...
首页> 外文期刊>RSC Advances >Green synthesis of a bifunctional Fe-montmorillonite composite during the Fenton degradation process and its enhanced adsorption and heterogeneous photo-Fenton catalytic properties
【24h】

Green synthesis of a bifunctional Fe-montmorillonite composite during the Fenton degradation process and its enhanced adsorption and heterogeneous photo-Fenton catalytic properties

机译:Fenton降解过程中双功能Fe-蒙脱土复合材料的绿色合成及其增强的吸附和非均相光Fenton催化性能

获取原文
获取原文并翻译 | 示例

摘要

A novel Fe-MMT-I composite was synthesized during the degradation of rhodamine B (RhB) through Fenton's method, which could degrade RhB (concentration as high as 1000 mg L-1), reuse iron sludge and obtain a highly efficient bifunctional composite at the same time. X-ray diffraction analysis confirmed the existence of FeOOH in the composite. It is interesting to observe that the introduction of RhB leads to more FeOOH inserted into the layer of MMT, which enhanced both the adsorption and heterogeneous photo-Fenton activities of the composite. The Fe-MMT-I was efficient for the adsorption of RhB over a wide pH range (2.06-9.72). The Fe-MMT-RhB still exhibited a high adsorption capacity toward RhB even after five recycles using the heterogeneous Fenton method to regenerate the spent adsorbent. Furthermore, the Fe-MMT-I composite showed high efficiency for photo-Fenton discoloration of RhB with a wide operating pH range (2.01-11.67). Photoluminescence measurement and a leaching test demonstrated that the discoloration of RhB by the composite could be attributed to the synergetic effects of the enhanced adsorption power of the composite and the hydroxyl radicals initiated through the heterogeneous photo-Fenton process. This green method could lead to the construction of combined homogeneous and heterogeneous Fenton processes, which gives new insight into fabricating novel bifunctional composites for environmental remediation.
机译:通过Fenton法在罗丹明B(RhB)降解过程中合成了一种新型的Fe-MMT-I复合物,该复合物可降解RhB(浓度高达1000 mg L-1),再利用铁污泥,并获得高效的双功能复合物。同一时间。 X射线衍射分析证实了复合物中存在FeOOH。有趣的是,RhB的引入导致更多的FeOOH插入MMT层,从而增强了复合材料的吸附和非均相光Fenton活性。 Fe-MMT-I在宽pH范围(2.06-9.72)上有效吸附RhB。 Fe-MMT-RhB仍显示出对RhB的高吸附能力,即使在使用非均质Fenton方法进行了五次循环再生之后,废吸附剂也得以再生。此外,Fe-MMT-1复合材料在宽的工作pH范围(2.01-11.67)下对RhB的光芬顿褪色显示出高效率。光致发光测量和浸出测试表明,复合材料对RhB的褪色可归因于复合材料增强的吸附能力与异质光-Fenton过程引发的羟基自由基的协同作用。这种绿色方法可能导致均质和异质Fenton组合工艺的构建,这为制造新型双功能复合材料进行环境修复提供了新见识。

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