首页> 外文期刊>Journal of Molecular Liquids >Metoprolol beta-blocker decontamination from water by the adsorptive action of metal-organic frameworks-nano titanium oxide coated tin dioxide nanoparticles
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Metoprolol beta-blocker decontamination from water by the adsorptive action of metal-organic frameworks-nano titanium oxide coated tin dioxide nanoparticles

机译:通过金属 - 有机骨架 - 纳米氧化锡纳米氧化钛纳米氧化钛的吸附作用,富含托洛尔β-嵌入水净化。

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Due to prevalent use, resistance to hydrolysis and confined human metabolism, metoprolol (METP) b-blockers are excessively detected in water effluents and therefore must be removed. Adsorption of METP onto metalorganic frameworks-nano titanium oxide coated tin dioxide (nTiO(2)@SnO2@Mn(5AB-HQ)) nanocomposite was monitored to examine the potential decontamination from wastewater contaminated. The nTiO(2)@SnO2@Mn (5AB-HQ) nanocomposite was synthesized by the reaction of 5-azobenzoate-8-hydroxyquinoline (5AB-HQ) with manganese chloride in presence of mixed metal oxides (nTiO(2)@SnO2) under microwave heating irradiation for 3 min and effectively implemented for adsorption of METP. Excellent surface area was evident (267.75 m(2)g(-1)) and the maximum METP recoveries were 65.42,82.55 and 95.89% using 50, 100 and 150 mg L-1, respectively. The possible interaction mechanisms are suggested to take place by both physical adsorption in the forms of electrostatic and n-n interaction as well as chemical adsorption as coordination bond formation based on the effect of solution pH and zeta potential of MEW. Five kinetics models were monitored to assure adsorption fitting of METP via pseudo-second and pore film diffusion models. Seven isotherm models confirmed adsorption suitability of Langmuir and Redlich-Peterson models. Finally, the assembled nTiO(2)@SnO2@Mn(5AB-HQ) was confirmed as a substantially functionalized and recyclable nanocomposite to afford powerful nanomaterial for water decontamination of metoprolol b-blocker. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于普遍使用,抗水解和限制人代谢,氟洛尔罗醇(MetP)B阻滞剂在水流氟化氟中过度检测,因此必须除去。 MetP对金属有机骨架 - 纳米氧化钛涂覆的二氧化锡(NTIO(2)@ SnO2 @ Mn(5ab-HQ))纳米复合材料的吸附,以检查废水污染的潜在净化。通过在混合金属氧化物存在下用5-十五苯甲酸盐-8-羟基喹啉(5ab-HQ)的反应合成NTIO(2)@ SnO2 @ Mn(5ab-HQ)纳米复合材料(NTIO(2)@ snO2)在微波加热照射3分钟并有效地实施MetP的吸附。优异的表面积是明显的(267.75M(2)G(-1)),最大METP回收率分别使用50,100和150mg L-1分别为65.42,82.55和95.89%。建议通过静电和N-N相互作用的形式的物理吸附来进行可能的相互作用机制,以及基于溶液pH和Zeta电位的溶液的配位形成。监测五种动力学模型,以通过伪秒和孔膜扩散模型确保METP的吸附拟合。七位等温线模型确认了Langmuir和Redlich-Peterson模型的吸附适用性。最后,将组装的NTIO(2)@ SnO2 @ Mn(5ab-HQ)作为基本上官能化和可再循环的纳米复合材料,以提供强大的纳米材料,用于金属托洛尔B-嵌体的水净化。 (c)2020 Elsevier B.v.保留所有权利。

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