-toxic degradation of dyes under microwave irradiation in absence of UV-visible light source.
机译:本研究强调了潜在的基于天然粘土的有机-无机杂化体作为微波辐射下孔雀石绿降解的环保催化剂的潜在用途。通过微波辅助固态原位嵌入和聚合制备膨润土-聚(甲苯胺)纳米杂化体。通过X射线衍射分析证实了聚(邻甲苯胺)的插入,而通过紫外-可见光谱法证实了其导电状态。透射电子显微镜研究表明,从膨润土夹层空间中提取的聚(邻甲苯胺)可形成尺寸可控的纳米球和片剂。在200 mg催化剂存在下,在不同的时间间隔下,在100 ppm的染料溶液中研究了纳米杂化物在微波辐射下降解孔雀石绿的催化效率。观察到纳米杂化物的降解效率在10分钟内高达95%。动力学分析表明,在存在纳米混合催化剂的情况下,在300 nm和625 nm处k值分别等于0.17 min(-1)和0.19 min(-1)的拟一级反应速率。液相色谱-质谱法证实染料降解为摩尔质量低至m / z 89和58的中间体。TOC分析表明,在存在纳米混合催化剂的情况下,在20分钟内染料的矿化率为94%。因此,该纳米杂化物可用作在无紫外线可见光源的情况下在微波辐射下染料无毒降解的良性微波催化剂。

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