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Effect of microwave radiation on inactivation of Clostridium sporogenes (PA 3679) spores.

机译:微波辐射对孢子囊梭菌(PA 3679)孢子失活的影响。

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摘要

Three techniques for studying effects of microwave radiation on microorganisms were introduced. Spores of Clostridium sporogenes (PA 3679) were chosen as a test organism because the kinetic parameters for thermal inactivation are well known and because of the importance of the genus Clostridium to the food industry. For the first technique, a specially designed kinetics vessel was used to compare inactivation rates of microwave-heated and conventionally heated spores at steady-state temperatures of 90, 100, and 110 degrees C. Rates were found to be similar at the 95% confidence level. The second and third techniques were designed to study the effect of relatively high power microwave exposure at sublethal temperatures. In the second approach, the suspension was continuously cooled via direct contact with a copper cooling coil in a well-mixed vessel, outside the microwave oven. The suspension was pumped through a Teflon loop in the oven, where it continuously absorbed approximately 400 W of microwave power. Inactivation occurred in both irradiated and unirradiated samples. It was suspected that copper ions entered the suspension from the copper coil and were toxic to the spores. The fact that the results were similar, however, implied the absence of nonthermal microwave effects. In the third approach, the copper coil was replaced with a silicone tubing loop in a microwave transparent vessel. The suspension was continuously irradiated at 150 W of microwave power. No detectable inactivation occurred. Results indicated that the effect of microwave energy on viability of spores was indistinguishable from the effect of conventional heating.
机译:介绍了三种研究微波辐射对微生物影响的技术。选择Clostridium sporogenes(PA 3679)的孢子作为测试生物,是因为热失活的动力学参数是众所周知的,并且因为Clostridium属对食品工业的重要性。对于第一种技术,使用专门设计的动力学容器来比较在90、100和110摄氏度的稳态温度下微波加热的孢子和传统加热的孢子的失活率。在95%置信度下发现速率相似水平。第二和第三种技术旨在研究亚致死温度下相对较高功率的微波暴露的影响。在第二种方法中,将悬浮液在微波炉外部通过充分混合的容器中与铜冷却盘管的直接接触而连续冷却。将悬浮液泵送通过烤箱中的特氟隆环管,在其中它连续吸收约400 W的微波功率。辐照和未辐照样品均发生灭活。怀疑铜离子从铜线圈进入悬浮液,并对孢子有毒。然而,结果相似的事实暗示不存在非热微波效应。在第三种方法中,将铜线圈替换为微波透明容器中的硅胶管环。将该悬浮液以150W的微波功率连续照射。没有发生可检测到的失活。结果表明,微波能量对孢子活力的影响与常规加热的影响是无法区分的。

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