首页> 外文会议>International Conference on Nanomaterials >Photodegradation studies on Orange G and Acid Blue 113: New doped rare earth nano metal oxides as Visible light active photo catalyst
【24h】

Photodegradation studies on Orange G and Acid Blue 113: New doped rare earth nano metal oxides as Visible light active photo catalyst

机译:橙G和酸蓝113:新掺杂稀土纳米金属氧化物作为可见光活性照片催化剂的光降解研究

获取原文

摘要

Dyes are a source of serious pollutants from different industrial outlets and show a major contribution in polluting the environment. In the present study two dyes namely Orange G and Acid Blue 113 were compared for their photo degradation efficiency employing rare earth nano metal oxide as a visible active photo catalyst. The prepared catalyst was nanocrystalline form with particle size 70 nm and the surface of the catalyst was highly porous and rough which facilitates the absorption of the dye further enhance the photo degradation which were confirmed by various characterization techniques. Effect of pH, variation of catalyst dosage, variation of initial dye concentration and kinetic studies were conducted for both the dyes. The reaction followed a pseudo first order kinetics. The activity of the prepared catalyst was higher when compared to a commercially used metal oxide. Reusability studies proved that the catalyst prepared was very active even up to the third cycle. The degradation process was initiated by the attack of the OH radical generated in the in-situ process via visible light irradiation. EPR spin trapping technique was employed to confirm the presence of OH radicals. The prepared catalyst degraded the dye molecules of interest in lesser time duration by absorption of visible light, thereby reducing the cost of photo degradation.
机译:染料是来自不同工业网点的严重污染物的源泉,并在污染环境方面表现出主要贡献。在本研究中,将两种染料含有橙G和酸蓝113,以采用稀土纳米金属氧化物作为可见活性光催化剂的光降解效率。制备的催化剂是含有粒度70nm的纳米晶形式,催化剂的表面高度多孔,促进染料的吸收进一步增强通过各种表征技术证实的光降解。 pH,催化剂剂量变异的影响,对染料进行初始染料浓度和动力学研究的变化。该反应遵循伪第一阶动力学。与商业上使用的金属氧化物相比,制备的催化剂的活性更高。可重用性研究证明,制备的催化剂甚至非常活跃,甚至非常活跃,甚至非常活跃于第三个循环。通过可见光照射在原位过程中产生的OH基团的攻击引发了劣化过程。 EPR自旋捕获技术用于确认OH基团的存在。制备的催化剂通过吸收可见光在较小的时间持续时间下降解了较小的持续时间,从而降低了光降解的成本。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号