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Involvement of gypsum (CaSO4.2H2O) in water treatment sludge dewatering : a potential benefit in disposal and reuse
Author(s)
Date Issued
2006-01
Date Available
2011-09-23T14:29:13Z
Abstract
This research assessed the use of gypsum (CaSO4.2H2O) as a skeleton builder for sludge dewatering since polymer conditioning of sludge affected only the rate of water release, not the extent of dewatering. The use of gypsum as a physical conditioner, in association with a polymer, could improve sludge filterability. More significantly, gypsum serves as a skeleton builder, forming a permeable and rigid lattice structure that can remain porous under high positive pressure during the compression step after the cake growth of the filtration, thereby maintaining the size of the micro-passages through which water is expressed. Experiments using a high pressure cell apparatus showed that a further decrease of two to seven percent of the equilibrium moisture content of the sludge cake was achieved, for sludge thicknesses for dewatering of 1 to 10 cm, by the addition of gypsum with 60% of the original sludge solids when compared to the single polymer conditioning. The importance of the addition of gypsum in alum sludge dewatering is not only the improvement in the extent of dewatering, but also the potential application of transforming dewatered alum sludge from ‘waste’ for landfill to useful ‘fertilizer’ or to be used as filter medium/adsorbent for wastewater treatment engineering.
Sponsorship
Not applicable
Type of Material
Journal Article
Publisher
Taylor & Francis
Journal
Separation Science and Technology
Volume
41
Issue
12
Start Page
2785
End Page
2794
Copyright (Published Version)
Taylor & Francis Group, LLC
Subject – LCSH
Water treatment plant residuals
Constructed wetlands
Gypsum
Sewage sludge--Conditioning
Web versions
Language
English
Status of Item
Peer reviewed
ISSN
0149-6395 print
1520-5754 online
This item is made available under a Creative Commons License
File(s)
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Name
56-SST-2619-Gypaum-Zhao.pdf
Size
196.47 KB
Format
Adobe PDF
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