Polymer Research Laboratory, Chemistry Department, Faculty of Science, Beni-Suef University, Beni-Suef, Egypt; Nanophotonics and Applications Lab, Physics Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt.
Nanophotonics and Applications Lab, Physics Department, Faculty of Science, Beni-Suef University, Beni-Suef 62514, Egypt; Geology Department, Faculty of Science, Beni-Suef University, Beni-Suef, Egypt.
Sci Total Environ. 2018 Nov 1;640-641:352-363. doi: 10.1016/j.scitotenv.2018.05.316. Epub 2018 May 31.
Polypyrrole nanofiber/Zn-Fe layered double hydroxide (Ppy NF/Zn-Fe LDH) was synthesized as nanocomposite of enhanced adsorption and photocatalytic properties. The formation of the composite was confirmed by XRD, FT-IR, HSEM, HRTEM, BET surface area and UV-vis spectrophotometer. Ppy NF/Zn-Fe LDH composite exhibits clear enhancing in the specific surface area and obvious reducing in the band gap energy (from 2.8 eV for Zn-Fe LDH to 2.31 eV for the composite). This was reflected in a considerable improvement in the adsorption capacity and photocatalytic removal of safranin dye. The adsorption capacity was enhanced by about 22% higher than Ppy NF and by 31% higher than Zn-Fe LDH. The photocatalytic removal was improved by 41.6% higher than Ppy NF and by about 54% higher than Zn-Fe LDH. The adsorption of safranin dye by the composite is chemisorption adsorption and occurs in a multilayer form. The complete photocatalytic removal of 5 mg/L of safranin dye can be achieved after 120 min illumination time using 0.05 g of the composite as photocatalyst and the best results can be obtained at neutral to alkaline conditions. Realistic application of the composite for the removal of dye from raw water samples revealed the applicability of the product for the purification of tap water, groundwater, and sewage water. Moreover, it can be used for six cycles of safranin dye removal from water. The photocatalytic degradation process appears to be controlled by the created hydroxyl radicals and formed photogenerated holes as the dominant active oxidizing radicals.
聚吡咯纳米纤维/Zn-Fe 层状双氢氧化物(Ppy NF/Zn-Fe LDH)被合成作为增强吸附和光催化性能的纳米复合材料。通过 XRD、FT-IR、HSEM、HRTEM、BET 比表面积和紫外可见分光光度计证实了复合材料的形成。Ppy NF/Zn-Fe LDH 复合材料表现出明显的比表面积增加和明显的带隙能降低(从 Zn-Fe LDH 的 2.8eV 降低到复合材料的 2.31eV)。这反映在吸附容量和对藏花红染料的光催化去除方面有了相当大的提高。吸附容量比 Ppy NF 提高了约 22%,比 Zn-Fe LDH 提高了 31%。光催化去除率比 Ppy NF 提高了 41.6%,比 Zn-Fe LDH 提高了约 54%。复合染料的吸附是化学吸附吸附,以多层形式发生。使用 0.05g 复合材料作为光催化剂,在 120 分钟的光照时间内,可以完全去除 5mg/L 的藏花红染料,在中性到碱性条件下可以获得最佳效果。该复合材料在原水样品中去除染料的实际应用表明,该产品适用于自来水、地下水和污水的净化。此外,它可以用于从水中去除藏花红染料的六个循环。光催化降解过程似乎由产生的羟基自由基和形成的光生空穴控制,它们是主要的活性氧化自由基。