Singh Kirtiman, Maurya Shiwangi, Gupta Surabhi, Ranjan Nihar, Ramanathan Gurunath, Bhattacharya Shantanu
Microsystems Fabrication Lab, Department of Design, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India.
Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur 208016, Uttar Pradesh, India.
ACS Omega. 2023 Jul 24;8(31):28615-28627. doi: 10.1021/acsomega.3c03122. eCollection 2023 Aug 8.
A simple process of synthesizing coated filter element substrates (FES) containing zinc oxide (ZnO) nanorods and ZnO graphene-oxide nanocomposite for a pilot-scale industrial dye-effluent treatment plant is proposed. This work reports a detailed analysis of the photocatalysis mechanism on real industrial effluent streams containing a mixture of dyes. The analysis is very relevant for conducting advanced oxidation process-assisted effluent remediation at a field-level treatment operation. Estimation of the dye concentration shows nearly complete (≥98%) degradation from an initial dye sample concentration. A detailed study for the analysis of the initial reactive dyes and their degradation products was performed for quantification and identification of the degradation products through various spectral techniques. A design of the remediation mechanism through degradation pathways is proposed for characterizing the organic compounds in the degraded dye products. A regeneration and reusability study was performed on the FES presenting the durability of the FES-designed synthesis process originally for 11 cycles and regenerated FES for six cycles for achieving a threshold of 60% degradation efficiency. The experimental results demonstrate the efficacy of FES through the designed immobilized approach for the complete remediation of textile dye effluents for a 4 h treatment plant process and the consistent operability of the FES for the combined dye wastewater treatment operations.
本文提出了一种用于中试规模工业染料废水处理厂的、合成包含氧化锌(ZnO)纳米棒和ZnO-氧化石墨烯纳米复合材料的包覆过滤元件基材(FES)的简单工艺。这项工作详细分析了含多种染料混合物的实际工业废水流中的光催化机理。该分析对于在现场处理操作中进行高级氧化工艺辅助的废水修复非常重要。染料浓度的估算表明,初始染料样品浓度几乎完全降解(≥98%)。通过各种光谱技术对初始活性染料及其降解产物进行了详细研究,以定量和鉴定降解产物。提出了通过降解途径的修复机理设计,以表征降解染料产物中的有机化合物。对FES进行了再生和可重复使用性研究,结果表明最初设计的FES合成工艺的耐久性为11个循环,再生FES为6个循环,以达到60%降解效率的阈值。实验结果证明了FES通过设计的固定化方法对纺织染料废水进行4小时处理厂工艺的完全修复的有效性,以及FES在联合染料废水处理操作中的持续可操作性。