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Miscellany

Venturi Scrubbers: Pressure Loss and Regain

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Pages 239-243 | Received 12 Jan 1984, Accepted 27 Aug 1984, Published online: 10 Mar 2011

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AlexiaA. Economopoulou & RoyM. Harrison. (2007) Graphical Analysis of the Performance of Venturi Scrubbers for Particle Abatement. Part I: Rapid Collection Efficiency Evaluation. Aerosol Science and Technology 41:1, pages 51-62.
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Articles from other publishers (17)

Rui Cao, Hong Wang, Rujing Gong, Zelong Jiang, Hongye Zhang, Jinzhu Zhu & Yanwen Song. (2024) Pressure drop model of gas-liquid phase for Venturi scrubber in fog-annular flow. Chemical Engineering Research and Design 205, pages 748-762.
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Muhammad Shummas Humayun, Majid Ali, Muhammad Uzair Qureshi, Muhammad Bilal Khan Niazi, Yan Changqi, Sun Zongning, Gu Hai Feng & Yanmin Zhou. (2024) CFD analysis of iodine mass transfer coupled with a chemical reaction in a filtered containment venting system. Progress in Nuclear Energy 168, pages 105012.
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Oktawia Dolna, Jarosław Mikielewicz & Paulina Rolka. (2021) Analytical studies on deposition and entrainment present in the Venturi nozzle two-phase flow. International Journal of Energy and Environmental Engineering 12:3, pages 487-502.
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Francesco Di Natale, Francesco La Motta, Claudia Carotenuto, Marco Tammaro & Amedeo Lancia. (2018) Condensational growth assisted Venturi scrubber for soot particles emissions control. Fuel Processing Technology 175, pages 76-89.
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Manisha Bal & Bhim Charan Meikap. (2017) Prediction of hydrodynamic characteristics of a venturi scrubber by using CFD simulation. South African Journal of Chemical Engineering 24, pages 222-231.
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Marek Wasilewski. (2016) Analysis of the effects of temperature and the share of solid and gas phases on the process of separation in a cyclone suspension preheater. Separation and Purification Technology 168, pages 114-123.
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Yanmin Zhou, Zhongning Sun, Haifeng Gu & Zhuang Miao. (2016) Performance of iodide vapour absorption in the venturi scrubber working in self-priming mode. Annals of Nuclear Energy 87, pages 426-434.
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ALEXANDER ARIYOSHI ZERWAS & JOSÉ LUÌS DE PAIVA. (2015) MODELAGEM E SIMULAÇÃO DE LAVADOR VENTURI UTILIZANDO FLUIDODINÂMICA COMPUTACIONAL. MODELAGEM E SIMULAÇÃO DE LAVADOR VENTURI UTILIZANDO FLUIDODINÂMICA COMPUTACIONAL.
Yanmin Zhou, Zhongning Sun, Haifeng Gu & Zhuang Miao. (2015) Structure design on improving injection performance for venturi scrubber working in self-priming mode. Progress in Nuclear Energy 80, pages 7-16.
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Majid Ali, ChangQi Yan, Zhongning Sun, Hai Feng Gu & Meng Wang. (2012) Study of Pressure Drop Model for Self-Priming Venturi Scrubber. Study of Pressure Drop Model for Self-Priming Venturi Scrubber.
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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H. Sun & B.J. Azzopardi. (2003) Modelling Gas–Liquid Flow in Venturi Scrubbers at High Pressure. Process Safety and Environmental Protection 81:4, pages 250-256.
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X. Gamisans, M. Sarrà, F.J. Lafuente & B.J. Azzopardi. (2002) The hydrodynamics of ejector-Venturi scrubbers and their modelling by an annular flow/boundary layer model. Chemical Engineering Science 57:14, pages 2707-2718.
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G. Ravi, Santosh K. Gupta, S. Viswanathan & M. B. Ray. (2002) Optimization of Venturi Scrubbers Using Genetic Algorithm. Industrial & Engineering Chemistry Research 41:12, pages 2988-3002.
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J.A.S Gonçalves, D.Fernández Alonso, M.A.Martins Costa, B.J Azzopardi & J.R Coury. (2001) Evaluation of the models available for the prediction of pressure drop in venturi scrubbers. Journal of Hazardous Materials 81:1-2, pages 123-140.
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R.W.K. Allen & A. van Santen. (1996) Designing for pressure drop in Venturi scrubbers: the importance of dry pressure drop. The Chemical Engineering Journal and the Biochemical Engineering Journal 61:3, pages 203-211.
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B.J. Azzopardi. (1992) Gas-liquid flows in cylindrical venturi scrubbers: Boundary layer separation in the diffuser section. The Chemical Engineering Journal 49:1, pages 55-64.
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