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超声波液相脱气原理及研究进展

, PP. 62-68

Keywords: 超声波,脱气技术,超声空化,研究进展

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Abstract:

超声波液相脱气技术是利用高强度超声波产生的“超声空化”现象脱除液相中多余气体的一种方法,是超声化学的重要应用领域之一。本文主要对超声波空化引起的液相脱气原理和脱气技术的研究进展进行了综述,并详细介绍了超声波液相脱气技术在冶金领域以及环境、化工领域的应用现状和主要成果,同时指出超声波液相脱气技术是常温条件下一种稳定、快速、有效且对环境无污染的脱除液相中剩余气体的方法,也是目前最有前景的一种常温脱气技术。

References

[1]  〖ZK(#〗李廷盛,尹其光.超声化学\[M\].北京:科学出版社,1995.
[2]  冯若.声化学及其应用\[M\].合肥:安徽科技出版社,1992.
[3]  Mason,T.J.,J.P.Lorimer.An introduction to sonochemistry\[J\].Endeavour,1989,13(3):123-128.
[4]  Mason,T.J.Sonochemistry and sonoprocessing:The link,the trends and (probably) the future\[J\].Ultrasonics Sonochemistry,2003,10(4/5):175-179.
[5]  Mason,T.J.Industrial sonochemistry:Potential and practicality\[J\].Ultrasonics,1992,30(3):192-196.
[6]  Henglein,A.Sonochemistry:Historical developments and modern aspects\[J\].Ultrasonics,1987,25(1):6-16.
[7]  Battino,R.,D.F.Evans.Apparatus for rapid degassing of liquid\[J\].Analytical Chemistry,1966,38(11):1627-1629.
[8]  王伟,袁守谦.超声波在冶金工业中的应用进展\[J\].金属材料与冶金工程,2007,35(5):52-56.
[9]  刘金刚,刘浏,王新华.超声波在钢铁冶金中的应用\[J\].铁合金,2006,37(1):31-34.
[10]  \[10\]Eskin,G.I.Cavitation mechanism of ultrasonic melt degassing\[J\].Ultrasonics Sonochemistry,1995,2(2):137-141.
[11]  \[11\]Eskin,G.I.Principles of ultrasonic treatment:Application for light alloys melts\[J\].Advanced Performance Materials,1997,4(2):223-232.
[12]  \[12\]Meidani,A.R.N.,M.Hasan.A study of hydrogen bubble growth during ultrasonic degassing of AlCu alloy melts\[J\].Journal of Materials Processing Technology,2004,147(3):311-320.
[13]  \[13\]Gallo,R.Correlating inclusion sizes with aluminum casting quality\[J\].Modern Casting,2004,94(6):27-30.
[14]  \[14\]Abramov,V.O.,O.V.Abramov,F.Sommer,et al.Properties of AlPb base alloys applying electromagnetic forces and ultrasonic vibration during casting\[J\].Materials Letters,1995,23(1/2/3):17-20.
[15]  Xu,H.B.,Q.Y.Han,T.T.Meek.Effects of ultrasonic vibration on degassing of aluminum alloys\[J\].Materials Science and Engineering:A,2008,473(1/2):96-104.
[16]  \[16\]Xu,H.B.,X.G.Jian,T.T.Meek,et al.Degassing of molten aluminum A356 alloy using ultrasonic vibration\[J\].Materials Letters,2004,58(29):3669-3673.
[17]  \[17\]Puga,H.,J.Barbosa,E.Seabra,et al.The influence of processing parameters on the ultrasonic degassing of molten AlSi9Cu3 aluminium alloy\[J\].Materials Letters,2009,63(9/10):806-808.
[18]  \[18\]Puga,H.,J.C.Teixeira,J.Barbosa,et al.The combined effect of melt stirring and ultrasonic agitation on the degassing efficiency of AlSi9Cu3 alloy\[J\].Materials Letters,2009,63(24/25):2089-2092.
[19]  郄喜望,李捷,马晓东,等.超声场作用下AlSi合金的除气效果及晶粒细化\[J\].金属学报,2008,44(4):5-10.
[20]  \[20\]Eller,A.I.Growth of bubbles by rectified diffusion\[J\].Journal of the Acoustical Society of America,1969,46(5):1246-1250.
[21]  \[21\]Kapustina,O.A.Interrelationship of the processes of degassing and cavitation\[J\].Soviet Physics Acoustics,1970,15(3):328-331.
