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Effect of microfiltration concentration factor on serum protein removal from skim milk using spiral-wound polymeric membranes

机译:微滤浓缩因子对螺旋缠绕聚合物膜从脱脂乳中去除血清蛋白的影响

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摘要

Our objective was to determine the effect of concentration factor (CF) on the removal of serum protein (SP) from skim milk during microfiltration (MF) at 50℃ using a 0.3-μm-pore-size spiral-wound (SW) polymeric polyvinylidene fluoride (PVDF) membrane. Pasteurized (72℃ for 16 s) skim milk was MF (50℃) at 3 CF (1.50, 2.25, and 3.00×), each on a separate day of processing starting with skim milk. Two phases of MF were used at each CF, with an initial startup-stabilization phase (40 min in full recycle mode) to achieve the desired CF, followed by a steady-state phase (90-min feed-and-bleed with recycle) where data was collected. The experiment was replicated 3 times, and SP removal from skim milk was quantified at each CF. System pressures, flow rates, CF, and fluxes were monitored during the 90-min run. Permeate flux increased (12.8, 15.3, and 19.0 kg/m~2 per hour) with decreasing CF from 3.00 to 1.50×, whereas fouled water flux did not differ among CF, indicating that the effect of membrane fouling on hydraulic resistance of the membrane was similar at all CF. However, the CF used when microfiltering skim milk (50℃) with a 0.3-μm polymeric SW PVDF membrane did affect the percentage of SP removed. As CF increased from 1.50 to 3.00×, the percentage of SP removed from skim milk increased from 10.56 to 35.57%, in a single stage bleed-and-feed MF system. Percentage SP removal from skim milk was lower than the theoretical value. Rejection of SP during MF of skim milk with SW PVDF membranes was caused by fouling of the membrane, not by the membrane itself and differences in the foulant characteristic among CF influenced SP rejection more than it influenced hydraulic resistance. We hypothesize that differences in the conditions near the surface of the membrane and within the pores during the first few minutes of processing, when casein micelles pass through the membrane, influenced the rejection of SP because more pore size narrowing and plugging occurred at low CF than at high CF due to a slower rate of gel layer formation at low CF. It is possible that percentage removal of SP from skim milk at 50℃ could be improved by optimization of the membrane pore size, feed solution composition and concentration, and controlling the rate of formation of the concentration polarization-derived gel layer at the surface of the membrane during the first few minutes of processing.
机译:我们的目标是使用0.3μm孔径的螺旋缠绕(SW)聚合聚偏二乙烯,测定50℃微滤(MF)期间浓缩因子(CF)对脱脂乳中血清蛋白(SP)的去除作用氟化物(PVDF)膜。巴氏杀菌(72℃,持续16 s)的脱脂奶在3 CF(1.50、2.25和3.00x)下为MF(50℃),每个加工均从脱脂奶开始。在每个CF上使用MF的两个阶段,一个初始的启动稳定阶段(在完全循环模式下为40分钟)以达到所需的CF,然后是一个稳定状态阶段(90分钟的进料和排气循环)收集数据的地方。将实验重复3次,并定量每个CF去除脱脂乳中的SP。在90分钟的运行过程中监控系统压力,流速,CF和通量。随着CF从3.00降低到1.50×,渗透通量增加(每小时12.8、15.3和19.0 kg / m〜2),而CF之间的结垢水通量没有差异,表明膜污染对膜的水力阻力有影响在所有CF中都是相似的。但是,当用0.3μm的聚合物SW PVDF膜对脱脂乳(50℃)进行微滤时,所使用的CF会影响去除的SP的百分比。当CF从1.50增加到3.00x时,在单级放料和进料MF系统中,从脱脂奶中去除的SP的百分比从10.56增加到35.57%。从脱脂奶中去除SP的百分比低于理论值。 SW PVDF膜在脱脂牛奶MF期间对SP的排斥是由于膜的结垢而不是膜本身引起的,并且CF之间的污垢特性​​差异对SP排斥的影响大于对水力阻力的影响。我们假设酪蛋白胶束穿过膜时,在处理的最初几分钟内,膜表面附近和孔内条件的差异会影响SP的排斥,因为在低CF下发生的孔径变窄和堵塞比由于在低CF下凝胶层形成的速度较慢,因此在高CF下使用CFR的速率较高。通过优化膜的孔径,进料溶液的组成和浓度,以及控制浓缩极化偏振凝胶层在膜表面的形成速率,可以改善50℃下脱脂乳中SP的去除百分比。处理的最初几分钟内膜。

著录项

  • 来源
    《Journal of dairy science》 |2013年第10期|6199-6212|共14页
  • 作者

    S. L. Beckman; D. M. Barbano;

  • 作者单位

    Northeast Dairy Foods Research Center, Department of Food Science, Cornell University, Ithaca, NY 14853;

    Northeast Dairy Foods Research Center, Department of Food Science, Cornell University, Ithaca, NY 14853;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfiltration; concentration factor; serum protein; spiral-wound membrane;

    机译:微滤集中系数血清蛋白螺旋缠绕膜;
  • 入库时间 2022-08-17 23:24:16

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