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Towards an efficient and durable superhydrophobic mesh coated by PDMS/ TiO_2 nanocomposites for oil/water separation

机译:寻求一种高效耐用的PDMS / TiO_2纳米复合材料涂层的超疏水网,用于油/水分离

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Oil spill accidents and industrial oily wastewater are threatening all living species in the ecological system. Development of materials with special wettability for oil/water separation has been the subject of many researches. Herein, superhydrophobic and superoelophilic nanocomposite coatings, based on titanium dioxide (TiO2) nanoparticles and polydimethylsiloxane (PDMS), were applied on metal meshes with different pore sizes (25 and 100 mu m). Morphological analysis revealed that adding PDMS, as a binder, significantly changes the surface structure of the coatings. For 100 mu m-sized meshes, PDMS causes a two-tier roughness whereas a uniform and finely packed single-scale nanostructure was formed for 25 mu m-sized meshes upon PDMS addition. Exceedingly high content of nanoparticles was found to impose a detrimental influence on uniformity of morphology. All the samples exhibited superhydrophobicity; however, their mechanical durability results were significantly diverse. PDMS introduction was found to impose a substantial improvement in abrasion resistance. Oil/water separation experiments revealed that the mesh with smaller pore size exhibited a more efficient separation while a much shorter separation time and higher flux could be achieved by the mesh with larger pore size. In addition, the mesh with smaller pore size exhibited a more abrasion resistant coating which could be more beneficial in real-life applications.
机译:漏油事故和工业含油废水正威胁着生态系统中的所有生物。具有特殊润湿性的油/水分离材料的开发一直是许多研究的主题。在此,将基于二氧化钛(TiO2)纳米颗粒和聚二甲基硅氧烷(PDMS)的超疏水和超亲油纳米复合涂料应用于具有不同孔径(25和100μm)的金属网。形态分析表明,添加PDMS作为粘合剂会显着改变涂层的表面结构。对于100微米大小的网孔,PDMS会产生两层粗糙度,而在添加PDMS时,对于25微米大小的网孔会形成均匀且精细堆积的单尺度纳米结构。发现过高的纳米颗粒含量对形态的均匀性产生有害影响。所有样品均表现出超疏水性。但是,它们的机械耐久性结果却大不相同。发现引入PDMS可显着提高耐磨性。油/水分离实验表明,孔径较小的筛孔分离效率更高,而孔径较大的筛孔分离时间更短,通量更高。另外,具有较小孔径的筛网表现出更耐磨的涂层,这在现实生活中可能更有益。

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