【24h】

Acoustic field-assisted osmotic membrane distillation

机译:声场辅助渗透膜蒸馏

获取原文
获取原文并翻译 | 示例

摘要

Osmotic membrane distillation (OMD) is a novel membrane process that facilitates the concentration of aqueous solutions under mild operating conditions. The main drawback of OMD, like any other membrane process, is relatively low flux. In the present work acoustic field has been applied for the enhancement of transmembrane flux. Acoustic field, using transducer, of the frequency 1.2 MHz was applied perpendicularly to the membrane. Encouraged by the initial results of reasonable enhancement in the transmembrane flux (by 20-30%), further experiments were carried out for 5 M NaCl/pure water, 5 M CaCl_2/pure water, NaCl/sugarcane juice and CaCl_2/sugarcane juice systems both in the presence and absence of acoustic field. It was observed that there was about 22-205% enhancement in transmembrane flux with the application of acoustic field. All the experiments have been carried out in a membrane cell using different hydrophobic membranes polytetrafluoroethylene and polypropylene). The effect of various parameters such as concentration (2, 3, 4, 5 M), stirring speed (0, 198, 250, 450 rpm) and temperature (40, 50, 60℃) was studied on transmembrane flux in the absence of acoustic field, and the effect of acoustic field was studied at the best conditions observed. PTFE and PP membrane fluxes for CaCl_2 were both higher in the case of sugarcane juice and water than those for NaCl and K_2HPO_4 solutions. Results obtained from these experiments were correlated using a modified Nernst film model.
机译:渗透膜蒸馏(OMD)是一种新颖的膜工艺,可促进在温和的操作条件下浓缩水溶液。与其他任何膜工艺一样,OMD的主要缺点是通量相对较低。在当前的工作中,声场已被用于增强跨膜通量。使用换能器,将1.2 MHz频率的声场垂直于膜片施加。受合理提高跨膜通量(提高20-30%)的初步结果的鼓舞,针对5 M NaCl /纯水,5 M CaCl_2 /纯水,NaCl /蔗糖汁和CaCl_2 /蔗糖汁系统进行了进一步的实验无论有无声场。观察到,随着声场的应用,跨膜通量增加了约22-205%。所有实验均在膜单元中使用不同的疏水膜(聚四氟乙烯和聚丙烯)进行。研究了在不存在氨水的情况下,浓度(2、3、4、5 M),搅拌速度(0、198、250、450 rpm)和温度(40、50、60℃)等各种参数对跨膜通量的影响。声场,并在观察到的最佳条件下研究了声场的影响。在甘蔗汁和水的情况下,CaCl_2的PTFE和PP膜通量均比NaCl和K_2HPO_4溶液的通量更高。使用改良的Nernst胶片模型将这些实验获得的结果进行关联。

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