Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions

Clay sediment is removed by dredging, resulting in the disposal of enormous waste sediment clay slurries that consumes land space, as well as risks the human health and the environment. Manganese (Mn) is often identified in clay slurries. Quicklime (CaO)-activated ground granulated blast-furnace sla...

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Main Authors: Li, Wentao, Yi, Yaolin
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2023
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Online Access:https://hdl.handle.net/10356/170025
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1700252023-08-22T03:44:27Z Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions Li, Wentao Yi, Yaolin School of Civil and Environmental Engineering Engineering::Environmental engineering Contaminated Soil Manganese Clay sediment is removed by dredging, resulting in the disposal of enormous waste sediment clay slurries that consumes land space, as well as risks the human health and the environment. Manganese (Mn) is often identified in clay slurries. Quicklime (CaO)-activated ground granulated blast-furnace slag (GGBS) can be used to stabilize/solidify (S/S) contaminated soils; nevertheless, few studies have been published on the S/S of Mn-contaminated clay slurries using CaO-GGBS. Moreover, the anions contained in clay slurries may affect the S/S efficiency of CaO-GGBS in treating Mn-contaminated clay slurries, but this effect has hardly been investigated. Therefore, this study investigated the S/S efficiency of CaO-GGBS in treating MnSO4-bearing and Mn(NO3)2-bearing clay slurries. The effect of anions (i.e. SO42- and NO3-) on the strength, leachability, mineralogy, and microstructure of Mn-contaminated clay slurries treated with CaO-GGBS was explored. Results showed that CaO-GGBS could improve the strength of both Mn-contaminated slurries to meet the strength requirement for landfill waste outlined by United States Environmental Protection Agency (USEPA). The Mn leachabilities of both Mn-contaminated slurries were decreased to be less than the Euro limit for drinking water after cured for 56 days. The MnSO4-bearing slurry generally produced higher UCS while lower Mn leachability than Mn(NO3)2-bearing slurry at the same CaO-GGBS addition. CSH and Mn(OH)2 were formed, thereby enhancing strength and reducing leachability of Mn. Ettringite in CaO-GGBS-treated MnSO4-bearing slurry, which was formed by the supply of SO42- from MnSO4, further contributed to the strength enhancement and the decrease of Mn leachability. Ettringite was the factor leading to the difference in strength and leaching properties between MnSO4-bearing and Mn(NO3)2-bearing clay slurries. Hence, anions contained in Mn-contaminated slurries significantly affected the strength and the Mn leachability, and need to be identified before CaO-GGBS was used to treat such slurries. Ministry of Education (MOE) This research is supported by the Ministry of Education, Singapore, under its Academic Research Fund Tier 2 (MOE-T2EP50220-0004). 2023-08-22T03:44:27Z 2023-08-22T03:44:27Z 2023 Journal Article Li, W. & Yi, Y. (2023). Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions. Chemosphere, 335, 139091-. https://dx.doi.org/10.1016/j.chemosphere.2023.139091 0045-6535 https://hdl.handle.net/10356/170025 10.1016/j.chemosphere.2023.139091 37268231 2-s2.0-85161711911 335 139091 en MOE-T2EP50220-0004 Chemosphere © 2023 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Environmental engineering
Contaminated Soil
Manganese
spellingShingle Engineering::Environmental engineering
Contaminated Soil
Manganese
Li, Wentao
Yi, Yaolin
Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
description Clay sediment is removed by dredging, resulting in the disposal of enormous waste sediment clay slurries that consumes land space, as well as risks the human health and the environment. Manganese (Mn) is often identified in clay slurries. Quicklime (CaO)-activated ground granulated blast-furnace slag (GGBS) can be used to stabilize/solidify (S/S) contaminated soils; nevertheless, few studies have been published on the S/S of Mn-contaminated clay slurries using CaO-GGBS. Moreover, the anions contained in clay slurries may affect the S/S efficiency of CaO-GGBS in treating Mn-contaminated clay slurries, but this effect has hardly been investigated. Therefore, this study investigated the S/S efficiency of CaO-GGBS in treating MnSO4-bearing and Mn(NO3)2-bearing clay slurries. The effect of anions (i.e. SO42- and NO3-) on the strength, leachability, mineralogy, and microstructure of Mn-contaminated clay slurries treated with CaO-GGBS was explored. Results showed that CaO-GGBS could improve the strength of both Mn-contaminated slurries to meet the strength requirement for landfill waste outlined by United States Environmental Protection Agency (USEPA). The Mn leachabilities of both Mn-contaminated slurries were decreased to be less than the Euro limit for drinking water after cured for 56 days. The MnSO4-bearing slurry generally produced higher UCS while lower Mn leachability than Mn(NO3)2-bearing slurry at the same CaO-GGBS addition. CSH and Mn(OH)2 were formed, thereby enhancing strength and reducing leachability of Mn. Ettringite in CaO-GGBS-treated MnSO4-bearing slurry, which was formed by the supply of SO42- from MnSO4, further contributed to the strength enhancement and the decrease of Mn leachability. Ettringite was the factor leading to the difference in strength and leaching properties between MnSO4-bearing and Mn(NO3)2-bearing clay slurries. Hence, anions contained in Mn-contaminated slurries significantly affected the strength and the Mn leachability, and need to be identified before CaO-GGBS was used to treat such slurries.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Li, Wentao
Yi, Yaolin
format Article
author Li, Wentao
Yi, Yaolin
author_sort Li, Wentao
title Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
title_short Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
title_full Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
title_fullStr Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
title_full_unstemmed Stabilization/solidification of Mn-contaminated clay slurry by using CaO-GGBS: effects of anions
title_sort stabilization/solidification of mn-contaminated clay slurry by using cao-ggbs: effects of anions
publishDate 2023
url https://hdl.handle.net/10356/170025
_version_ 1779156709466439680