2,173
Views
19
CrossRef citations to date
0
Altmetric
Original Articles

Fine Particle Collection Efficiency Related to Pressure Drop, Scrubbant and Particle Properties, and Contact Mechanism

Pages 939-942 | Published online: 15 Mar 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

RONALDL. MILLER, DINESHM. JAIN & M.P. SHARMA. (1990) MODELING VENTURI SCRUBBER PERFORMANCE FOR PARTICULATE COLLECTION AND PRESSURE DROP. Chemical Engineering Communications 89:1, pages 101-112.
Read now

Articles from other publishers (18)

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.
Crossref
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.
Crossref
Augusto Bianchini, Marco Pellegrini, Jessica Rossi & Cesare Saccani. (2018) Theoretical model and preliminary design of an innovative wet scrubber for the separation of fine particulate matter produced by biomass combustion in small size boilers. Biomass and Bioenergy 116, pages 60-71.
Crossref
N.P. Gulhane, A.D. Landge, D.S. Shukla & S.S. Kale. (2015) Experimental study of iodine removal efficiency in self-priming venturi scrubber. Annals of Nuclear Energy 78, pages 152-159.
Crossref
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.
Lawrence K. Wang, Jerry R. Taricska, Yung-Tse Hung & Kathleen Hung Li. 2004. Air Pollution Control Engineering. Air Pollution Control Engineering 445 493 .
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.
Crossref
Burton B. Crocker. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
Shekar Viswanathan. (1998) Development of a pressure drop model for a variable throat venturi scrubber. Chemical Engineering Journal 71:2, pages 153-160.
Crossref
Shekar Viswanathan. (1998) Examination of liquid film characteristics in the prediction of pressure drop in a Venturi scrubber. Chemical Engineering Science 53:17, pages 3161-3175.
Crossref
Shekar Viswanathan. (1997) Modeling of Venturi Scrubber Performance. Industrial & Engineering Chemistry Research 36:10, pages 4308-4317.
Crossref
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.
Crossref
Robert M. Ott, Tatsu K.L. Wu & Jerry W. Crowder. (1987) Modeling of surface tension effects in venturi scrubbing. Atmospheric Environment (1967) 21:3, pages 479-482.
Crossref
S. Viswanathan, A. W. Gnyp & C. C. St. Pierre. (2004) Annular flow pressure drop model for pease–anthony‐type venturi scrubbers. AIChE Journal 31:12, pages 1947-1958.
Crossref
H.C. Wang, K.H. Leong, J.J. Stukel & P.K. Hopke. (1983) Collection of hydrophilic and hydrophobic charged submicron particles by charged water droplets. Journal of Aerosol Science 14:6, pages 703-712.
Crossref
Heinz Brauer & Yalamanchili B. G. VarmaHeinz Brauer & Yalamanchili B. G. Varma. 1981. Air Pollution Control Equipment. Air Pollution Control Equipment 107 147 .
Howard E. Hesketh. 1979. Air and Noise Pollution Control. Air and Noise Pollution Control 355 392 .
S.B. Kadam & Nitin P. Gulhane. (2019) Performance Review of Venturi Scrubber. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.