首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Underwater superoleophobic palygorskite coated meshes for efficient oil/water separation
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Underwater superoleophobic palygorskite coated meshes for efficient oil/water separation

机译:水下超疏疏坡缕石涂层筛网可实现有效的油/水分离

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摘要

Oil/water separation has recently become a global challenging task due to frequent oil spill accidents and increasing industrial oily waste water. Here, we demonstrate for the first time underwater superoleophobic palygorskite coated meshes, which were fabricated by spraying palygorskite and polyurethane mixtures on copper mesh substrates. The underwater superoleophobic meshes were then used to study gravity driven oil/water separation for a series of oil/water mixtures, where only the water from the oil/water mixture is allowed to permeate through the mesh. A separation efficiency of up to 99.6% could be achieved through the coated mesh for the kerosene-water mixture. In addition, the palygorskite coated mesh still maintained a high separation efficiency of over 99.0% and stable recyclability after 50 separation cycles with the surface morphology of the palygorskite coated mesh nearly unchanged. Furthermore, the palygorskite coated meshes exhibit excellent environmental stability under a series of harsh conditions, which are used for the separation of mixtures of oil and various corrosive and active aqueous solutions, including strong acidic, alkaline, or salt aqueous solutions, even hot water. The fabrication approach presented here can be applied for coating large surface areas and to develop a large-scale oil/water separation facility for oil and various corrosive and active aqueous mixtures.
机译:由于频繁的漏油事故和工业含油废水的增多,油/水分离最近已成为一项具有全球挑战性的任务。在这里,我们首次展示了水下超疏油坡缕石涂层的网片,该网片是通过在铜网基底上喷涂坡缕石和聚氨酯混合物制成的。然后使用水下超疏油网格来研究重力驱动的油/水分离,以分离一系列油/水混合物,其中只有油/水混合物中的水才可以透过该网格。通过煤油-水混合物的涂层筛网,可以实现高达99.6%的分离效率。另外,经过50次分离循环后,经坡缕石涂覆的筛网仍保持了高达99.0%的高分离效率和稳定的可回收性,而经坡缕石涂覆的筛网的表面形态几乎不变。此外,坡缕石涂层的筛网在一系列苛刻的条件下表现出优异的环境稳定性,这些条件用于分离油与各种腐蚀性和活性水溶液(包括强酸性,碱性或盐水溶液,甚至热水)的混合物。本文介绍的制造方法可用于涂覆大表面积,并开发用于油以及各种腐蚀性和活性水性混合物的大规模油/水分离设备。

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