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Original Articles

Optimization of Factors Affecting Scrubber Performance

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Pages 427-431 | Published online: 16 Mar 2012

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Read on this site (5)

Mahboobeh Taheri, Ali Mohebbi & Alireza Taheri. (2010) SIMULATION OF SO2 ABSORPTION IN A VENTURI SCRUBBER. Chemical Engineering Communications 197:7, pages 934-952.
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X. GAMISANS, M. SARRÀ, F. J. LAFUENTE & B. J. AZZOPARDI. (2004) THE SPLIT OF THE LIQUID PHASE IN DROPS AND FILM IN AN EJECTOR-VENTURI SCRUBBER. Chemical Engineering Communications 191:3, pages 398-413.
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A. RAHIMI, M. TAHERI & J. FATHIKALAJAHI. (2004) PREDICTION OF PRESSURE DROP IN A VENTURI SCRUBBER: EFFECT OF LIQUID FILM AND RE-ENTRAINMENT. Chemical Engineering Communications 191:3, pages 315-334.
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John L. M. Koehler, HenryA. Feldman & David Leith. (1987) Gas-Borne Liquid Flow Rate in a Venturi Scrubber with Two Different Liquied Injection Arrangements. Aerosol Science and Technology 7:1, pages 15-29.
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DOUGLASB. ROBERTS & JAMESC. HILL. (1981) ATOMIZATION IN A VENTURI SCRUBBER. Chemical Engineering Communications 12:1-3, pages 33-68.
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Articles from other publishers (15)

Emmanuel Adah, Aurélie Joubert, Marc Henry, Sylvain Durécu & Laurence Le Coq. (2023) Optimization of Nanoparticle Collection by a Pilot-Scale Spray Scrubber Operated Under Waste Incineration Conditions: Using Box–Behnken Design. Waste and Biomass Valorization.
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Manisha Bal, Thamatam Tejaswini Reddy & B.C. Meikap. (2018) Performance evaluation of venturi scrubber for the removal of iodine in filtered containment venting system. Chemical Engineering Research and Design 138, pages 158-167.
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F. Ahmadvand & M.R. Talaie. (2010) CFD modeling of droplet dispersion in a Venturi scrubber. Chemical Engineering Journal 160:2, pages 423-431.
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M. R. Talaie, N. Mokhtarian, A. Talaei, M. Karimikhosroabadi & F. Sadeghi. (2009) Experimental and Theoretical Investigation of Droplet Dispersion in Venturi Scrubbers with Axial Liquid Injection. Chemical Engineering & Technology 32:5, pages 798-804.
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Mahboobeh Taheri & Ali Mohebbi. (2008) Design of artificial neural networks using a genetic algorithm to predict collection efficiency in venturi scrubbers. Journal of Hazardous Materials 157:1, pages 122-129.
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A. Rahimi, J. Fathikalajahi & M. Taheri. (2008) A New Method of Eddy Diffusivity Calculation for Droplets of a Venturi Scrubber. The Canadian Journal of Chemical Engineering 84:3, pages 310-315.
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Shekar Viswanathan, N. V. Ananthanarayanan & Barry J. Azzopardi. (2008) Venturi Scrubber Modelling and Optimization. The Canadian Journal of Chemical Engineering 83:2, pages 194-203.
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J.A.S. Gonçalves, M.A.M. Costa, M.L. Aguiar & J.R. Coury. (2004) Atomization of liquids in a Pease–Anthony Venturi scrubber. Journal of Hazardous Materials 116:1-2, pages 147-157.
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Nochur V. Ananthanarayanan & Shekar Viswanathan. (1998) Predicting the Liquid Flux Distribution and Collection Efficiency in Cylindrical Venturi Scrubbers. Industrial & Engineering Chemistry Research 38:1, pages 223-232.
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Shekar Viswanathan. (1997) Modeling of Venturi Scrubber Performance. Industrial & Engineering Chemistry Research 36:10, pages 4308-4317.
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S. A. Beg. (1980) Effect of water injection arrangement on the performance of a high-energy scrubber. Water, Air, and Soil Pollution 14:1, pages 299-307.
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J. M. Beeckmans & E. W. Chan. (2009) Effect of orifice shape on air atomized water spray characteristics. The Canadian Journal of Chemical Engineering 55:6, pages 637-639.
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S.A. Beg & M. Taheri. (1977) Test of mathematical modeling for the design of high energy scrubbers. Atmospheric Environment (1967) 11:10, pages 911-915.
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R. H. Boll & M. Taheri. (1975) Letters to the editor. AIChE Journal 21:4, pages 831-831.
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Mansoor Taheri & Ching Ming Sheih. (2004) Mathematical modeling of atomizing scrubbers. AIChE Journal 21:1, pages 153-157.
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