Rokhina Ekaterina V, Lens Piet, Virkutyte Jurate
Kuopio University, Department of Environmental Sciences, Yliopistonranta 1E, 70211 Kuopio, Finland.
Trends Biotechnol. 2009 May;27(5):298-306. doi: 10.1016/j.tibtech.2009.02.001. Epub 2009 Mar 25.
The use of low-frequency (10-60 kHz) ultrasound for enhancement of various biotechnological processes has received increased attention over the last decade as a rapid and reagentless method. Recent breakthroughs in sonochemistry have made the ultrasound irradiation procedure more feasible for a broader range of applications. By varying the sonication parameters, various physical, chemical and biological effects can be achieved that can enhance the target processes in accordance with the applied conditions. However, the conditions that have provided beneficial effects of ultrasound on bioprocesses are case-specific and are therefore not widely available in the literature. This review summarizes the current state of the art in areas where sonochemistry could be successfully combined with biotechnology with the aim of enhancing the efficiency of bioprocesses, including biofuel production, bioprocess monitoring, enzyme biocatalysts, biosensors and biosludge treatment.
在过去十年中,作为一种快速且无需试剂的方法,使用低频(10 - 60千赫)超声来强化各种生物技术过程受到了越来越多的关注。声化学领域的最新突破使超声辐照程序在更广泛的应用中变得更加可行。通过改变超声处理参数,可以实现各种物理、化学和生物效应,这些效应可根据应用条件增强目标过程。然而,使超声对生物过程产生有益影响的条件因具体情况而异,因此在文献中并不广泛可得。本综述总结了声化学可与生物技术成功结合以提高生物过程效率的领域的当前技术水平,包括生物燃料生产、生物过程监测、酶生物催化剂、生物传感器和生物污泥处理。