Dept. of Agricultural and Biosystems Engineering, North Dakota State Univ., Fargo, ND 58108-6050, USA.
J Food Sci. 2010 Aug 1;75(6):E372-8. doi: 10.1111/j.1750-3841.2010.01668.x.
Durum wheat grain from the field is naturally contaminated with bacteria, yeast, and mold. The reduction in aerobic plate count (APC) and yeast and mold count (YMC) is often necessary before processing wheat. Gaseous ozone, ozonated water, and acetic acid solution are nontraditional antimicrobial agents for grains and are safe for humans and the environment. Better disinfection may be possible by applying antimicrobial agents to grain in a fluidized state. Fluidization increases the exposure of grain surfaces, resulting in uniform and quick contact of grain with antimicrobial agents. Therefore, a fluidized bed was developed with automated spraying system (to spray treatment waters), and a port for gaseous ozone injection. The pressures and velocities within the fluidized bed system were measured to characterize the system. The treatments used on fluidized grain were: distilled water (control), gaseous ozone (6 ppm), ozonated water (23 mg/L), gaseous ozone + ozonated water (6 ppm, 23 mg/L), acetic acid solution (0.5%), acetic acid + ozonated water (0.5%, 26 mg/L), and gaseous ozone + acetic acid + ozonated water (6 ppm, 0.5%, 26 mg/L). The last of these treatments was most effective with 1.7 and 3.3 log reduction in APC and YMC, respectively. This combined treatment can be used to replace the chlorinated water that industry uses during tempering of grain. Ozonated water alone resulted in a 0.3 log reduction in both APC and YMC. Gaseous ozone alone did not cause a significant reduction in APC and YMC.
田间收获的硬质小麦麦粒自然会受到细菌、酵母和霉菌的污染。在加工小麦之前,通常需要降低有氧平板计数(APC)和酵母及霉菌计数(YMC)。气态臭氧、臭氧水和乙酸溶液是非传统的谷物抗菌剂,对人类和环境是安全的。通过将抗菌剂应用于流化状态的谷物,可能会实现更好的消毒效果。流化会增加谷物表面的暴露,从而使谷物与抗菌剂均匀快速接触。因此,开发了一种带有自动喷雾系统(用于喷洒处理水)和一个用于注入气态臭氧端口的流化床。测量流化床系统内的压力和速度,以表征系统。对流化谷物进行的处理包括:蒸馏水(对照)、气态臭氧(6ppm)、臭氧水(23mg/L)、气态臭氧+臭氧水(6ppm、23mg/L)、乙酸溶液(0.5%)、乙酸+臭氧水(0.5%、26mg/L)和气态臭氧+乙酸+臭氧水(6ppm、0.5%、26mg/L)。最后一种处理方法对 APC 和 YMC 的减少最为有效,分别为 1.7 和 3.3 个对数减少。这种联合处理方法可以替代谷物调质过程中工业使用的含氯水。单独使用臭氧水对 APC 和 YMC 的减少分别为 0.3 个对数。单独使用气态臭氧不会显著降低 APC 和 YMC。