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首页> 外文期刊>Food Control >Non-thermal inactivation of Escherichia coli K12 in buffered peptone water using a pilot-plant scale supercritical carbon dioxide system with a gas-liquid porous metal contactor.
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Non-thermal inactivation of Escherichia coli K12 in buffered peptone water using a pilot-plant scale supercritical carbon dioxide system with a gas-liquid porous metal contactor.

机译:使用具有气液多孔金属接触器的中试规模超临界二氧化碳系统,在缓冲蛋白ept水中进行非热灭活大肠杆菌K12。

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This study evaluated the effectiveness of a supercritical carbon dioxide (SCCO2) system, with a gas-liquid porous metal contactor, for reducing Escherichia coli K12 in diluted buffered peptone water. 0.1% (w/v) buffered peptone water inoculated with E. coli K12 was processed using the SCCO2 system at CO2 concentrations of 3.1-9.5 wt%, outlet temperatures of 34, 38, and 42 degrees C, a system pressure of 7.6MPa, and a flow rate of 1L/min. Increased CO2 concentrations and temperatures significantly (P<0.05) enhanced microbial reduction. A maximum reduction of 5.8-log was obtained at 8.2% CO2 and 42 degrees C. To achieve a 5-log reduction of E. coli K12 in 0.1% buffered peptone water, minimum CO2 concentrations of 9.5%, 5.5%, and 5.3% were needed at 34, 38, and 42 degrees C, respectively. Further reductions of cells were observed after storage for 7 days at 4 degrees C. But storage at 25 degrees C increased the number of viable cells to 8-log cfu/mL after 7 days. This study showed the potential of the pilot scale SCCO2 system with a gas-liquid porous metal contactor for microbial inactivation in liquid food
机译:这项研究评估了具有气液多孔金属接触器的超临界二氧化碳(SCCO2)系统在稀释的缓冲蛋白ept水中还原大肠杆菌K12的有效性。使用SCCO2系统在3.1-9.5 wt%的CO2浓度,出口温度34、38和42摄氏度,系统压力7.6MPa的条件下处理接种了K12的0.1%(w / v)缓冲蛋白ept水,流速为1L / min。增加的CO2浓度和温度显着(P <0.05)增强了微生物的减少。在8.2%的CO2和42摄氏度的条件下,最大减少量为5.8 log。要使0.1%缓冲蛋白ept水中的大肠杆菌K12减少5个对数值,最小的CO2浓度应为9.5%,5.5%和5.3%需要分别在34、38和42摄氏度下使用。在4摄氏度下储存7天后,观察到细胞进一步减少。但是,在25摄氏度下储存7天后,活细胞数量增加到8 log cfu / mL。这项研究表明,带有气-液多孔金属接触器的中试规模SCCO2系统对于液态食品中微生物灭活的潜力

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