Yuan Hua, Yu Bing, Cong Hailin, Chi Ming, Cheng Yuanzhe, Lv Chunxin
Institute of Biomedical Materials and Engineering, College of Materials Science and Engineering, Qingdao University, Qingdao 266071, China.
Laboratory for New Fiber Materials and Modern Textile, Growing Base for State Key Laboratory, College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, China.
Materials (Basel). 2018 Mar 23;11(4):481. doi: 10.3390/ma11040481.
Porous permeable films materials have very broad prospects in the treatment of sludge-containing waste water due to their large surface area and good microfiltration. In this work, highly ordered porous membranes have been prepared successfully on ice substrates using a poly(phenylene oxide) (BPPO)-SiO₂ nanoparticle (NP) mixture by the brePorous permeable films materials have very broad prospects in the treatment of sludge-containing waste water due to their large surface area and good microfiltration. In this work, highly ordered porous membranes have been prepared successfully on ice substrates using aath figure method. Based on the theory of Pickering emulsion system and capillary flow, particle assisted membrane formation was analyzed. Another two sorts of new membranes SiO₂/C membrane and hierarchical porous polymer (HPP) membrane, which were obtained by modification of the BPPO-SiO₂ membrane by calcination and etching, were set up in a further study. Their properties were investigated through the methods of scanning electron microscopy (SEM), fourier transform infrared spectrometry (FTIR), ultraviolet spectrum (UV), capillary electrophoresis (CE), contact angle, and water flux tests. All these results demonstrate that both surface hydrophilicity and fouling resistance of the membrane would be improved by using SiO₂ as a filler. The membranes with high permeability and antifouling properties were used for microfiltration applications.
多孔渗透膜材料因其具有较大的表面积和良好的微滤性能,在含污泥废水处理方面具有非常广阔的前景。在本工作中,采用聚环氧苯(BPPO)-二氧化硅纳米颗粒(NP)混合物,通过brePorous permeable films材料在含污泥废水处理方面具有非常广阔的前景,这是由于其具有较大的表面积和良好的微滤性能。在本工作中,已通过aath图形法在冰基板上成功制备出高度有序的多孔膜。基于Pickering乳液体系和毛细管流动理论,对颗粒辅助成膜进行了分析。在进一步的研究中,还制备了另外两种新型膜,即通过煅烧和蚀刻对BPPO-SiO₂膜进行改性得到的SiO₂/C膜和分级多孔聚合物(HPP)膜。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、紫外光谱(UV)、毛细管电泳(CE)、接触角和水通量测试等方法对它们的性能进行了研究。所有这些结果表明,使用SiO₂作为填料可提高膜的表面亲水性和抗污染性。具有高渗透性和抗污染性能的膜被用于微滤应用。