首页> 外文期刊>Water >An Experimental and Theoretical Study on Separations by Vacuum Membrane Distillation Employing Hollow-Fiber Modules
【24h】

An Experimental and Theoretical Study on Separations by Vacuum Membrane Distillation Employing Hollow-Fiber Modules

机译:中空纤维组件真空膜蒸馏分离的实验和理论研究

获取原文
           

摘要

Vacuum membrane distillation (VMD) is an attractive variant of the novel membrane distillation process, which is promising for various separations, including water desalination and bioethanol recovery through fermentation of agro-industrial by-products. This publication is part of an effort to develop a capillary membrane module for various applications, as well as a model that would facilitate VMD process design. Experiments were conducted in a laboratory pilot VMD unit, comprising polypropylene capillary-membrane modules. Performance data, collected at modest temperatures (37 °C to 65 °C) with deionized and brackish water, confirmed the improved system productivity with increasing feed-water temperature; excellent salt rejection was obtained. The recovery of ethanol from ethanol-water mixtures and from fermented winery by-products was also studied, in continuous, semi-continuous, and batch operating modes. At low-feed-solution temperature (27–47 °C), ethanol-solution was concentrated 4 to 6.5 times in continuous operation and 2 to 3 times in the semi-continuous mode. Taking advantage of the small property variation in the module axial-flow direction, a simple VMD process model was developed, satisfactorily describing the experimental data. This VMD model appears to be promising for practical applications, and warrants further R&D work.
机译:真空膜蒸馏(VMD)是新型膜蒸馏工艺的一个吸引人的变体,它有望用于各种分离,包括水脱盐和通过农用工业副产物发酵回收生物乙醇。该出版物是开发用于各种应用的毛细管膜模块以及有助于VMD工艺设计的模型的努力的一部分。实验在包括聚丙烯毛细管膜组件的实验室VMD单元中进行。用温和的去离子水和微咸水在37°C至65°C的中等温度下收集的性能数据证实,随着给水温度的升高,系统的生产率得到了提高;获得了极好的除盐性能。还研究了以连续,半连续和间歇操作方式从乙醇-水混合物和发酵酒副产物中回收乙醇的方法。在低进料温度(27–47°C)下,乙醇溶液在连续操作中浓缩4至6.5倍,在半连续模式中浓缩2至3倍。利用模块轴向流动方向上的微小特性变化,开发了一个简单的VMD工艺模型,令人满意地描述了实验数据。这种VMD模型在实际应用中似乎很有希望,并有待进一步的研发工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号