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Development of novel crossflow ultrafiltration module integrated with ultrasonic transducers for herbal extracts purification.

机译:集成了超声换能器的新型错流超滤模块的开发,用于草药提取物的纯化。

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摘要

A major obstacle of applying membrane filtration for purification and separation of herbal extracts is the rapid decline of permeate flux resulting from membrane fouling. With ultrasound irradiation, the combination effects of acoustic cavitation, microstreaming and micro-jets are capable of keeping the particles away from membrane surface to elevate filtration efficiency. However, with conventional configuration, only 10% of ultrasonic intensity can transmit into filtration channel after propagating though housing material. Rather than immersing crossflow module into ultrasonic bath, a customized CF module integrated with ultrasonic transducers was fabricated and resistance in series model was adapted to evaluate the fouling profile of polysaccharides suspension derived from Radix Astragalus water extracts. The filtration enhancement increased significantly from 1.31 to 2.95 with 28 kHz at 200W input comparing to previous setup and DI-H2O flux was recovered to 100% after water flushing. US irradiation dramatically decreased not only the reversible fouling contributed by cake layer and concentration polarization but also the irreversible fouling caused by pore blocking. Evidence was presented by the detected sonic acoustic pressure distribution inside the crossflow channel as well as membrane morphology patterns provided by SEM.;In order to further improve the filtration efficiency, polypropylene permeate spacer was replaced by stainless steel (S.S.) permeate spacers with various porosities. Six sets of S.S. permeate spacers were inserted into CF module to evaluate the effect of porosity on permeate flux as well as on RAE filtration enhancement in both US enhanced and integrated system. The different mechanisms of US effect in these two CF systems played important role. Response Surface Methodology (RSM) coupled with Box–Behnken design (BBD) of experiments were employed to investigate the effects of control variables (ultrasound output power, porosity of permeate spacer and transmembrane pressure) on the absolute permeate collection for RAE Ultrafiltration in US integrated CF system. The optimal operational conditions established by desirability function approach were as follow: a US output power of 120W, a spacer porosity of 60.8% and a TMP of 20 psi. By applying these process parameter values, the permeation efficiency can be improved up to 211%.
机译:应用膜过滤来纯化和分离草药提取物的主要障碍是膜污染导致渗透通量的迅速下降。借助超声辐照,声空化,微流和微射流的组合作用能够使颗粒远离膜表面,从而提高过滤效率。然而,在常规配置下,通过外壳材料传播后,只有10%的超声强度可以传输到过滤通道中。没有将横流模块浸入超声浴中,而是制造了与超声换能器集成的定制CF模块,并采用串联电阻模型评估了黄芪水提取物多糖悬浮液的结垢特性。与以前的设置相比,在200W输入下的28 kHz频率下,过滤增强效果从1.31显着提高到2.95,并且在冲水后DI-H2O通量恢复到100%。 US辐照不仅显着减少了由滤饼层和浓差极化引起的可逆结垢,而且显着减少了由孔阻塞引起的不可逆结垢。通过在横流通道内检测到的声波声压分布以及由SEM提供的膜形态图来证明这一点;为了进一步提高过滤效率,用具有不同孔隙率的不锈钢(SS)渗透隔层代替了聚丙烯渗透隔层。将六组S.S.渗透隔离物插入CF模块,以评估孔隙度对渗透强化通量以及美国增强系统和集成系统中RAE过滤增强的影响。美国在这两个CF系统中作用的不同机制起着重要作用。响应面方法学(RSM)与Box-Behnken设计(BBD)结合进行了实验,以研究控制变量(超声输出功率,渗透间隔物的孔隙率和跨膜压力)对美国集成的RAE超滤的绝对渗透物收集的影响CF系统。通过合意函数法确定的最佳运行条件如下:美国输出功率为120W,垫片孔隙率为60.8%,TMP为20 psi。通过应用这些过程参数值,可以将渗透效率提高到211%。

著录项

  • 作者

    Wang, San Ju.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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