Determine the filtration rate that can be expected from a basket centrifugal filter using the data below: Basket height Inside basket diameter Rotation rate Material to be filtered: gypsum slurry, a E Specific gravity of CaSO4.2H₂O = 12 in. = 26 in. 2,000 rpm = 2.52 x 10¹¹f/lb - 0.5 = 2.65

Introduction to Chemical Engineering Thermodynamics
8th Edition
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Chapter1: Introduction
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5. Determine the filtration rate that can be expected from a basket centrifugal filter using
the data below:
Basket height
Inside basket diameter
Rotation rate
- Material to be filtered:
gypsum slurry, a
E
12 in.
= 26 in.
= 2,000 rpm
= 2.52 x 10¹¹ft/lb
= 0.5
Specific gravity of CaSO4.2H₂O = 2.65
a. 0.60 gpm
b. 0.95 gpm
Assume that the cake is incompressible, filter medium resistance is negligible and the
liquid surface corresponds to the filter cake surface and the thickness of the cake is
1 in.
c. 0.85 gpm
d. 0.43 gpm
Transcribed Image Text:5. Determine the filtration rate that can be expected from a basket centrifugal filter using the data below: Basket height Inside basket diameter Rotation rate - Material to be filtered: gypsum slurry, a E 12 in. = 26 in. = 2,000 rpm = 2.52 x 10¹¹ft/lb = 0.5 Specific gravity of CaSO4.2H₂O = 2.65 a. 0.60 gpm b. 0.95 gpm Assume that the cake is incompressible, filter medium resistance is negligible and the liquid surface corresponds to the filter cake surface and the thickness of the cake is 1 in. c. 0.85 gpm d. 0.43 gpm
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