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Dehydration of isopropanol-water mixtures using a novel cellulose membrane prepared from cellulose/N-methylmorpholine-N-oxide/H2O solution

机译:使用由纤维素/ N-甲基吗啉-N-氧化物/ H2O溶液制备的新型纤维素膜对异丙醇-水混合物进行脱水

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摘要

A novel cellulose membrane used for isopropanol (IPA) dehydration was prepared by using N-methylmorpholine-N-oxide monohydrate (NMMO·H2O) as the solvent that can dissolve cellulose through a purely physical process. Scanning electron microscopy (SEM) images show that the prepared membrane had a homogeneously dense structure after natural drying. X-ray diffraction (XRD) and mechanical properties characterizations show that the prepared cellulose membrane owned much higher crystallization degree and better mechanical strength compared with traditional cellulose acetate (CA) or cellophane membranes coming from chemical process. The effects of operation conditions including feed concentration and operation temperature on pervaporation (PV) performance were investigated systemically. The results indicate that the permeation flux increased obviously with the increase of either water concentration in feed or operation temperature. Under the condition of 20 wt.% water-containing IPA feed and at 65 °C, a highest total flux of 349g/m~2h was achieved with a lowest water content in permeate of 99.50 wt.% (with a separation factor of 972) among all the tested conditions. Water content in permeate reached 99.97 wt.% (with a separation factor of 61,271) with a totalflux of 13.4g/m~2 h at the condition of 5 wt.% water in feed at 25 °C. Compared with other pure polymer membranes such as chitosan and poly(vinyl alcohol) (PVA), the prepared novel cellulose membranes exhibited acceptable fluxes and much higher separation factors. All these results demonstrate that cellulose membrane has great application potential in IPA dehydration process.
机译:以N-甲基吗啉-N-氧化物一水合物(NMMO·H2O)为溶剂,通过纯物理过程溶解纤维素,制备了用于异丙醇(IPA)脱水的新型纤维素膜。扫描电子显微镜(SEM)图像显示,制备的膜在自然干燥后具有均一的致密结构。 X射线衍射(XRD)和力学性能表征表明,与传统的醋酸纤维素(CA)或玻璃纸膜相比,制备的纤维素膜具有更高的结晶度和更好的机械强度。系统研究了进料浓度和操作温度等操作条件对全蒸发(PV)性能的影响。结果表明,随着饲料中水浓度或操作温度的增加,渗透通量明显增加。在含水IPA进料为20 wt。%的条件下和65°C的条件下,最高总通量为349g / m〜2h,渗透液中的最低水分含量为99.50 wt。%(分离系数为972) )在所有测试条件中。在25°C的进水中水分为5%的条件下,渗透物中的水分含量达到99.97 wt。%(分离系数为61,271),总通量为13.4 g / m〜2 h。与其他纯聚合物膜如壳聚糖和聚乙烯醇(PVA)相比,制备的新型纤维素膜表现出可接受的通量和更高的分离系数。所有这些结果表明,纤维素膜在IPA脱水过程中具有巨大的应用潜力。

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