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Effects of Combined Shear and Thermal Forces on Destruction of Microbacterium lacticum

机译:剪切力和热力的联合作用对乳酸微球菌的破坏

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摘要

A twin-screw extruder and a rotational rheometer were used to generate shear forces in concentrated gelatin inoculated with a heat-resistant isolate of a vegetative bacterial species, Microbacterium lacticum. Shear forces in the extruder were mainly controlled by varying the water feed rate. The water content of the extrudates changed between 19 and 45% (wet weight basis). Higher shear forces generated at low water contents and the calculated die wall shear stress correlated strongly with bacterial destruction. No surviving microorganisms could be detected at the highest wall shear stress of 409 kPa, giving log reduction of 5.3 (minimum detection level, 2 × 104 CFU/sample). The mean residence time of the microorganism in the extruder was 49 to 58 s, and the maximum temperature measured in the end of the die was 73°C. The D75°C of the microorganism in gelatin at 65% water content was 20 min. It is concluded that the physical forces generated in the reverse screw element and the extruder die rather than heat played a major part in cell destruction. In a rotational rheometer, after shearing of a mix of microorganisms with gelatin at 65% (wt/wt) moisture content for 4 min at a shear stress of 2.8 kPa and a temperature of 75°C, the number of surviving microorganisms in the sheared sample was 5.2 × 106 CFU/g of sample compared with 1.4 × 108 CFU/g of sample in the nonsheared control. The relative effectiveness of physical forces in the killing of bacteria and destruction of starch granules is discussed.
机译:使用双螺杆挤出机和旋转流变仪在浓缩的明胶中产生剪切力,该明胶接种有营养细菌物种耐热乳酸菌的耐热分离株。挤出机中的剪切力主要通过改变给水速率来控制。挤出物的水含量在19至45%之间(以湿重计)。在低水含量下产生的较高的剪切力和计算出的模壁剪切应力与细菌破坏密切相关。在最高壁切应力为409 kPa时,未检测到任何存活的微生物,对数降低了5.3(最低检测水平为2×10 4 CFU /样品)。微生物在挤出机中的平均停留时间为49到58 s,在模头末端测得的最高温度为73°C。明胶中微生物在含水量为65%时的D75°C为20分钟。结论是,在反向螺杆元件和挤出机中产生的物理力而不是热量在细胞破坏中起主要作用。在旋转流变仪中,将具有65%(wt / wt)水分的明胶微生物混合物在2.8 kPa的剪切应力和75°C的温度下剪切4分钟后,剪切后存活的微生物数量样品为5.2×10 6 CFU / g样品,而未剪切的对照组为1.4×10 8 CFU / g样品。讨论了物理力在杀死细菌和破坏淀粉颗粒方面的相对有效性。

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