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使用替代和指示微生物对家禽粪便堆肥进行物理热处理的工厂规模验证

Plant-Scale Validation of Physical Heat Treatment of Poultry Litter Composts Using Surrogate and Indicator Microorganisms for .

作者信息

Wang Hongye, Chen Zhao, Dharmasena Muthu, Greene Annel K, Gardener Brian McSpadden, Holden Blaize, Jiang Xiuping

机构信息

Department of Food, Nutrition, and Packaging Sciences, Clemson University, Clemson, South Carolina, USA.

Department of Biological Sciences, Clemson University, Clemson, South Carolina, USA.

出版信息

Appl Environ Microbiol. 2021 Mar 1;87(5). doi: 10.1128/AEM.02234-20. Epub 2020 Dec 18.

Abstract

This study selected and used indicator and surrogate microorganisms for to validate the processes for physically heat-treated poultry litter compost in litter processing plants. Initially laboratory validation studies indicated that 1.2- to 2.7-log or more reductions of desiccation-adapted NRRL B-2354 were equivalent to > 5-log reductions of desiccation-adapted Senftenberg 775/W in poultry litter compost, depending on treatment conditions and compost types. Plant validation studies were performed in one turkey litter compost processor and one laying hen litter compost processor. was inoculated at ca.7 log CFU g into the turkey litter compost and at ca. 5 log CFU g into laying hen litter compost with respectively targeted moisture contents. The thermal processes in the two plants yielded 2.8 - > 6.4 log CFU g (> 99.86%) reductions of the inoculated. Similarly, for the processing control samples, reductions of presumptive indigenous enterococci were in the order of 1.8-3.7 log CFU g (98.22% to 99.98%) of the total naturally present. In contrast, there were less reductions of indigenous mesophiles (1.7-2.9 log CFU) and thermophiles (0.4-3.2 log CFU g). More indigenous enterococci were inactivated in the presence of higher moisture in the poultry litter compost. Based on the data collected under the laboratory conditions, the processing conditions in both plants were adequate to reduce any potential contamination of processed poultry litter compost by at least 5 logs, even though the processing conditions varied among trials and plants. Poultry litter compost, commonly used as a biological soil amendment, is subjected to a physical heat-treatment in industry setting to reduce pathogenic bacteria such as and produce a dry product. According to the FDA Food Safety Modernization Act (FSMA) Produce Safety Rule, the thermal process for poultry litter compost should be scientifically validated to satisfy the microbial standard requirement. To the best of our knowledge, this is the first validation study in commercial poultry litter compost processing plants, and our results indicated that levels, if present, could be reduced by at least 5 logs based on the reductions of surrogate and indicator microorganisms, even though the processing conditions in these commercial plants varied greatly. Furthermore, both indicator and surrogate microorganisms along with the custom-designed sampler can serve as practical tools for poultry litter compost processors to routinely monitor or validate their thermal processes without introducing pathogens into the industrial environments.

摘要

本研究选择并使用指示微生物和替代微生物来验证家禽垫料处理厂中物理热处理家禽垫料堆肥的过程。最初的实验室验证研究表明,根据处理条件和堆肥类型,在适应干燥的家禽垫料堆肥中,适应干燥的嗜热栖热放线菌NRRL B - 2354减少1.2至2.7个对数或更多,等同于适应干燥的森夫滕贝格775/W减少超过5个对数。在一家火鸡垫料堆肥处理厂和一家蛋鸡垫料堆肥处理厂进行了工厂验证研究。将嗜热栖热放线菌分别以约7 log CFU/g接种到火鸡垫料堆肥中,以约5 log CFU/g接种到蛋鸡垫料堆肥中,使其具有各自目标水分含量。两家工厂的热处理过程使接种的嗜热栖热放线菌减少了2.8至>6.4 log CFU/g(>99.86%)。同样,对于处理对照样品,推定的本地肠球菌减少量为自然存在总量的1.8至3.7 log CFU/g(98.22%至99.98%)。相比之下,本地嗜温菌(1.7至2.9 log CFU)和嗜热菌(0.4至3.2 log CFU/g)的减少量较少。在家禽垫料堆肥中水分含量较高时,更多的本地肠球菌被灭活。根据实验室条件下收集的数据,尽管试验和工厂之间的处理条件各不相同,但两家工厂的处理条件足以使处理后的家禽垫料堆肥中任何潜在的嗜热栖热放线菌污染减少至少5个对数。家禽垫料堆肥通常用作生物土壤改良剂,在工业环境中进行物理热处理以减少诸如嗜热栖热放线菌等病原菌,并生产干燥产品。根据美国食品药品监督管理局(FDA)的《食品安全现代化法案》(FSMA)农产品安全规则,家禽垫料堆肥的热处理过程应经过科学验证,以满足微生物标准要求。据我们所知,这是商业家禽垫料堆肥处理厂的首次验证研究,我们的结果表明,即使这些商业工厂的处理条件差异很大,但基于替代微生物和指示微生物的减少情况,如果存在嗜热栖热放线菌,其含量可减少至少5个对数。此外,指示微生物和替代微生物以及定制设计的采样器可作为家禽垫料堆肥处理厂的实用工具,用于常规监测或验证其热处理过程,而不会将病原体引入工业环境。

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