Department of Civil Engineering, National Institute of Technology, Tiruchirappalli, 620 015, Tamil Nadu, India.
Department of Civil Engineering, National Institute of Technology, Tiruchirappalli, 620 015, Tamil Nadu, India.
Chemosphere. 2018 Jun;200:446-454. doi: 10.1016/j.chemosphere.2018.02.117. Epub 2018 Feb 20.
In the current study, Rhodamine B (RhB) dye was removed by electro-Fenton (EF) process using iron-doped SBA-15 (Fe-SBA-15; SBA: Santa Barbara Amorphous) mesoporous silica as a heterogeneous catalyst. This catalyst was prepared with the help of ferric nitrate nonahydrate as a forerunner by wet impregnation method. Various techniques of characterization such as XRD and N adsorption-desorption isotherms were performed to confirm the presence of iron particles in the pores of the catalyst. These characterization methods were also used to examine the morphological properties and textural arrangement of the synthesized material. In the batch study of EF process, 750 mL working volume of RhB dye was taken. Anode and cathode used in the process were graphite electrodes respectively with effective area of 25 cm each. To maximise the process efficiency, the effect of initial pH, applied voltage, electrode spacing, the concentration of supporting electrolyte and Fe-SBA-15 dosage were investigated and optimized. The optimum conditions obtained were pH of 2, voltage of 8 V, an electrode spacing of 3 cm and Fe-SBA-15 dosage of 15 mg L. At the end of 3 h electrolysis, maximum RhB removal of 97.7% and TOC removal of 35.1% were achieved for 10 mg L RhB concentration. In a batch study with real wastewater, 97% of color and 39% of TOC were removed at optimum conditions. Utilization of EF heterogeneous catalyst Fe-SBA-15 is an alternative technique for the elimination of dyes from solution.
在当前的研究中,使用铁掺杂介孔硅 SBA-15(Fe-SBA-15;SBA:圣巴巴拉无定形)作为多相催化剂,通过电芬顿(EF)工艺去除罗丹明 B(RhB)染料。该催化剂是在九水合硝酸铁的帮助下通过湿浸渍法制备的。采用 XRD 和 N 吸附-解吸等温线等各种表征技术来确认催化剂孔中存在铁颗粒。这些表征方法还用于检查合成材料的形态特性和结构排列。在 EF 工艺的批量研究中,采用 750mL 工作体积的 RhB 染料。该过程中使用的阳极和阴极分别是有效面积为 25cm 的石墨电极。为了最大程度地提高工艺效率,考察并优化了初始 pH、施加电压、电极间距、支持电解质浓度和 Fe-SBA-15 用量的影响。得到的最佳条件为 pH 2、电压 8V、电极间距 3cm 和 Fe-SBA-15 用量 15mg/L。在 3h 电解结束时,对于 10mg/L RhB 浓度,可实现 97.7%的 RhB 去除率和 35.1%的 TOC 去除率。在实际废水的批量研究中,在最佳条件下可去除 97%的颜色和 39%的 TOC。EF 多相催化剂 Fe-SBA-15 的利用是从溶液中去除染料的替代技术。