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Microwave-assisted rapid degradation of DDT using nanohybrids of PANI with SnO_2 derived from Psidium Guajava extract

机译:番石榴渣提取物衍生的SnO_2与PANI纳米杂化物的微波辅助快速降解DDT

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摘要

The present work reports microwave-assisted synthesis of SnO2 nanoparticles via green route using Psidium Guajava extract. For the enhancement of catalytic activity, nanohybrids of SnO2 were formulated using different ratios of polyaniline (PANI) via ultrasound-assisted chemical polymerization. Formation of nanohybrids was confirmed via IR and XPS studies. The UV-vis DRS spectra of PANI/SnO2 revealed significant reduction in the optical band gap upon nanohybrid formation. Microwave-assisted catalytic efficiency of pure SnO2, PANI, PANI/SnO2 nanohybrids was investigated using DDT as a model persistent organic pollutant. The degradation efficiency of PANI/SnO2 was found to increase with the increase in the loading of PANI. Around 87% of DDT degradation was achieved within a very short period of 12 min under microwave irradiation using PANI/SnO2-50/50 as catalyst. The effect of DDT concentration was explored and the degradation efficiency of PANI/SnO2-50/50 catalyst was noticed to be as high as 82% in presence of 100 mg/L of DDT. The effect of microwave power on the degradation efficiency revealed 79% degradation using the same nanohybrid when exposed to microwave irradiation for 5 min under 1110 W microwave power. Scavenging studies confirmed the generation of center dot OH, center dot O-2(-). radicals. The fragments with m/z values as low as 86 and 70 were confirmed by LCMS analysis. Recyclability tests showed that PANI/SnO2-50/50 nanohybrid exhibited 81% degradation of DDT (500 mg/L) even after the third cycle, which reflected high catalytic efficiency as well as remarkable stability of the catalyst. This green nanohybrid could therefore be effectively utilized for the rapid degradation of persistent organic pollutants. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本工作报告了使用番石榴提取物通过绿色途径微波辅助合成SnO2纳米粒子。为了增强催化活性,通过超声辅助化学聚合反应,使用不同比例的聚苯胺(PANI)配制了SnO2纳米杂化物。通过IR和XPS研究证实了纳米杂化物的形成。 PANI / SnO2的UV-vis DRS光谱显示,形成纳米杂化物后,光学带隙显着减小。以DDT为模型持久性有机污染物,研究了纯SnO2,PANI,PANI / SnO2纳米杂化物的微波辅助催化效率。发现PANI / SnO2的降解效率随PANI含量的增加而增加。使用PANI / SnO2-50 / 50作为催化剂,在微波辐射下,在非常短的12分钟内,DDT的降解率达到了约87%。探索了滴滴涕浓度的影响,发现在100 mg / L滴滴涕存在下PANI / SnO2-50 / 50催化剂的降解效率高达82%。微波功率对降解效率的影响显示,当在1110 W微波功率下暴露于微波辐射5分钟时,使用相同的纳米杂化物,降解率为79%。清除研究证实了中心点OH,中心点O-2(-)的生成。部首。通过LCMS分析确认了m / z值低至86和70的片段。可循环性测试表明,即使在第三次循环后,PANI / SnO2-50 / 50纳米杂化物也显示出81%的DDT降解(500 mg / L),这反映出高的催化效率以及出色的催化剂稳定性。因此,这种绿色纳米杂化物可以有效地用于持久性有机污染物的快速降解。 (C)2020 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第4期|113917.1-113917.11|共11页
  • 作者

  • 作者单位

    Jamia Millia Islamia Mat Res Lab Dept Chem New Delhi 110025 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SnO2; Polyaniline; Pesticide degradation; Microwave irradiation; Radical scavenging;

    机译:SnO2;聚苯胺农药降解;微波辐射;自由基清除;

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