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首页> 外文期刊>Composite interfaces >Preparation of poly(vinyl alcohol)-silicone based hybrid membranes for the pervaporation separation of water-acetic acid mixtures
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Preparation of poly(vinyl alcohol)-silicone based hybrid membranes for the pervaporation separation of water-acetic acid mixtures

机译:聚乙烯醇-硅基杂化膜的制备,用于水-乙酸混合物的全蒸发分离

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Hybrid membranes were prepared using poly(vinyl alcohol) (PVA) and tetraethylorthosilicate (TEOS) via hydrolysis followed by condensation. The obtained membranes were characterized by Fourier transform infrared spectroscopy, wide-angle x-ray diffraction and differential scanning calorimetry. A remarkable decrease in degree of swelling was observed with increasing TEOS content in membranes and is attributed to the formation of hydrogen bonding and covalent bonds in the membrane matrix. The pervaporation performance of these membranes for the separation of wateracetic acid mixtures was investigated in terms of feed concentration and the content of TEOS used as cross-linking agent. The membrane containing 1:2 mass ratio of PVA and TEOS gave the highest separation selectivity of 1116 with a flux of 3.33 x 10(-2) kg/m(2) h at 30 degrees C for 10 mass% of water in the feed. Except for membrane M-1, the observed values of water flux are close to the values of total flux in the investigated composition range, signifying that the developed membranes are highly water selective. From the temperature dependence of diffusion and permeation values, the Arrhenius apparent activation parameters have been estimated. The resulting activation energy values obtained, showing that water permeation is lower than that of acetic acid, suggest that the membranes have higher separation efficiency. The activation energy values calculated for total permeation and water permeation are close to each other for all the membranes except membrane M-1, signifying that coupled-transport is minimal because of the higher selective nature of membranes. The negative heat of sorption values (Delta Hs) for water in all the membranes suggests a Langmuir mode of sorption.
机译:使用聚乙烯醇(PVA)和原硅酸四乙酯(TEOS)通过水解,然后缩合制备杂化膜。通过傅立叶变换红外光谱,广角X射线衍射和差示扫描量热法对获得的膜进行表征。随着膜中TEOS含量的增加,溶胀度显着降低,这归因于膜基质中氢键和共价键的形成。根据进料浓度和用作交联剂的TEOS的含量,研究了这些膜用于分离水乙酸混合物的全蒸发性能。进料中水的质量百分比为30%时,含有PVA和TEOS的质量比为1:2的膜的分离选择性最高,为1116,通量为3.33 x 10(-2)kg / m(2)h 。除膜M-1外,在研究的组成范围内,水通量的观察值接近总通量值,这表明所开发的膜具有很高的水选择性。根据扩散和渗透值的温度依赖性,已经估算了阿累尼乌斯表观活化参数。得到的活化能值表明水的渗透率低于乙酸,表明该膜具有较高的分离效率。除膜M-1外,所有膜的总渗透和水渗透的活化能值彼此接近,这表明由于膜的较高选择性,偶合传输极少。所有膜中水的负吸附热值(ΔHs)表明存在Langmuir吸附模式。

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