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Influence of temperature and dry density coupled effects on HTO, 36Cl, 85Sr and 133Ba diffusion through compacted bentonite
This study investigated the combined impact of temperature (from 25 to 80 °C) and dry density of bentonite (from 1.2 to 1.65 g·cm−3) on the apparent diffusion coefficient, Da, of four radionuclides (HTO, 36Cl, 85Sr and 133Ba) in a Ca-Mg bentonite. In this study, the different porewater chemistry, pr...
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Published in: | Progress in nuclear energy (New series) 2024-11, Vol.176, p.105407, Article 105407 |
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description | This study investigated the combined impact of temperature (from 25 to 80 °C) and dry density of bentonite (from 1.2 to 1.65 g·cm−3) on the apparent diffusion coefficient, Da, of four radionuclides (HTO, 36Cl, 85Sr and 133Ba) in a Ca-Mg bentonite. In this study, the different porewater chemistry, present under the specific experimental conditions -- a factor often overlooked in diffusion studies -- was explicitly considered. As a support to diffusion studies, batch sorption tests were carried out at different temperatures (25, 40, 60, and 80 °C) with the sorbing elements (85Sr and 133Ba).
The planar source method was used for the determination of apparent diffusion coefficients, Da, which demonstrated its efficacy for both conservative (HTO and Cl) and sorbing elements. For all the investigated radionuclides, Da values decreased with increasing the clay dry density and increased with increasing temperature. Notably, the highest Da value (1·10−9 m2 s−1) was attained for HTO diffusion in the clay at 1.2 g cm−3 and 80 °C, while the lowest Da (3.6·10−12 m2 s−1) value was determined for Ba diffusion at 1.65 g cm−3 and 25 °C.
The experimental Da values were analysed employing the Arrhenius law and the Stokes-Einstein equations. Results revealed that diffusion data are in a reasonable agreement with Arrhenius behaviour, but deviations from the Stokes-Einstein equation were observed for compaction densities higher than 1.4 g cm−3.
•The planar source method is an effective method to measure radionuclide diffusion.•The highest Da (1·10−9 m2 s−1) observed for HTO in the clay at 1.2 g cm−3 and 80 °C.•The lowest Da (3.6·10−12 m2 s−1) for Ba diffusion at 1.65 g cm−3 and 25 °C.•Reasonable agreement with the Arrhenius law for the Da at different temperatures.•Clay density and temperature directly influences water content and porewater chemistry. |
doi_str_mv | 10.1016/j.pnucene.2024.105407 |
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The planar source method was used for the determination of apparent diffusion coefficients, Da, which demonstrated its efficacy for both conservative (HTO and Cl) and sorbing elements. For all the investigated radionuclides, Da values decreased with increasing the clay dry density and increased with increasing temperature. Notably, the highest Da value (1·10−9 m2 s−1) was attained for HTO diffusion in the clay at 1.2 g cm−3 and 80 °C, while the lowest Da (3.6·10−12 m2 s−1) value was determined for Ba diffusion at 1.65 g cm−3 and 25 °C.
The experimental Da values were analysed employing the Arrhenius law and the Stokes-Einstein equations. Results revealed that diffusion data are in a reasonable agreement with Arrhenius behaviour, but deviations from the Stokes-Einstein equation were observed for compaction densities higher than 1.4 g cm−3.
