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Preparation and characterization of PVDF/alkali-treated-PVDF blend membranes

机译:PVDF /碱处理的PVDF共混膜的制备与表征

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摘要

Poly(vinylidene fluoride) (PVDF) powder was treated with aqueous sodium hydroxide to obtain partially defluorinated fluoropolymers with expected properties such as improving hydrophilicity and fouling resistance. Raman spectrum and FT-IR results confirmed the existence of conjugated carbon double bonds after alkaline treatment. As the concentration increased, the degree of defluorination increased. The morphology and structure of membranes were examined. The permeation performance was investigated. The results showed that membrane's hydrophilicity increased with increase of the percentage of alkaline treated PVDF powder. Moreover, in terms of the water contact angle, it decreased from 92 degrees to a minimum of 68 degrees; while water up take increased from 128 to 138%. Fluxof pure water and the cleaning efficiency increased with the increase of alkaline treated PVDF powder. The fouling potential also decreased with the increase of the percentage of alkaline treated PVDF powder. The reason that makes blending PVDF show different characteristics because of partial defluorination, which led the formation of conjugated C = C bonds and the inclusion of oxygen functionalities. The polyene structure followed by hydroxide attack to yield hydroxyl and carbonyl groups. Therefore, the hydrophilicity of blending membrane was improved. The SEM and porosity measurements showed that no obvious variations of the pore dimensions and structures for blend membranes were observed. Mechanical tests suggest that the high content of the alkaline treated PVDF result in membranes with less tolerance of tensile stress and higher brittleness. TGA results exhibited that the blend of alkaline treated PVDF did not change membrane thermal stability.
机译:将聚偏二氟乙烯(PVDF)粉末用氢氧化钠水溶液处理,以获得具有预期性能(如改善亲水性和耐污性)的部分脱氟含氟聚合物。拉曼光谱和FT-IR结果证实了碱处理后共轭碳双键的存在。随着浓度增加,脱氟程度增加。检查膜的形态和结构。研究了渗透性能。结果表明,膜的亲水性随碱处理PVDF粉体百分比的增加而增加。此外,就水接触角而言,它从92度降低到最小68度。而取水量从128增加到138%。随着碱处理过的PVDF粉末的增加,纯净水的通量和清洗效率也随之提高。结垢潜力也随碱处理的PVDF粉末百分比的增加而降低。由于部分脱氟,使得共混PVDF表现出不同特性的原因,这导致了共轭C = C键的形成以及氧官能团的引入。多烯结构随后被氢氧化物侵蚀而产生羟基和羰基。因此,提高了共混膜的亲水性。 SEM和孔隙率测量表明,未观察到混合膜的孔尺寸和结构的明显变化。机械测试表明,高含量的碱处理过的PVDF导致膜的拉伸应力耐受性降低,脆性更高。 TGA结果表明,碱性处理的PVDF的混合物不会改变膜的热稳定性。

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