首页> 外文会议>2010 4th International Conference on Bioinformatics and Biomedical Engineering >Preparation of Immobilized Fenton Reagent with H2O2 Generated by Solar Light-Illuminated Cuprous Oxide/Chitosan Nanocomposites at Neutral pH Value
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Preparation of Immobilized Fenton Reagent with H2O2 Generated by Solar Light-Illuminated Cuprous Oxide/Chitosan Nanocomposites at Neutral pH Value

机译:中性pH值太阳光照明的氧化亚铜/壳聚糖纳米复合材料生成的过氧化氢固定化Fenton试剂的制备

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The deposition of needle-shaped cuprous oxide (Cu2O) particles (20~50 nm) on chitosan nanoparticles were made by anodic oxidation of copper electrode in alkaline solution, Fe2+ was immobilized by chitosan nanoparticles with chelating. Chitosan-Fe2+/Cu2O were used as an immobilized Fenton reagent activated by visible light at biocompatible pH values(pH≈7-8) in the degradation of brilliant red X-3B without adding H2O2. The results indicated that the effect of this novel Fenton system (1g/L nano-sized Chitosan-Fe2+/Cu2O composites+ visible light) was better than that of traditional Fenton system. The residual copper ions and iron ions concentration after the degradation of the dye reactive brilliant red were 0.396mg/L and 0.105 mg/L respectively, which was lower than the present regulation for drinking water.
机译:通过在碱性溶液中对铜电极进行阳极氧化,在壳聚糖纳米颗粒上沉积针状氧化亚铜(Cu2O)颗粒(20〜50 nm),并通过螯合将壳聚糖纳米颗粒固定化Fe2 +。壳聚糖-Fe2 + / Cu2O用作固定的Fenton试剂,在生物相容的pH值(pH≈7-8)下被可见光激活,而无需添加H2O2即可降解亮红色X-3B。结果表明,该新型Fenton系统(1g / L纳米级壳聚糖-Fe2 + / Cu2O复合材料+可见光)的效果优于传统Fenton系统。染料活性艳红降解后的残留铜离子和铁离子浓度分别为0.396mg / L和0.105mg / L,低于现行的饮用水规定。

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