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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Facile preparation of superhydrophobic quartz sands with micro-nano-molecule hierarchical structure for controlling the permeability of oil and water phase
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Facile preparation of superhydrophobic quartz sands with micro-nano-molecule hierarchical structure for controlling the permeability of oil and water phase

机译:具有微纳米分子分子结构的超疏水石英砂的体面制备控制油和水相渗透性

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Although the present superhydrophobic sands have been demonstrated to be effective for oil/water separation and water storage, they still suffer from high-cost and difficult industrial application, resulting from their expensive raw materials, complicated fabrication procedures and fluorine-containing. In this paper, we demonstrated a facile method to synthesize stable superhydrophobic quartz sands by two step surface modification. SiO2 nanoparticles are bonding onto the surface of micro-sand skeletons (110-150 mu m) for conducting rounghneess structure, and then modify them with low-surface-energy hexadecyltrime-thoxysilane (HDTMS) to form a molecule protection layer. The as-prepared sands (HDTMS-sand@SiO2) exhibit a high WCA of 163 +/- 2.0 degrees, a low sliding angle of 5 degrees, and a oil contact angle of about 0 degrees. In addition, the HDTMS-sand@SiO2 retains superhydrophobicity after ultrasonication in petroleum ether, heating below 225 degrees C, irradiation with ultraviolet, and soaking in strong acidic and strong alkaline solutions, exhibiting sufficient stability against the harsh physicochemical environment of oil/water separation and some others. Particularly, superhydrophobic sands exhibit a outstanding drag reduction ability in a sand-filled core. Significantly, HDTMS-sand@SiO2 as a filter can leach oil phase and prevent water phase, which exhibits a good separation efficiency of oil/water mixture, water-in-oil and oil-in-brine emulsions. Thanks to the cheap and available raw materials, stable structure and high separation efficiency as well as low production cost ( < 150 USD per ton), this approach could find promising applications in the treatment of oily wastewater and petroleum development.
机译:虽然本发明的超疏水砂已经证明了对油/水分离和储水有效,但它们仍然患有高成本和困难的工业应用,由昂贵的原料,复杂的制造程序和含氟含量产生。在本文中,我们证明了两种步骤表面改性合成稳定的超疏水石英砂的容易方法。 SiO2纳米颗粒在微砂骨架(110-150μm)上键合用于导电roungneess结构,然后用低表面能十六串 - 氧嘧烷(HDTMS)改变它们以形成分子保护层。制备的砂岩(HDTMS-SAND @ SIO2)具有163 +/- 2.0度的高WCA,低滑动角度为5度,具有约0度的油接触角。此外,HDTMS-SAN @ SiO2在石油醚中超声施用后保留超疏水性,加热低于225℃,用紫外线照射,并浸泡强酸性和强碱性溶液,对油/水分离的苛刻物理化学环境具有充分的稳定性还有一些人。特别是,超疏水砂在砂芯中表现出出色的阻力减阻能力。显着,HDTMS-沙子@ SiO2作为过滤器可以浸出油相并防止水相,这表现出油/水混合物,油油和盐水乳液的良好分离效率。由于廉价且可用的原材料,结构稳定和高分离效率以及低生产成本(每吨150美元),这种方法可以在处理油性废水和石油发育中找到有前途的应用。

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