首页> 外文期刊>Journal of Membrane Science >Different viscosity grade sodium alginate and modified sodium alginate membranes in pervaporation separation of water + acetic acid and water + isopropanol mixtures
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Different viscosity grade sodium alginate and modified sodium alginate membranes in pervaporation separation of water + acetic acid and water + isopropanol mixtures

机译:不同粘度等级的海藻酸钠膜和改性海藻酸钠膜在水+乙酸和水+异丙醇混合物的全蒸发分离中的作用

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Different viscosity grade sodium alginate (NaAlg) membranes and modified sodium alginate membranes prepared by solution casting method and crosslinked with glutaraldehyde in methanol: water (75:25) mixture were used in pervaporation (PV) separation of water + acetic acid (HAc) and water + isopropanol mixtures at 30℃ for feed mixtures containing 10-50 mass% of water. Equilibrium swelling experiments were performed at 30℃ in order to study the stability of membrane in the fluid environment. Membranes prepared from low viscosity grade sodium alginate showed the highest separation selectivity of 15.7 for 10 mass% of water in the feed mixture, whereas membranes prepared with high viscosity grade sodium alginate exhibited a selectivity of 14.4 with a slightly higher flux than that observed for the low viscosity grade sodium alginate membrane. In an effort to increase the PV performance, low viscosity grade sodium alginate was modified by adding 10 mass% of polyethylene glycol (PEG) with varying amounts of poly(vinyl alcohol) (PVA) from 5 to 20 mass%. The modified membranes containing 10 mass% PEG and 5 mass% PVA showed an increase in selectivity up to 40.3 with almost no change in flux. By increasing the amount of PVA from 10 to 20 mass% and keeping 10 mass% of PEG, separation selectivity decreased systematically, but flux increased with increasing PVA content. The modified sodium alginate membrane with 5% PVA was further studied for the PV separation of water + isopropanol mixture for which highest selectivity of 3591 was observed. Temperature effect on pervaporation separation was studied for all the membranes; with increasing temperature, flux increased while selectivity decreased. Calculated Arrhenius parameters for permeation and diffusion processes varied depending upon the nature of the membrane.
机译:通过溶液浇铸法制备的不同粘度等级的海藻酸钠(NaAlg)膜和改性海藻酸钠膜,并用戊二醛在甲醇:水(75:25)混合物中交联,用于水+乙酸(HAc)的全蒸发(PV)分离。水和异丙醇的混合物,温度为30℃,用于含水量为10-50质量%的进料混合物。为了研究膜在流体环境中的稳定性,在30℃下进行了平衡溶胀实验。用低粘度等级海藻酸钠制得的膜对进料混合物中水的10质量%的分离选择性最高,为15.7,而用高粘度等级海藻酸钠制得的膜则显示出14.4的选择性,通量略高于在水中观察到的通量。低粘度等级海藻酸钠膜。为了提高PV性能,通过添加10质量%的聚乙二醇(PEG)和5至20质量%的不同量的聚乙烯醇(PVA)来改性低粘度等级的藻酸钠。包含10质量%PEG和5质量%PVA的改性膜显示出高达40.3的选择性增加,而通量几乎没有变化。通过将PVA的量从10质量%增加到20质量%并保持10质量%的PEG,分离选择性系统地降低,但是通量随着PVA含量的增加而增加。进一步研究了具有5%PVA的改性藻酸钠膜对水+异丙醇混合物的PV分离的方法,该方法观察到了最高的选择性3591。研究了所有膜的温度对全蒸发分离的影响。随着温度升高,通量增加而选择性降低。渗透和扩散过程的计算出的阿累尼乌斯参数根据膜的性质而变化。

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