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首页> 外文期刊>Journal of Membrane Science >Pervaporation separation of water + isopropanol mixtures using novel nanocomposite membranes of poly(vinyl alcohol) and polyaniline
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Pervaporation separation of water + isopropanol mixtures using novel nanocomposite membranes of poly(vinyl alcohol) and polyaniline

机译:使用新型聚乙烯醇和聚苯胺纳米复合膜对水和异丙醇混合物进行全蒸发分离

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摘要

Novel nanocomposite polymeric membranes containing nanosized (30-100 nm) polyaniline (PANI) particles dispersed in poly(vinyl alcohol) (PVA) were prepared and used in the pervaporation separation of water-isopropanol feed mixtures ranging from 10 to 50 mass% of water at 30℃. Of the three nanocomposite membranes prepared, the membrane containing 40:60 surface atomic concentration ratio of PANI:PVA produced the highest selectivity of 564 compared to a value of 77 observed for the plain PVA membrane. Flux of the nanocomposite membranes was lower than those observed for the plain PVA membrane, but selectivity improved considerably. Membranes were characterized by differential scanning calorimetry, dynamic mechanical thermal analyzer, X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy and scanning electron microscopy. The highest selectivity with the lowest flux was observed for 10 mass% water containing feed mixture. Flux increased with increasing amount of water in the feed, but selectivity decreased considerably. These results were attributed to the acid-doped PANI particles in the PVA membrane as a result of change in the micromorphology of the nanocomposite membranes. In addition, molar mass between cross-links and fractional free volume of the membranes are responsible for the varying membrane performance. Temperature effect on permeability was investigated for 10 mass% water containing feed with the membrane containing higher concentration of PANI particles, the presence of which could be responsible for varied effect of water permeation through the membrane. Membranes of this study could remove as much as 98% of water from the feed.
机译:制备了新型纳米复合聚合物膜,该膜包含分散在聚乙烯醇(PVA)中的纳米尺寸(30-100 nm)聚苯胺(PANI)颗粒,并用于水-异丙醇进料混合物的全蒸发分离,水混合物的水量为10至50质量%在30℃下。在制备的三种纳米复合膜中,含有40:60的PANI:PVA表面原子浓度比的膜产生的选择性最高,为564,而普通PVA膜的观察值为77。纳米复合膜的通量低于普通PVA膜的通量,但选择性显着提高。通过差示扫描量热法,动态机械热分析仪,X射线光电子能谱,傅里叶变换红外光谱和扫描电子显微镜对膜进行表征。对于10质量%的含水进料混合物,观察到具有最低通量的最高选择性。通量随着饲料中水含量的增加而增加,但选择性却大大降低。这些结果归因于纳米复合膜的微观形态变化导致的PVA膜中的酸掺杂PANI颗粒。另外,膜的交联之间的摩尔质量和自由体积分数是造成膜性能变化的原因。对于含质量分数为10的PANI进料的水,研究了温度对渗透率的影响,该膜中含有较高浓度的PANI颗粒,其中PANI颗粒的存在可能导致水透过该膜的影响不同。该研究的膜可从饲料中去除多达98%的水。

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