Gogate Parag R, Pandit Aniruddha B
Chemical Engineering Division, Institute of Chemical Technology, University of Mumbai, Matunga, Mumbai 400 019, India.
Ultrason Sonochem. 2004 May;11(3-4):105-17. doi: 10.1016/j.ultsonch.2004.01.005.
The present work deals with the discussion on the engineering aspects of the design of large-scale sonochemical reactors using the solutions of the bubble dynamics equations as well as experimentation with different reactor types and reactions. Design correlations for the collapse pressure and its relation to the cavitational yield have also been given which should assist the designers in the choice of the operating parameters for a desired cavitational effect. Some techniques for the intensification of cavitational activity (with the use of additives) with an aim of reducing the cost of operation have also been discussed. The guidelines for the future work to be carried out to remove the lacunae in the design information with an aim of developing industrial scale efficient sonochemical reactors have also been mentioned.
本工作涉及利用气泡动力学方程的解对大型声化学反应器设计的工程方面进行讨论,以及对不同反应器类型和反应进行实验。还给出了崩溃压力的设计关联式及其与空化产率的关系,这将有助于设计者选择操作参数以获得所需的空化效果。还讨论了一些旨在降低运行成本而强化空化活性(使用添加剂)的技术。还提到了未来工作的指导方针,旨在消除设计信息中的空白,以开发工业规模高效的声化学反应器。