Laboratoire de Biomathématiques, Biophysique, Biochimie, et Scientométrie (L3BS), Faculté des Sciences de la Nature et de la Vie, Université de Bejaia, Bejaia 06000, Algeria.
Department of Microbiology and Biochemistry, Faculty of Sciences, University of M'Sila, M'Sila 24000, Algeria.
Molecules. 2022 Nov 1;27(21):7422. doi: 10.3390/molecules27217422.
The aim of this study is to inactivate ATCC 29212 present in dairy wastewater effluent using microwave (MW) waves and/or ultrasound waves (US). The ultrasonic bath treatment (35 kHz) had no significant effect on the reduction of the survival rate (predominant declumping effect). At 650 W of microwave treatment, the total destruction was completed at 75 s, while at 350 W a 3 log reduction was achieved. The Weibull model was fitted to the survival curves to describe the inactivation kinetics, and the effect of the combined microwave-ultrasound treatments was evaluated. The scaling parameter that was estimated from the inactivation kinetics for the microwaves combined with the ultrasound waves in pre-treatment was found to be lower than the scaling parameters obtained in post-treatment, which were in turn lower than those estimated for microwaves or ultrasound waves alone. The use of the ultrasound waves in pre-treatment was more effective than in post-treatment; a total reduction was achieved using a combination of US (30 min) followed by MW (650 W) with = 28.3 s, while 4.0 log was obtained by reversing all processes with = 34.5 s. The results from the protein assays indicate that the bacterial wall was damaged and that holes were formed from which protein leakage occurred.
本研究旨在利用微波(MW)和/或超声波(US)灭活乳制品废水中的 ATCC 29212。超声波浴处理(35 kHz)对降低存活率(主要是解絮效果)没有显著影响。在 650 W 的微波处理下,总破坏在 75 秒内完成,而在 350 W 下则实现了 3 个对数减少。威布尔模型被拟合到生存曲线中,以描述失活动力学,并评估了微波-超声联合处理的效果。从微波与超声联合预处理的失活动力学中估计的缩放参数 低于后处理中的缩放参数,而后处理中的缩放参数又低于单独使用微波或超声时的缩放参数。在预处理中使用超声波比在后续处理中更有效;使用 US(30 分钟)预处理后再使用 MW(650 W)处理可实现总减少, = 28.3 s,而通过反转所有过程( = 34.5 s)可获得 4.0 个对数减少。蛋白质分析的结果表明,细菌壁受损,形成了蛋白质泄漏的孔。