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首页> 外文期刊>RSC Advances >Morphological control of poly(vinylidene fluoride)@layered double hydroxide composite fibers using metal salt anions and their enhanced performance for dye removal
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Morphological control of poly(vinylidene fluoride)@layered double hydroxide composite fibers using metal salt anions and their enhanced performance for dye removal

机译:金属盐阴离子对聚偏氟乙烯@双层氢氧化物复合纤维的形貌控制及其增强的去除染料性能

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Self-standing membranes of poly(vinylidene fluoride)@layered double hydroxide (PVDF@LDH) composite fibers were fabricated by using metal salts with different anions (NO3?, Cl?, SO42?) as the reactants through a combination of electrospinning and hydrothermal treatment. The anions have a significant effect on the morphology and loading amount of LDHs anchored onto the surface of PVDF nanofibers. In a monovalent anion (such as nitrate) system, small crystal nuclei were formed. Only a small proportion with a large size grew up to well-defined hexagonal LDH layered nanocrystals with large thicknesses. However in a divalent anion sulfate system, large crystal nuclei were generated first and most of them could grow up to thin and curly LDH layered nanocrystals owing to the serious steric hindrance. Well-defined PVDF@CoAl-LDH composite fibers with a hierarchical structure and uniform core/sheath morphology could only be obtained in the sulfate system, which could act as an excellent adsorbent for treating dye solutions. The obtained PVDF@CoAl-LDH core/sheath fibers present a maximum adsorption capacity of 621.17 mg g?1 for methyl orange (MO). Moreover, benefiting from the perfect properties and stable form, the composite fiber membrane could be used directly in membrane filtration with high removal efficiency and cycling stability. The MO removal rate of the membrane remained above 93% with a maximum flux of 140 L (m2 h)?1 despite three times of regeneration, indicating its practical application for the efficient treatment of dye pollution.
机译:利用具有不同阴离子(NO 3 的阴离子的金属盐)制备聚偏二氟乙烯@层状双氢氧化物(PVDF @ LDH)复合纤维的自立膜? ,Cl ,SO 4 < (sup> 2? )作为电纺丝和水热处理的组合物。阴离子对锚定在PVDF纳米纤维表面的LDH的形态和负载量具有重要影响。在单价阴离子(例如硝酸盐)系统中,形成了小晶核。只有一小部分具有较大的尺寸长大,直至形成厚度较大的轮廓分明的六方LDH层状纳米晶体。然而,在二价阴离子硫酸盐体系中,首先产生了大的晶核,由于严重的空间位阻,它们大多数可以长成薄而卷曲的LDH层状纳米晶体。定义明确的PVDF @ CoAl-LDH复合纤维具有层次结构和均匀的芯/鞘形态,只能在硫酸盐体系中获得,它可以作为处理染料溶液的优良吸附剂。所得的PVDF @ CoAl-LDH芯/皮纤维对甲基橙(MO)的最大吸附容量为621.17 mg g ?1 。此外,由于其完美的性能和稳定的形式,该复合纤维膜可直接用于膜过滤,具有较高的去除效率和循环稳定性。膜的MO去除率保持在93%以上,最大通量为140 L(m 2 h) ?1 < / small>尽管再生了3次,表明其在有效处理染料污染中的实际应用。

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