首页> 外文期刊>Transactions of the ASABE >EVALUATION OF BLENDED ELECTROLYZED OXIDIZING WATER-BASED CLEANING-IN-PLACE (CIP) TECHNIQUE USING A LABORATORY-SCALE MILKING SYSTEM
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EVALUATION OF BLENDED ELECTROLYZED OXIDIZING WATER-BASED CLEANING-IN-PLACE (CIP) TECHNIQUE USING A LABORATORY-SCALE MILKING SYSTEM

机译:实验室规模化牛奶系统对混合电解氧化水基现场清洗(CIP)技术的评估

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摘要

Milk safety is a food safety concern in the U.S., and the cleanliness of on-farm milking systems directly affects raw milk quality. The conventionally accepted four-step procedure for milking system cleaning-in-place (CIP) includes: (1) warm water rinse, (2) alkaline wash, (3) acid wash, and (4) sanitizing rinse prior to the next milking event. Electrolyzed oxidizing (EO) water is an emerging technology that generates acidic and alkaline EO water by electrodialysis of a dilute sodium chloride solution. Previous studies have shown that EO water can be an alternative for conventional milking system CIP, both in pilot-scale milking systems and on commercial dairy farms. Recently, a one-step cleaning process has been adopted on an increasing number of dairy farms that combines the alkaline wash and acid wash to save chemical expenditure, water usage, energy cost, and time. By blending acidic EO water with alkaline EO water, a less corrosive but still effective blended EO water solution can be produced. Therefore, this study was undertaken to evaluate the blended EO water solution for one-step CIP using a pilot-scale milking system and compare the CIP effectiveness and cost with commercial one-step CIP chemicals. A Box-Behnken three-factor response surface method was used to determine the optimal cleaning time, the starting temperature of the blended EO water solution, and the acidic EO water percentage. Two commercial one-step CIP chemicals were used for comparisons of CIP effectiveness and cost. Results showed that a cleaning time of 17 min, a starting temperature of 59 degrees C, and an acidic EO water percentage of 60% in the blended EO water solution could achieve the required 100% CIP performance and was comparable to the commercial one-step cleaning chemicals. Moreover, it was determined that the operating cost of one complete cleaning cycle, including the material cost and energy consumption, using blended EO water was 80% lower than using the commercial one-step cleaning chemicals. Overall, this study demonstrated that blended EO water has potential to be adapted as an alternative for one-step CIP for milking systems and possibility other food processing equipment.
机译:牛奶安全性是美国食品安全的关注点,农场挤奶系统的清洁度直接影响原料奶的质量。常规上公认的就地挤奶系统(CIP)的四步程序包括:(1)温水漂洗,(2)碱洗,(3)酸洗和(4)在下次挤奶前进行消毒漂洗事件。电解氧化(EO)水是一种新兴技术,可通过稀氯化钠溶液的电渗析产生酸性和碱性EO水。先前的研究表明,在中试规模的挤奶系统和商业奶牛场中,EO水都可以替代常规挤奶系统CIP。最近,越来越多的奶牛场采用了一步清洗的方法,将碱洗和酸洗相结合,以节省化学费用,用水,能源成本和时间。通过将酸性EO水与碱性EO水混合,可以生产腐蚀性较低但仍有效的混合EO水溶液。因此,本研究旨在使用中试规模挤奶系统评估一步法CIP的混合EO水溶液,并与商业一步法CIP化学品比较CIP的有效性和成本。使用Box-Behnken三因素响应表面方法确定最佳清洗时间,混合EO水溶液的起始温度和酸性EO水百分比。使用两种商品化一步CIP化学药品来比较CIP的有效性和成本。结果表明,在混合的EO水溶液中,清洁时间为17分钟,起始温度为59摄氏度,酸性EO水百分比为60%可以达到所需的100%CIP性能,并且与商业一步法相当清洁化学品。此外,已确定使用混合的EO水进行的一个完整清洁周期的运行成本(包括材料成本和能耗)比使用商用一步清洁化学品低80%。总的来说,这项研究表明,混合的EO水有潜力被用作挤奶系统和其他食品加工设备的一步CIP的替代品。

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