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Hydrophobic Porous Polypropylene with Hierarchical Structures for Ultrafast and Highly Selective Oil/Water Separation

机译:疏水多孔聚丙烯,具有超快和高选择性油/水分离的等级结构

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Recently, various porous absorbents have been developed and the in situ vacuum/pump-assisted continuous separation process has proven to be the most efficient technique to utilize those absorbents for oil spill cleanup. However, to achieve a high oil removal throughput, a high pumping pressure and/or large absorbent pore sizes are required, which would compromise the selectivity of oil/water separation, as water may penetrate the absorbent beyond a critical external pressure. In this work, this challenge has been circumvented by employing hierarchically porous polypropylene (PP) with controlled pore sizes generated from a tricontinuous heterophase polymer blend system. As compared to unimodal pores, the incorporation of the secondary smaller pores significantly enhances the oil removal throughput by up to 4-5 times without the necessity of raising the pumping pressure or increasing the diameter of the primary pores, which in turn, prevents compromising the oil/water separation selectivity.
机译:近年来,人们开发了各种多孔吸附剂,现场真空/泵辅助连续分离工艺已被证明是利用这些吸附剂清除漏油的最有效技术。然而,为了实现高的除油量,需要高的泵送压力和/或大的吸收剂孔径,这将影响油水分离的选择性,因为水可能穿透吸收剂超过临界外部压力。在这项工作中,通过使用由三连续异相聚合物共混体系生成的具有可控孔径的分级多孔聚丙烯(PP),回避了这一挑战。与单峰孔相比,二次较小孔的加入可显著提高除油能力4-5倍,而无需提高泵送压力或增大一次孔的直径,从而防止损害油水分离选择性。

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