首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Facile fabrication of superhydrophilic/underwater superoleophobic polyvinyl acetate/sodium silicate composite coating for the effective water/oil separation and the study on the anti-fouling property, durability and separation mechanism
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Facile fabrication of superhydrophilic/underwater superoleophobic polyvinyl acetate/sodium silicate composite coating for the effective water/oil separation and the study on the anti-fouling property, durability and separation mechanism

机译:用于抗结垢性能,耐久性和分离机理的耐水性/水下超级高级聚乙酸钠/硅酸钠复合涂料的外硫基/水下超级高压聚乙酸钠制备及研究

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摘要

In this study, hydrophilic stainless steel meshes for water/oil separation were successfully prepared through the etching and subsequent modification of a polyvinyl alcohol (PVA)-sodium silicate (Na2SiO3) composite. The effects of the surface structure and component on the wetting behavior, separation efficiency, and separation flux were investigated. The long-term stability and anti-abrasion property were also studied. Furthermore, the separation mechanism of the hydrophilic mesh for water/oil separation was proposed based on investigations of the surface roughness, wetting behavior, separation efficiency, and separation flux. The results revealed that Na2SiO3 and PVA-Na2SiO3 coated meshes exhibit superhydrophilicity and underwater superoleophobicity (water contact angle (WCA): 10 degrees, underwater oil contact angle (UOCA): 150 degrees). Most of the prepared meshes could be used for the gravity-driven separation of the water/oil mixture and were characterized by a high separation efficiency (>97.0 %) and a high separation flux (over 1450 L/m(2) h). However, during the repetition separation, the superhydrophilic meshes exhibited more stable water films and higher separation fluxes than the other meshes, reflecting the superior anti-oil pollution property of the superhydrophilic meshes. Furthermore, the increase in the roughness of the hydrophobic surface would lead to oil accumulation and growing oil pollution, thereby yielding a considerable decrease in the separation flux after 10-cycle repetition separation. A stable UOCA was obtained for the prepared meshes after abrasion testing. However, compared with the other meshes, the meshes with poor hydrophilicity and a small pore size were more easily polluted by oil and were characterized by lower separation flux during the repetition separation. The results of the mechanism study revealed that the separation efficiency and the separation flux were mainly influenced by the surface roughness, wetting behavior, and water absorption ability of the surface. Hence, the water film strength was vital for the anti-oil pollution property of the water-removing separation mesh.
机译:在本研究中,通过对聚乙烯醇(PVA)-硅酸钠(Na2SiO3)复合材料进行蚀刻和后续改性,成功制备了用于水/油分离的亲水性不锈钢网。研究了表面结构和组分对润湿行为、分离效率和分离通量的影响。并对其长期稳定性和耐磨性进行了研究。此外,通过对表面粗糙度、润湿行为、分离效率和分离通量的研究,提出了亲水性网状物用于油水分离的分离机理。结果表明,Na2SiO3和PVA-Na2SiO3涂层网孔具有超亲水性和水下超疏水性(水接触角(WCA):10度,水下油接触角(UOCA):150度)。大多数制备的网格可用于水/油混合物的重力驱动分离,其特点是分离效率高(>97.0%)和分离通量高(超过1450 L/m(2)h)。然而,在重复分离过程中,与其他网格相比,超亲水网格表现出更稳定的水膜和更高的分离通量,反映出超亲水网格优越的抗油污染性能。此外,疏水表面粗糙度的增加将导致油的积聚和日益严重的油污染,从而在10个循环重复分离后导致分离通量显著降低。磨损试验后,制备的网格获得了稳定的UOCA。然而,与其他网格相比,亲水性差、孔径小的网格更容易被油污染,并且在重复分离过程中具有较低的分离通量。机理研究结果表明,分离效率和分离通量主要受表面粗糙度、润湿行为和表面吸水能力的影响。因此,水膜强度对除水分离网的抗油污染性能至关重要。

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