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首页> 外文期刊>Poultry Science >Microbiological and chemical analyses of ice collected from a commercial poultry processing establishment.
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Microbiological and chemical analyses of ice collected from a commercial poultry processing establishment.

机译:从商业家禽加工企业收集的冰的微生物和化学分析。

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摘要

A study was conducted to evaluate the microbiological and chemical characteristics of ice collected from a commercial poultry further processing facility. During each of 3 visits, the following ice samples were collected: 1) freshly prepared, unused ice; 2) product-contact ice from ice-packed poultry parts; 3) product-contact ice from ice-packed poultry that had been visibly inspected and condemned as not for reuse; and 4) product-contact ice from ice-packed poultry that had passed visible inspection and had been prepared for reuse by washing (rinse with potable water and drain). The overall pattern for lowest to highest numbers of total aerobic microorganisms, coliforms, Escherichia coli, and Enterobacteriaceae was as follows: unused ice < washed ice < product-contact ice < condemned ice. Mean levels of total aerobic microorganisms, coliforms, and Enterobacteriaceae in the unused ice were 0.3, 0.4, and 0.4 log cfu/mL, respectively. No E. coli was detected in the unused or washed ice, and levels were 0.5 and 1.5 log cfu/mL in the product-contact and condemned ice samples, respectively. Mean levels of bacteria enumerated in condemned ice were 0.8, 1.0, and 0.6 log cfu/mL higher than the levels of bacteria found in product-contact ice for coliforms, E. coli, and Enterobacteriaceae, respectively. Washing and draining the product-contact ice decreased counts by 0.9, 0.7, 0.5, and 1.7 log cfu/mL for total aerobic microorganisms, coliforms, E. coli, and Enterobacteriaceae, respectively. All of the ice samples had similar pH values (pH 6.1 to 6.4). Unused and washed ice were not significantly different for total solids, total suspended solids, total Kjeldahl nitrogen, and chemical oxygen demand. Condemned ice contained the highest concentration of total solids, total suspended solids, total Kjeldahl nitrogen, and chemical oxygen demand, with levels more than 3 times that found in product contact ice. Data from the present study demonstrate that visible contamination in ice corresponds with increased microbiological and chemical contamination. Product-contact ice may be washed and the washing procedure can reduce the bacterial, solids, nitrogen, and organic loads.
机译:进行了一项研究,以评估从商业家禽进一步加工设施中收集的冰的微生物学和化学特性。在3次访问中的每一次访问中,都收集了以下冰样本:1)新鲜制备的未使用的冰; 2)从装满冰块的家禽部位接触产品的冰块; 3)装满冰块的家禽的产品接触冰,已经进行了检查并被谴责为不可重复使用; 4)装满冰块的家禽的产品接触冰块,通过了目视检查,并准备通过洗涤进行再利用(用饮用水冲洗并排干)。总有氧微生物,大肠菌群,大肠杆菌和肠杆菌科细菌的数量从最低到最高的总体模式如下:未使用的冰<洗过的冰<接触产品的冰<死冰。未使用的冰中总需氧微生物,大肠菌群和肠杆菌科的平均水平分别为0.3、0.4和0.4 log cfu / mL。在未使用或清洗过的冰中未检测到大肠杆菌,产品接触和定罪的冰样品中的水平分别为0.5和1.5 log cfu / mL。死冰中列举的细菌平均水平分别比大肠菌,大肠杆菌和肠杆菌科的产品接触冰中发现的细菌水平分别高0.8、1.0和0.6 log cfu / mL。洗涤和沥干产品接触冰后,总需氧微生物,大肠菌,大肠杆菌和肠杆菌科的计数分别降低了0.9、0.7、0.5和1.7 log cfu / mL。所有的冰样品具有相似的pH值(pH 6.1至6.4)。对于总固体,总悬浮固体,总凯氏氮和化学需氧量,未使用和洗过的冰没有显着差异。死冰包含最高浓度的总固体,总悬浮固体,总凯氏氮和化学需氧量,含量是产品接触冰的三倍以上。来自本研究的数据表明,冰中的可见污染与微生物和化学污染的增加相对应。可以清洗与产品接触的冰,并且清洗程序可以减少细菌,固体,氮和有机物的负荷。

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