•The planar source method is an effective method to measure radionuclide diffusion.•The highest Da (1·10−9 m2 s−1) observed for HTO in the clay at 1.2 g cm−3 and 80 °C.•The lowest Da (3.6·10−12 m2 s−1) for Ba diffusion at 1.65 g cm−3 and 25 °C.•Reasonable agreement with the Arrhenius law for the Da at different temperatures.•Clay density and temperature directly influences water content and porewater chemistry.</description><identifier>ISSN: 0149-1970</identifier><identifier>DOI: 10.1016/j.pnucene.2024.105407</identifier><language>eng</language><publisher>Elsevier Ltd</publisher><subject>Arrhenius law ; Porewater chemistry ; Radionuclide ; Transport ; Waste disposal</subject><ispartof>Progress in nuclear energy (New series), 2024-11, Vol.176, p.105407, Article 105407</ispartof><rights>2024 The Authors</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><cites>FETCH-LOGICAL-c187t-a1f21dbb230cc711ea23bcb9bbcc24cb884b27be1ffdd403effea928ff257dca3</cites><orcidid>0000-0003-3052-5185</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids></links><search><creatorcontrib>García-Gutiérrez, Miguel</creatorcontrib><creatorcontrib>Mingarro, Manuel</creatorcontrib><creatorcontrib>Missana, Tiziana</creatorcontrib><title>Influence of temperature and dry density coupled effects on HTO, 36Cl, 85Sr and 133Ba diffusion through compacted bentonite</title><title>Progress in nuclear energy (New series)</title><description>This study investigated the combined impact of temperature (from 25 to 80 °C) and dry density of bentonite (from 1.2 to 1.65 g·cm−3) on the apparent diffusion coefficient, Da, of four radionuclides (HTO, 36Cl, 85Sr and 133Ba) in a Ca-Mg bentonite. In this study, the different porewater chemistry, present under the specific experimental conditions -- a factor often overlooked in diffusion studies -- was explicitly considered. As a support to diffusion studies, batch sorption tests were carried out at different temperatures (25, 40, 60, and 80 °C) with the sorbing elements (85Sr and 133Ba).
The planar source method was used for the determination of apparent diffusion coefficients, Da, which demonstrated its efficacy for both conservative (HTO and Cl) and sorbing elements. For all the investigated radionuclides, Da values decreased with increasing the clay dry density and increased with increasing temperature. Notably, the highest Da value (1·10−9 m2 s−1) was attained for HTO diffusion in the clay at 1.2 g cm−3 and 80 °C, while the lowest Da (3.6·10−12 m2 s−1) value was determined for Ba diffusion at 1.65 g cm−3 and 25 °C.
The experimental Da values were analysed employing the Arrhenius law and the Stokes-Einstein equations. Results revealed that diffusion data are in a reasonable agreement with Arrhenius behaviour, but deviations from the Stokes-Einstein equation were observed for compaction densities higher than 1.4 g cm−3.
•The planar source method is an effective method to measure radionuclide diffusion.•The highest Da (1·10−9 m2 s−1) observed for HTO in the clay at 1.2 g cm−3 and 80 °C.•The lowest Da (3.6·10−12 m2 s−1) for Ba diffusion at 1.65 g cm−3 and 25 °C.•Reasonable agreement with the Arrhenius law for the Da at different temperatures.•Clay density and temperature directly influences water content and porewater chemistry.</description><subject>Arrhenius law</subject><subject>Porewater chemistry</subject><subject>Radionuclide</subject><subject>Transport</subject><subject>Waste disposal</subject><issn>0149-1970</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><recordid>eNqFkM1KAzEUhbNQsFYfQcgDdGqSmenMrESL2kKhC-s65OfGpkyTIckIxZd3xnbv6sLhfofDh9ADJXNK6OLxMO9cr8DBnBFWDFlZkOoKTQgtmow2FblBtzEeCKEVLcsJ-lk70_bgFGBvcIJjB0GkPgAWTmMdTliDizadsPJ914LGYAyoFLF3eLXbznC-WLYzXJcf4Q-hef4isLbG9NEOP2kffP-1H_BjJ1QaCiS45J1NcIeujWgj3F_uFH2-ve6Wq2yzfV8vnzeZonWVMkENo1pKlhOlKkpBsFwq2UipFCuUrOtCskoCNUbrguTjQNGw2hhWVlqJfIrKc68KPsYAhnfBHkU4cUr4aI0f-MUaH63xs7WBezpzMIz7thB4VHZUpW0YFHDt7T8NvzmdfOQ</recordid><startdate>202411</startdate><enddate>202411</enddate><creator>García-Gutiérrez, Miguel</creator><creator>Mingarro, Manuel</creator><creator>Missana, Tiziana</creator><general>Elsevier Ltd</general><scope>6I.