...
首页> 外文期刊>Biotechnology Progress >On-line sterilization of cheese whey using ultraviolet radiation
【24h】

On-line sterilization of cheese whey using ultraviolet radiation

机译:使用紫外线对奶酪乳清进行在线灭菌

获取原文
获取原文并翻译 | 示例

摘要

The effectiveness of ultraviolet radiation for on-line sterilization of cheese whey was investigated. The effects of flow rate and residence time on the performance of three UV reactors having different gap sizes (18, 13, and 6 min) were studied. Six flow rates and six residence times were tested with the three UV reactors. The cheese whey used in this study had a very high turbidity (4317 NTU), very poor transmittance in the UV radiation germicidal range (similar to0%), and high percentage of large solid particles (similar to20% > 100 mum). Although the cheese whey physical characteristics showed low probability of sterilization using UV radiation, the study showed that UV radiation can be used on-line to sterilize cheese whey if the proper reactor gap size and the appropriate residence time are used. There were combined effects of the flow rate and gap size. The cell removal efficiency increased with increases in residence time and decreases in the UV reactor gap size. Removal efficiency of 100% was not achieved in this study with the first UV reactor (18-mm. gap size), whereas 100% removal efficiency was achieved with the second (13-mm gap size) and third (6-mm gap size) UV reactors at residence times of 2.0 and 0.5 h, respectively. The microbial decay rates achieved in this study were 4.94, 7.62, and 20.9 h(-1) using the first, second, and third UV reactor, respectively. Residence times of 3.3, 2.1, and 0.8 h would be required to completely destruct a microbial population of 5.95 x 10(6) cells/mL using the first, second, and third UV reactors, respectively. Although cheese whey sterilization using UV radiation seems to be a good alternative to pasteurization, increases in cheese whey temperature resulted in lamp fouling. If online sterilization is to be used, the fouling problem should be investigated and a maintenance scheme for the UV reactor should be developed.
机译:研究了紫外线对干酪乳清在线灭菌的有效性。研究了流速和停留时间对三种具有不同间隙尺寸(18、13和6分钟)的UV反应器性能的影响。使用三个UV反应器测试了六个流速和六个停留时间。本研究中使用的干酪乳清浊度非常高(4317 NTU),在紫外线辐射杀菌范围内的透射率非常差(大约为0%),并且大的固体颗粒百分比很高(大约为20%> 100 mum)。尽管干酪乳清的物理特性显示使用紫外线辐射灭菌的可能性较低,但研究表明,如果使用适当的反应器间隙尺寸和适当的停留时间,则可以在线使用紫外线辐射对干酪乳清进行灭菌。结合了流速和间隙尺寸的影响。细胞去除效率随停留时间的增加而增加,而紫外线反应器的间隙尺寸减小。在本研究中,第一个紫外线反应器(间隙尺寸为18毫米)未达到100%的去除效率,而第二个(13毫米间隙尺寸)和第三个(6-mm间隙尺寸)则达到了100%去除效率。 )UV反应器的停留时间分别为2.0和0.5 h。在本研究中,使用第一,第二和第三UV反应器分别达到4.94、7.62和20.9 h(-1)的微生物衰减率。使用第一个,第二个和第三个UV反应器分别需要彻底破坏5.95 x 10(6)细胞/ mL的微生物种群时,需要3.3、2.1和0.8 h的停留时间。尽管使用紫外线辐射的干酪乳清杀菌似乎是巴氏灭菌的一种很好的替代方法,但是干酪乳清温度的升高导致灯结垢。如果要使用在线灭菌,则应调查结垢问题,并应制定紫外线反应器的维护方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号