[22]  \[22\]Gondrexon,N.,V.Renaudin,P.Boldo,et al.Degassing effect and gasliquid transfer in a high frequency sonochemical reactor\[J\].Chemical Engineering Journal,1997,66(1):21-26.
[23]  \[23\]Gondrexon,N.,V.Renaudin,C.Petrier,et al.Experimental study of the hydrodynamic behaviour of a high frequency ultrasonic reactor\[J\].Ultrasonics Sonochemistry,1998,5(1):1-6.
[24]  \[24\]Kumar,A.,P.R.Gogate,B.P.Aniruddha,et al.Gasliquid mass transfer studies in sonochemical reactors\[J\].Industrial & Engineering Chemistry Research,2004,43(8):1812-1819.
[25]  \[25\]Laugier,F.,C.Andriantsiferana,A.M.Wilhelm,et al.Ultrasound in gasliquid systems:Effects on solubility and mass transfer\[J\].Ultrasonics Sonochemistry,2008,15(6):965-972.
[26]  \[26\]Lekhal,A.,R.V.Chaudhari,A.M.Wilhelm,et al.Gasliquid mass transfer in gasliquidliquid dispersions\[J\].Chemical Engineering Science,1997,52(21/22):4069-4077.
[27]  \[27\]Monnier,H.,A.M.Wilhelm,H.Delmas.The influence of ultrasound on micromixing in a semibatch reactor\[J\].Chemical Engineering Science,1999,54(13/14):2953-2961.
[28]  \[28\]Sochard,S.,A.M.Wilhelm,H.Delmas.Gasvapour bubble dynamics and homogeneous sonochemistry\[J\].Chemical Engineering Science,1998,53(2):239-254.
[29]  \[29\]Yang,Z.,R.Maeda.Ultrasonic microdegassing device\[A\].In 14th IEEE International Conference on Micro Electro Mechanical Systems(MEMS 2001)\[C\].Interlaken,Switzerland,2001:471-474.
[30]  Yang,Z.,S.Matsumoto,R.Maeda.A prototype of ultrasonic microdegassing device for portable dialysis system\[J\].Sensors and Actuators A:Physical,2002,95(2/3):274-280.
[31]  \[31\]Seiden,L.W.,M.J.Epstein,S.A.Seiden.Degassing techniques applied to sealed containers for beverages,waste water and respirometers for bacteria\[J\].Biotechnology Advances,1997,15(3/4):741-746.
[32]  徐晓鸣,王有乐,李焱.超声吹脱处理氨氮废水工艺条件的试验研究\[J\].兰州理工大学学报,2006,32(3):67-69.
[33]  王有乐,翟钧,谢刚.超声波吹脱技术处理高浓度氨氮废水试验研究\[J\].环境污染治理技术与设备,2001,2(2):59-63.
[34]  陶美君,吴晓辉,陆晓华,等.垃圾渗滤液中氨氮的超声处理研究\[J\].华中科技大学学报,2005,22(1):70-72.
[35]  白晓清,张林,李东辉,等.超声波对流动液体中夹杂物去除效果的实验研究\[J\].东北大学学报(自然科学版),2002,23(4):348-352.
[36]  薛娟琴,亢淑梅,洪涛.超声解吸柠檬酸盐溶液中SO2的影响因素\[J\].过程工程学报,2006,6(1):42-45.
[37]  \[37\]Xue,J.Q.,K.F.Wang,J.J.Yang,et al.Effects of solution properties on desorption of SO2 with ultrasonic wave\[J\].Journal of Xi'an University of Architecture and Technology,2008,40(2):284-289.
[38]  \[38\]Xue,J.Q.,L.A.Meng,B.B.Shen,et al.Study on desorbing sulfur dioxide from citrate solution by ultrasonification\[J\].Chinese Journal of Chemical Engineering,2007,15(4):486-491.
[39]  \[39\]Xu,H.,S.T.Zhang,X.B.Lu,et al.Effect of ultrasound on SO2 desorption from sodium alkali desulphurization regeneration solution\[J\].Chemical Engineering and Technology,2010,33(2):231-236.
[40]  \[40\]徐晖.烟气钠碱脱硫吸收富液超声波解吸方法研究\[D\].天津:天津大学,2010.〖ZK)〗〖FL)〗

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