Chang Chi-Jung, Chao Pei-Yao, Chou Chen-Yi, Chen Ying-Jen, Huang Chih-Feng
Department of Chemical Engineering, Feng Chia University, 100, Wenhwa Road, Seatwen, Taichung 40724, Taiwan.
Department of Chemical Engineering, i-Center for Advanced Science and Technology (ICAST), National Chung Hsing University, Eng Bld 3, 250 Kuo Kuang Road, Taichung 40227, Taiwan.
Polymers (Basel). 2020 Sep 13;12(9):2082. doi: 10.3390/polym12092082.
It is crucial to remove heavy metals and dyes before discharging industrial effluents. Gauze substrate was surface-modified by coating with a polymeric adsorbent and a spray coating of BiOBr photocatalyst to develop a novel dual-functional membrane, polymer/BiOBr-modified gauze, for water remediation. The polymeric adsorbent was crosslinked to prevent the dissolving of the adsorbent during operation in contaminated water. The morphology and surface chemistry of the modified gauze were characterized before and after the adsorption of Ni. The surface wettability, isotherms, and kinetics of Ni adsorption were studied. We also studied the effect of pH, initial Ni concentration, monomer molar ratio, and monomer chemical structure on the Ni adsorption capacity. To achieve a high Ni adsorption capacity and good photocatalytic decolorization activity, the amount of decorated BiOBr was tuned by changing the spray-coating time to optimize the exposed BiOBr and polymer on the surface. The optimized dual-functional membrane PB20 possesses excellent adsorption capacity (650 mg g) for Ni ions and photocatalytic decolorization activity (100% degradation of RhB within 7 min). Decorating the optimized amount of BiOBr on the surface can introduce photocatalytic decolorization activity without sacrificing the adsorption capacity for Ni.
在排放工业废水之前去除重金属和染料至关重要。通过用聚合物吸附剂涂覆和BiOBr光催化剂的喷涂对纱布基材进行表面改性,以开发一种用于水修复的新型双功能膜,即聚合物/BiOBr改性纱布。聚合物吸附剂进行了交联,以防止吸附剂在受污染水中运行期间溶解。在吸附镍之前和之后对改性纱布的形态和表面化学进行了表征。研究了镍吸附的表面润湿性、等温线和动力学。我们还研究了pH值、初始镍浓度、单体摩尔比和单体化学结构对镍吸附容量的影响。为了实现高镍吸附容量和良好的光催化脱色活性,通过改变喷涂时间来调整修饰的BiOBr的量,以优化表面上暴露的BiOBr和聚合物。优化后的双功能膜PB20对镍离子具有优异的吸附容量(650 mg/g)和光催化脱色活性(7分钟内RhB降解100%)。在表面修饰优化量的BiOBr可以引入光催化脱色活性而不牺牲对镍的吸附容量。