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一种新型的混合空化工艺,利用植物来源的天然油来增强和改变消毒速度。

A novel hybrid cavitation process for enhancing and altering rate of disinfection by use of natural oils derived from plants.

机构信息

Chemical Engineering and Process Development Division, CSIR-National Chemical Laboratory, Pune, India; Academy of Scientific and Innovative Research (AcSIR), CSIR-NCL Pune, India.

Chemical Engineering and Process Development Division, CSIR-National Chemical Laboratory, Pune, India; Academy of Scientific and Innovative Research (AcSIR), CSIR-NCL Pune, India.

出版信息

Ultrason Sonochem. 2020 Mar;61:104820. doi: 10.1016/j.ultsonch.2019.104820. Epub 2019 Oct 4.

Abstract

The present study is an attempt to improvise the hydrodynamic cavitation methodology for effective disinfection of water and also to suggest prototype development for practical application. The enhancement in the disinfection efficiency was evaluated specifically for the effect of pressure, temperature, pH, microbial inoculum size and also on effect of different additives for the two model microbial strains, gram-negative (Escherichia coli) and gram-positive (Staphylococcus aureus). The efficacy of the hydrodynamic cavitation is evaluated for the two types of flows/cavitation devices - linear flow in the case of orifice and vortex flow for vortex diode. The vortex diode requires significantly lower pressures, 50% lower as compared to orifice for the similar extent of disinfection. While the bacterial disinfection at high temperature is known, the usefulness of hydrodynamic cavitation is especially evident at ambient conditions and the process is effective even at very high concentrations of bacteria, not reported so far. The reactor geometry also has significant effect on the disinfection. The present study, for the first time, reports possible use of different natural oils such as castor oil, cinnamon oil, eucalyptus oil and clove oil in conjunction with hydrodynamic cavitation. The nature of oil modifies the cavitation behavior and an order of magnitude enhancement in the cavitation rate was observed for the two oils, eucalyptus and clove oil for a very small concentration of 0.1%. The increased rates of disinfection, of the order of 2-4 folds, using oil can drastically reduce the time of operation and consequently reduce cost of disinfection. A possible mechanism is proposed for the effect of oil and hydrodynamic cavitation in cell destruction through the rupture of cell wall, oxidative damage and possible DNA denaturation. A cavitation model using per pass disinfection was used to correlate the data. The increased efficiency using oils and possible benefits of the developed process, where natural oils can be perceived as biocatalysts, can have significant advantages in practical applications.

摘要

本研究旨在改进流体动力学空化方法,以实现水的有效消毒,并提出实用原型开发建议。具体评估了压力、温度、pH 值、微生物接种量以及两种模型微生物菌株(革兰氏阴性菌[大肠杆菌]和革兰氏阳性菌[金黄色葡萄球菌])对不同添加剂的影响对消毒效率的增强作用。评估了两种类型的流动/空化装置——孔口中的线性流动和涡流二极管中的涡流流动的空化效果。涡流二极管需要明显更低的压力,与孔口相比,相同消毒程度下压力低 50%。虽然高温下的细菌消毒是已知的,但流体动力学空化的有效性在环境条件下尤为明显,即使在细菌浓度非常高的情况下(目前尚未报道),该过程也是有效的。反应器几何形状也对消毒有重要影响。本研究首次报道了在流体动力学空化过程中可能使用不同的天然油,如蓖麻油、肉桂油、桉树油和丁香油。油的性质改变了空化行为,在非常小的浓度 0.1%下,观察到两种油(桉树油和丁香油)的空化率提高了一个数量级。使用油可将消毒率提高 2-4 倍,这可以大大缩短操作时间,从而降低消毒成本。提出了一种可能的机制,即油和流体动力学空化通过破坏细胞壁、氧化损伤和可能的 DNA 变性对细胞破坏的影响。使用单程消毒的空化模型对数据进行了关联。使用油提高效率以及所开发工艺的可能益处,其中天然油可以被视为生物催化剂,在实际应用中具有重要优势。

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