Gachovska T K, Kumar S, Thippareddi H, Subbiah J, Williams F
Biological Systems Engineering, University of Nebraska, Lincoln, NE 68583, USA.
J Food Sci. 2008 Nov;73(9):M412-7. doi: 10.1111/j.1750-3841.2008.00956.x.
Apple juice inoculated with Escherichia coli ATCC 23472 was processed continuously using either ultraviolet (UV), high-voltage pulsed electric field (PEF), or a combination of the PEF and UV treatment systems. Apple juice was pumped through either of the systems at 3 flow rates (8, 14, and 20 mL/min). E. coli was reduced by 3.46 log CFU/mL when exposed in a 50 cm length of UV treatment chamber at 8 mL/min (2.94 s treatment time with a product temperature increase of 13 degrees C). E. coli inactivation of 4.87 log CFU/mL was achieved with a peak electric field strength of 60 kV/cm and 11.3 pulses (average pulse width of 3.5 mus, product temperature increased to 52 degrees C). E. coli reductions resulting from a combination treatment of UV and PEF applied sequentially were evaluated. A maximum E. coli reduction of 5.35 log CFU/mL was achieved using PEF (electrical field strength of 60 kV/cm, specific energy of 162 J/mL, and 11.3 pulses) and UV treatments (length of 50 cm, treatment time of 2.94 s, and flow rate of 8 mL/min). An additive effect was observed for the combination treatments (PEF and UV), regardless of the order of treatment (P > 0.05). E. coli reductions of 5.35 and 5.30 log CFU/mL with PEF treatment (electrical field strength of 60 kV/cm, specific energy of 162 J/mL, and 11.3 pulses) followed by UV (length of 30 cm, treatment time of 1.8 s, and flow rate of 8 mL/min) and UV treatment followed by PEF (same treatment conditions), respectively. No synergistic effect was observed.
接种了大肠杆菌ATCC 23472的苹果汁,通过紫外线(UV)、高压脉冲电场(PEF)或PEF与UV处理系统的组合进行连续处理。苹果汁以3种流速(8、14和20毫升/分钟)泵入其中任何一个系统。当以8毫升/分钟的流速在50厘米长的紫外线处理室中暴露时(处理时间2.94秒,产品温度升高13摄氏度),大肠杆菌数量减少了3.46 log CFU/毫升。在峰值电场强度为60 kV/cm和11.3个脉冲(平均脉冲宽度3.5微秒,产品温度升至52摄氏度)的情况下,大肠杆菌的灭活率达到4.87 log CFU/毫升。评估了依次应用UV和PEF组合处理导致的大肠杆菌减少情况。使用PEF(电场强度60 kV/cm,比能量162 J/毫升,11.3个脉冲)和UV处理(长度50厘米,处理时间2.94秒,流速8毫升/分钟)时,大肠杆菌的最大减少量达到5.35 log CFU/毫升。对于组合处理(PEF和UV),无论处理顺序如何,均观察到相加效应(P>0.05)。先进行PEF处理(电场强度60 kV/cm,比能量162 J/毫升,11.3个脉冲)再进行UV处理(长度30厘米,处理时间1.8秒,流速8毫升/分钟)和先进行UV处理再进行PEF处理(相同处理条件)时,大肠杆菌的减少量分别为5.35和5.30 log CFU/毫升。未观察到协同效应。