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Citation
Tags
HERO ID
7201112
Reference Type
Journal Article
Title
Properties of Cement Mortar Produced from Mixed Waste Materials with Pozzolanic Characteristics
Author(s)
Yen, ChiL; Tseng, DyiHwa; Wu, YueZe; ,
Year
2012
Is Peer Reviewed?
Yes
Journal
Environmental Engineering Science
ISSN:
1092-8758
EISSN:
1557-9018
Publisher
MARY ANN LIEBERT INC
Location
NEW ROCHELLE
Page Numbers
638-645
PMID
22783062
DOI
10.1089/ees.2011.0175
Web of Science Id
WOS:000306080200012
Abstract
Waste materials with pozzolanic characteristics, such as sewage sludge ash (SSA), coal combustion fly ash (FA), and granulated blast furnace slag (GBS), were reused as partial cement replacements for making cement mortar in this study. Experimental results revealed that with dual replacement of cement by SSA and GBS and triple replacement by SSA, FA, and GBS at 50% of total cement replacement, the compressive strength (Sc) of the blended cement mortars at 56 days was 93.7% and 92.9% of the control cement mortar, respectively. GBS had the highest strength activity index value and could produce large amounts of CaO to enhance the pozzolanic activity of SSA/FA and form calcium silicate hydrate gels to fill the capillary pores of the cement mortar. Consequently, the Sc development of cement mortar with GBS replacement was better than that without GBS, and the total pore volume of blended cement mortars with GBS/SSA replacement was less than that with FA/SSA replacement. In the cement mortar with modified SSA and GBS at 70% of total cement replacement, the Sc at 56 days was 92.4% of the control mortar. Modifying the content of calcium in SSA also increased its pozzolanic reaction. CaCl2 accelerated the pozzolanic activity of SSA better than lime did. Moreover, blending cement mortars with GBS/SSA replacement could generate more monosulfoaluminate to fill capillary pores.
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