Han Yilong, Giorno Lidietta, Gugliuzza Annarosa
Research Institute of Membrane Technology-National Research Council (ITM-CNR), 87036 Rende, CS, Italy;
Department of Pharmacy, University of Calabria (UNICAL), 87036 Rende, CS, Italy
Membranes (Basel). 2017 Nov 25;7(4):66. doi: 10.3390/membranes7040066.
A photoactive gel has been fabricated on the surface of polyethylene membranes for enhancing the fouling resistance during olive mill wastewater treatment. Light and pH responsive materials have been introduced in the membrane surface through the build up of a layer-by-layer pattern, which is formed by photocatalytic nanoparticles and ionic polyelectrolytes. The best working conditions to contrast foulants adsorption have been explored and identified. Repulsive interfacial forces and assisted transfer of foulants to catalytic sites have been envisaged as crucial factors for contrasting the decline of the flux during microfiltration. Tests in submerged configuration have been implemented for six continuous hours under irradiation at two different pH conditions. As a result, a worthy efficiency of the photoactive gel has been reached when suitable chemical microenvironments have been generated along the shell side of the membranes. No additional chemical reagents or expensive back-flushing procedures have been necessary to further clean the membranes; rather, fast and reversible pH switches have been enough to remove residues, thereby preserving the integrity of the layer-by-layer (LBL) complex onto the membrane surface.
在聚乙烯膜表面制备了一种光活性凝胶,以提高橄榄榨油废水处理过程中的抗污染性能。通过由光催化纳米颗粒和离子聚电解质形成的逐层模式,将光响应和pH响应材料引入膜表面。已探索并确定了对抗污染物吸附的最佳工作条件。排斥性界面力和污染物向催化位点的辅助转移被认为是对抗微滤过程中通量下降的关键因素。在两种不同pH条件下,在光照下对浸没式配置进行了连续6小时的测试。结果,当沿膜壳侧产生合适的化学微环境时,光活性凝胶达到了可观的效率。无需额外的化学试剂或昂贵的反冲洗程序来进一步清洁膜;相反,快速且可逆的pH切换足以去除残留物,从而保持膜表面逐层(LBL)复合物的完整性。