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Effect of skim milk treated with high hydrostatic pressure on permeate flux and fouling during ultrafiltration

机译:高压静水处理的脱脂乳对超滤过程中通量和结垢的影响

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摘要

Ultrafiltration (UF) is largely used in the dairy industry to generate milk and whey protein concentrate for standardization of milk or production of dairy ingredients. Recently, it was demonstrated that high hydrostatic pressure (HHP) extended the shelf life of milk and improved rennet coagulation and cheese yield. Pressurization also modified casein micelle size distribution and promoted aggregation of whey proteins. These changes are likely to affect UF performance. Consequently, this study determined the effect of skim milk pressurization (300 and 600 MPa, 5 min) on UF performance in terms of permeate flux decline and fouling. The effect of HHP on milk proteins was first studied and UF was performed in total recycle mode at different transmembrane pressures to determine optimal UF operational parameters and to evaluate the effect of pressurization on critical and limiting fluxes. Ultrafiltration was also performed in concentration mode at a transmembrane pressure of 345 kPa for 130 or 140 min to evaluate the decline of permeate flux and to determine fouling resistances. It was observed that average casein micelle size decreased by 32 and 38%, whereas β-lactoglobulin denaturation reached 30 and 70% at 300 and 600 MPa, respectively. These results were directly related to UF performance because initial permeate fluxes in total recycle mode decreased by 25% at 300 and 600 MPa compared with nonpressurized milk, critical flux, and limiting flux, which were lower during UF of milk treated with HHP. During UF in concentration mode, initial permeate fluxes were 30% lower at 300 and 600 MPa compared with the control, but the total flux decline was higher for nonpressurized milk (62%) compared with pressure-treated milk (30%). Fouling resistances were similar, whatever the treatment, except at 600 MPa where irreversible fouling was higher. Characterization of the fouling layer showed that caseins and (3-lactoglobulin were mainly involved in membrane fouling after UF of pressure-treated milk. Our results demonstrate that HHP treatment of skim milk drastically decreased UF performance.
机译:超滤(UF)广泛用于乳制品行业,以生产牛奶和乳清蛋白浓缩物,以实现牛奶标准化或生产乳制品原料。最近,已证明高静水压(HHP)延长了牛奶的保质期,并改善了凝乳酶凝结和奶酪产量。加压还改变了酪蛋白胶束的大小分布并促进了乳清蛋白的聚集。这些变化可能会影响超滤性能。因此,本研究确定了脱脂乳加压(300和600 MPa,5分钟)对超滤性能的影响,渗透率下降和结垢。首先研究了HHP对牛奶蛋白质的影响,并在不同的跨膜压力下以全循环模式进行超滤,以确定最佳的超滤操作参数并评估加压对临界通量和极限通量的影响。还以浓度模式在345 kPa的跨膜压力下进行了130或140分钟的超滤,以评估渗透通量的下降并确定耐污染性。观察到,酪蛋白胶束的平均尺寸在300和600 MPa下分别降低了32%和38%,而β-乳球蛋白变性分别达到了30%和70%。这些结果与超滤性能直接相关,因为在300 MPa和600 MPa压力下,总循环模式下的初始渗透通量与未加压的牛奶,临界通量和极限通量相比降低了25%,而在用HHP处理的超滤过程中,通量较低。在超滤浓缩模式下,与对照相比,在300和600 MPa时,初始渗透通量降低了30%,但与加压处理的牛奶(30%)相比,未加压的牛奶(62%)的总通量下降幅度更大。无论采用何种处理方式,耐污垢性均相似,除了在600 MPa时不可逆污垢较高。结垢层的表征表明,酪蛋白和(3-乳球蛋白)在压力处理后的牛奶超滤后主要参与膜结垢;我们的结果表明,HHP处理脱脂牛奶会大大降低超滤性能。

著录项

  • 来源
    《Journal of dairy science》 |2017年第9期|7071-7082|共12页
  • 作者单位

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

    Institute of Nutrition and Functional Foods (INAF), Dairy Research Centre (STELA), Department of Food Sciences, Universite Laval, Quebec, Quebec, G1V 0A6, Canada;

  • 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

    ultrafiltration; high hydrostatic pressure; permeate flux decline; membrane resistance; protein fouling;

    机译:超滤高静水压力;渗透通量下降;膜电阻蛋白质结垢;
  • 入库时间 2022-08-17 23:22:50

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