Department of Chemical Engineering, Jai Narain Vyas University, Jodhpur, 342011, India; Department of Chemical Engineering, Malaviya National Institute of Technology Jaipur, Jaipur, 302017, India.
Department of Chemical Engineering, Malaviya National Institute of Technology Jaipur, Jaipur, 302017, India.
J Environ Manage. 2018 Oct 1;223:825-833. doi: 10.1016/j.jenvman.2018.06.093. Epub 2018 Jul 6.
The present article reports the treatment of resorcinol using a catalytic wet peroxidation (CWPO) process in the presence of copper impregnated granular activated carbon (Cu/GAC) with a bench-scale batch reactor. The typical physico-chemical properties of synthesized catalyst were characterized with different equipment and methods. 90% resorcinol removal and 81% of TOC removal was achieved at optimum conditions (pH = 6, the stoichiometric ratio of HO/resorcinol = 1.2, catalyst dose = 0.5 g/L, initial concentration of resorcinol = 100 mg/L, temperature = 70 °C and time t = 4 h). Fourier-transform infrared spectroscopy (FTIR) measurements revealed that GAC posses various conjugated hydrocarbon groups including aromatic hydrocarbons, carboxylic groups, carboxyl and carbonate. Cu/GAC catalyst has a surface smoother than that of pristine GAC. At neutral or natural pH (∼6.4) of resorcinol, CWPO of resorcinol is favorable by Cu/GAC catalyst. Catalyst stability study revealed that Cu/GAC sustain its catalytic reactivity to over 76% in the five cycles without any regeneration. The thermogravimetric analysis confirmed that 350 °C temperature found to be optimum for calcination of Cu/GAC without any major losses. The mineralization mechanism was proposed based on intermediates identified during CWPO reaction.
本文报道了在铜浸渍颗粒活性炭(Cu/GAC)存在下,使用催化湿式过氧化(CWPO)工艺处理间苯二酚的方法。采用不同的设备和方法对合成催化剂的典型物理化学性质进行了表征。在最佳条件下(pH=6,HO/间苯二酚摩尔比=1.2,催化剂用量=0.5 g/L,间苯二酚初始浓度=100 mg/L,温度=70°C,时间 t=4 h),间苯二酚去除率达到 90%,TOC 去除率达到 81%。傅里叶变换红外光谱(FTIR)测量表明,GAC 具有各种共轭烃基,包括芳烃、羧基、羧基和碳酸盐。Cu/GAC 催化剂的表面比原始 GAC 更光滑。在间苯二酚的中性或自然 pH(约 6.4)条件下,Cu/GAC 催化剂有利于间苯二酚的 CWPO。催化剂稳定性研究表明,Cu/GAC 在不进行任何再生的情况下,在五个循环中保持其催化活性超过 76%。热重分析证实,350°C 是 Cu/GAC 煅烧的最佳温度,没有任何重大损失。根据 CWPO 反应中鉴定的中间产物,提出了矿化机理。