</scope><scope>AAFTH</scope><scope>AAYXX</scope><scope>CITATION</scope><orcidid>https://orcid.org/0000-0003-3052-5185</orcidid></search><sort><creationdate>202411</creationdate><title>Influence of temperature and dry density coupled effects on HTO, 36Cl, 85Sr and 133Ba diffusion through compacted bentonite</title><author>García-Gutiérrez, Miguel ; Mingarro, Manuel ; Missana, Tiziana</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c187t-a1f21dbb230cc711ea23bcb9bbcc24cb884b27be1ffdd403effea928ff257dca3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>Arrhenius law</topic><topic>Porewater chemistry</topic><topic>Radionuclide</topic><topic>Transport</topic><topic>Waste disposal</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>García-Gutiérrez, Miguel</creatorcontrib><creatorcontrib>Mingarro, Manuel</creatorcontrib><creatorcontrib>Missana, Tiziana</creatorcontrib><collection>ScienceDirect Open Access Titles</collection><collection>Elsevier:ScienceDirect:Open Access</collection><collection>CrossRef</collection><jtitle>Progress in nuclear energy (New series)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>García-Gutiérrez, Miguel</au><au>Mingarro, Manuel</au><au>Missana, Tiziana</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Influence of temperature and dry density coupled effects on HTO, 36Cl, 85Sr and 133Ba diffusion through compacted bentonite</atitle><jtitle>Progress in nuclear energy (New series)</jtitle><date>2024-11</date><risdate>2024</risdate><volume>176</volume><spage>105407</spage><pages>105407-</pages><artnum>105407</artnum><issn>0149-1970</issn><abstract>This study investigated the combined impact of temperature (from 25 to 80 °C) and dry density of bentonite (from 1.2 to 1.65 g·cm−3) on the apparent diffusion coefficient, Da, of four radionuclides (HTO, 36Cl, 85Sr and 133Ba) in a Ca-Mg bentonite. In this study, the different porewater chemistry, present under the specific experimental conditions -- a factor often overlooked in diffusion studies -- was explicitly considered. As a support to diffusion studies, batch sorption tests were carried out at different temperatures (25, 40, 60, and 80 °C) with the sorbing elements (85Sr and 133Ba).
The planar source method was used for the determination of apparent diffusion coefficients, Da, which demonstrated its efficacy for both conservative (HTO and Cl) and sorbing elements. For all the investigated radionuclides, Da values decreased with increasing the clay dry density and increased with increasing temperature. Notably, the highest Da value (1·10−9 m2 s−1) was attained for HTO diffusion in the clay at 1.2 g cm−3 and 80 °C, while the lowest Da (3.6·10−12 m2 s−1) value was determined for Ba diffusion at 1.65 g cm−3 and 25 °C.
The experimental Da values were analysed employing the Arrhenius law and the Stokes-Einstein equations. Results revealed that diffusion data are in a reasonable agreement with Arrhenius behaviour, but deviations from the Stokes-Einstein equation were observed for compaction densities higher than 1.4 g cm−3.
•The planar source method is an effective method to measure radionuclide diffusion.•The highest Da (1·10−9 m2 s−1) observed for HTO in the clay at 1.2 g cm−3 and 80 °C.•The lowest Da (3.6·10−12 m2 s−1) for Ba diffusion at 1.65 g cm−3 and 25 °C.•Reasonable agreement with the Arrhenius law for the Da at different temperatures.•Clay density and temperature directly influences water content and porewater chemistry.</abstract><pub>Elsevier Ltd</pub><doi>10.1016/j.pnucene.2024.105407</doi><orcidid>https://orcid.org/0000-0003-3052-5185</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Arrhenius law Porewater chemistry Radionuclide Transport Waste disposal |
title | Influence of temperature and dry density coupled effects on HTO, 36Cl, 85Sr and 133Ba diffusion through compacted bentonite |
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