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Fouling characteristics and cleaning approach of ultrafiltration membrane during xylose reductase separation
被引:0
|作者:
Santhana Krishnan
Mohd Nasrullah
Hesam Kamyab
Noor Suzana
Mimi Sakinah Ab Munaim
Zularisam Ab Wahid
Ismat H. Ali
Reza Salehi
Sumate Chaiprapat
机构:
[1] Prince of Songkla University,Department of Civil and Environmental Engineering, Faculty of Engineering, PSU Energy Systems Research Institute (PERIN)
[2] Universiti Malaysia Pahang,Faculty of Civil Engineering Technology
[3] Malaysia-Japan International Institute of Technology,Department of Biomaterials
[4] Universiti Teknologi Malaysia,Department of Chemistry, College of Science
[5] Saveetha Dental College and Hospital,undefined
[6] Saveetha Institute of Medical and Technical Sciences,undefined
[7] King Khalid University,undefined
来源:
关键词:
Fouling;
Membrane recovery;
Resistance in series model;
Ultrafiltration;
Xylose reductase;
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学科分类号:
摘要:
Many operating parameters of ultrafiltration (UF) are playing a crucial role when using a polyethersulfone membrane to separate xylose reductase (XR) enzyme from reaction mixtures during xylitol synthesis. The present study focuses on the separation of XR enzyme using a cross-flow ultrafiltration (UF) membrane. The filtration process was analyzed using the three effective variables such as filtration time, cross-flow velocity (CFV), and the transmembrane pressure (TMP), which were ranging from 0 to 100 min, 0.52 to 1.2 cm/s and 1–1.6 bar, respectively. Then, using the resistance in series model, the hydraulic resistance for alkali chemical cleaning during XR separation was estimated. During separation, increased TMP showed a positive-flux effect as a driving force, however, fouling and polarized layer were more prominent under higher TMP. Increased CFV, on the other hand, was found more efficient in fouling control. In terms of the membrane cleaning techniques, an alkaline solution containing 0.1 M sodium hydroxide was shown to be the most effective substance in removing foulants from the membrane surface in this investigation. Cleaning with an alkaline solution resulted in a maximum flux recovery of 93% for xylose reductase separation. This work may serve as a useful guide to better understand the optimization parameters during XR separation and alleviating UF membrane fouling induced during XR separation.
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页码:1125 / 1136
页数:11
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