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首页> 外文期刊>Journal of dairy science >Feasibility, safety, and economic implications of whey-recovered water in cleaning-in-place systems: A case study on water conservation for the dairy industry
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Feasibility, safety, and economic implications of whey-recovered water in cleaning-in-place systems: A case study on water conservation for the dairy industry

机译:就地清洗系统中乳清回收水的可行性,安全性和经济意义:以乳业节水为例

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摘要

Water scarcity is threatening food security and business growth in the United States. In the dairy sector, most of the water is used in cleaning applications; therefore, any attempt to support water conservation in these processes will have a considerable effect on the water footprint of dairy products. This study demonstrates the viability for recovering good quality water from whey, a highly pollutant cheese-making byproduct, to be reused in cleaning-in-place systems. The results obtained in this study indicate that by using a combined ultrafiltration and reverse osmosis system, 47% of water can be recovered. This system generates protein and lactose concentrates, by-products that once spray-dried fulfill commercial standards for protein and lactose powders. The physicochemical and microbiological quality of the recovered permeate was also analyzed, suggesting suitable properties to be reused in the cleaning-in-place system without affecting the quality and safety of the product manufactured on the cleaned equipment. A cost analysis was conducted for 3 cheese manufacturing levels, considering an annual production of 1, 20, and 225 million liters of whey. Results indicate the feasibility of this intervention in the dairy industry, generating revenues of $0.18, $3.05, and $33.4 million per year, respectively. The findings provide scientific evidence to promote the safety of reuse of reconditioned water in food processing plants, contributing to building a culture of water conservation and sustainable production throughout the food supply chain.
机译:缺水正威胁着美国的粮食安全和业务增长。在乳制品行业,大部分水用于清洁应用。因此,在这些过程中支持节水的任何尝试都会对乳制品的水足迹产生相当大的影响。这项研究证明了从乳清中回收高质量水的可行性,乳清是一种高污染奶酪制造副产品,可在就地清洗系统中重复使用。这项研究获得的结果表明,通过组合使用超滤和反渗透系统,可以回收47%的水。该系统产生蛋白质和乳糖浓缩物,这些副产物一旦喷雾干燥,就可以满足蛋白质和乳糖粉的商业标准。还对回收的渗透液的物理化学和微生物质量进行了分析,表明适合的特性可在就地清洗系统中重复使用,而不会影响在清洗设备上制造的产品的质量和安全性。考虑到年产量分别为1、20和2.25亿升乳清,对3种奶酪制造水平进行了成本分析。结果表明,这种干预在乳制品行业的可行性,每年分别产生0.18美元,3.05美元和3340万美元的收入。这些发现为提高食品加工厂中再生水的再利用安全性提供了科学依据,有助于在整个食品供应链中建立节水文化和可持续生产。

著录项

  • 来源
    《Journal of dairy science》 |2016年第5期|3396-3407|共12页
  • 作者单位

    Department of Food Science and Technology, University of Nebraska, Lincoln 68588,The Food Processing Center, University of Nebraska, Lincoln 68588;

    Department of Food Science and Technology, University of Nebraska, Lincoln 68588,The Food Processing Center, University of Nebraska, Lincoln 68588;

  • 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

    water reconditioning; water optimization; food industry; membrane filtration;

    机译:水修复;水质优化;食品工业;膜过滤;

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