ABSTRACT Feed substrates influence biofilm formation on reverse osmosis membranes and their cleaning efficiency
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Feed substrates influence biofilm formation on reverse osmosis membranes and their cleaning efficiency

机译:饲料基质会影响反渗透膜上生物膜的形成及其清洁效率

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摘要

ABSTRACTThe dairy industry is increasingly using reverse osmosis (RO) membranes for concentration of various fluid feed materials such as whey and ultrafiltration (UF) permeate. This study compared the effect of UF permeate and whey on membrane biofilm formation. ABacillussp., previously isolated in our laboratory from a cleaning-resistant membrane biofilm, was used to develop 48-h-old static biofilms on RO membrane pieces, using the different feed substrates (UF permeate, whey, and an alternating whey/UF feed). Biofilms were analyzed for viable counts by the swab technique, and we used scanning electron and atomic force microscopy for microstructure imaging. The membrane cleaning process included 6 sequential steps. We observed differences in the resistance pattern of the 3 types of biofilms to the typical cleaning process. The mean pretreatment counts of the 48-h UF permeate biofilms were 5.39 log cfu/cm2, much higher than the whey biofilm counts of 3.44 log, and alternating whey/UF biofilm counts of 4.54 log. After a 6-step cleaning cycle, we found 2.54 log survivors of theBacillusisolate on UF biofilms, whereas only 1.82 log survivors were found in whey biofilm, and 2.14 log survivors on whey/UF permeate biofilms. In conclusion, the UF permeate biofilms was more resistant to the biofilm cleaning process compared with the whey or whey/UF permeate biofilms. Scanning electron micrographs showed different microstructures of biofilms based on the type of feed. For UF permeate and whey/UF permeate biofilms, bacilli were present in multilayers of cells in aggregates or irregular clusters with foulant layers. In contrast, those in whey biofilms were in monolayers, with a smoother, flatter appearance. Atomic force microscopy analysis indicated that UF permeate biofilms had the greatest surface roughness among the biofilms, reflecting intensified bacterial colonization. The biofilm micro- and nanostructure variations for the 2 feed substrates and their combination may have resulted in differences in their resistance to the cleaning process.
机译: 抽象 乳制品行业越来越多地使用反渗透(RO)膜浓缩各种流体进料,例如乳清和超滤(UF)渗透液。这项研究比较了超滤渗透物和乳清对膜生物膜形成的影响。 A 芽孢杆菌 sp。,以前在我们实验室中从耐清洗膜生物膜中分离出来,用于使用不同的饲料底物在RO膜片上显影48小时的静态生物膜。 (UF渗透,乳清和交替的乳清/ UF进料)。通过拭子技术分析了生物膜的活菌计数,并使用扫描电子和原子力显微镜进行了微结构成像。膜清洁过程包括6个连续步骤。我们观察到了三种类型的生物膜对典型清洗过程的阻力模式的差异。 48小时超滤渗透生物膜的平均预处理计数为5.39 log cfu / cm 2 ,远高于乳清生物膜的3.44 log和交替乳清/ UF生物膜计数为4.54 log。经过6步清洁周期后,我们在超滤生物膜上发现了2.54对数的芽孢杆菌分离物幸存者,而在乳清生物膜上仅发现了1.82 log对数幸存者,在乳清/生物膜上发现了2.14 log对数幸存者。 UF渗透生物膜。总之,与乳清或乳清/ UF渗透生物膜相比,超滤渗透生物膜对生物膜清洁过程的抵抗力更高。扫描电子显微照片显示,根据饲料类型,生物膜的微观结构不同。对于超滤透过物和乳清/超滤透过物生物膜,杆菌以聚集体或不规则簇的形式存在于细胞的多层中,具有污垢层。相反,乳清生物膜中的那些是单层的,具有更光滑,更平整的外观。原子力显微镜分析表明,UF渗透生物膜在生物膜中具有最大的表面粗糙度,反映出细菌定殖的加剧。两种饲料基质及其组合的生物膜微结构和纳米结构变化可能导致其对清洁过程的抵抗力不同。

著录项

  • 来源
    《Journal of dairy science》 |2018年第1期|84-95|共12页
  • 作者

    Sowmya Marka; Sanjeev Anand;

  • 作者单位

    Midwest Dairy Foods Research Center, Dairy and Food Science Department, South Dakota State University;

    Midwest Dairy Foods Research Center, Dairy and Food Science Department, South Dakota State University;

  • 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

    biofilm; whey; ultrafiltration permeate; cleaning; reverse osmosis membrane;

    机译:生物膜;乳清;超滤渗透物;清洁;反渗透膜;
  • 入库时间 2022-08-17 23:22:29

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