Comparison between the quasi-continuous quadrupole splitting distributions (QSD) for Mössbauer spectra of glauconites and the QSD-profiles simulated on the basis of crystal-chemical model
Structural peculiarities of Fe3+-rich dioctahedral mica, glauconite, such as a wide variety of isomorphous octahedral cation substitutions (Al, Fe3+ Fe2+ Mg) and the occurrence of these cations in cis-sites only, make it possible to consider glauconites as model locally inhomogeneous objects. To fit...
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description | Structural peculiarities of Fe3+-rich dioctahedral mica, glauconite, such as a wide variety of isomorphous octahedral cation substitutions (Al, Fe3+ Fe2+ Mg) and the occurrence of these cations in cis-sites only, make it possible to consider glauconites as model locally inhomogeneous objects. To fit room and liquid-nitrogen Mössbauer spectra of two glauconite samples of close compositions with unusually low Fe3+/Fe2+ ratios, reconstruction of quadrupole splitting distributions (QSD) in terms of quasi-continuous model-independent approach was applied. Interpretation of the obtained QSDexps became possible owing to application of a crystal-chemical model (CCM) taking account of the effects of the local structural and chemical heterogeneity of layer silicates. The main parameters of the CCM are individual quadrupole splittings, Δi, for Fe3+ Fe2+ in different local cationic arrangements (LCAs) having the occurrence probabilities, wi, provided by two-dimensional simulation of the cation distribution (CD). The agreement between CD reconstructions, the QSDsim profiles simulated on the basis of the CCM parameters and the QSDexps provided, first, the corroboration of the Δipred values for Fe3+; second, the refinement of the Δiref values for Fe2+; and third, revealing the difference in the octahedral cation distributions for the studied glauconites. |
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To fit room and liquid-nitrogen Mössbauer spectra of two glauconite samples of close compositions with unusually low Fe3+/Fe2+ ratios, reconstruction of quadrupole splitting distributions (QSD) in terms of quasi-continuous model-independent approach was applied. Interpretation of the obtained QSDexps became possible owing to application of a crystal-chemical model (CCM) taking account of the effects of the local structural and chemical heterogeneity of layer silicates. The main parameters of the CCM are individual quadrupole splittings, Δi, for Fe3+ Fe2+ in different local cationic arrangements (LCAs) having the occurrence probabilities, wi, provided by two-dimensional simulation of the cation distribution (CD). The agreement between CD reconstructions, the QSDsim profiles simulated on the basis of the CCM parameters and the QSDexps provided, first, the corroboration of the Δipred values for Fe3+; second, the refinement of the Δiref values for Fe2+; and third, revealing the difference in the octahedral cation distributions for the studied glauconites.</description><identifier>ISSN: 1742-6596</identifier><identifier>ISSN: 1742-6588</identifier><identifier>EISSN: 1742-6596</identifier><identifier>DOI: 10.1088/1742-6596/217/1/012052</identifier><language>eng</language><publisher>Bristol: IOP Publishing</publisher><subject>Aluminum ; Cations ; Crystal structure ; Heterogeneity ; Magnesium ; Mathematical models ; Mica ; Parameters ; Physics ; Quadrupoles ; Silicates ; Simulation ; Splitting</subject><ispartof>Journal of physics. 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Conference series</title><description>Structural peculiarities of Fe3+-rich dioctahedral mica, glauconite, such as a wide variety of isomorphous octahedral cation substitutions (Al, Fe3+ Fe2+ Mg) and the occurrence of these cations in cis-sites only, make it possible to consider glauconites as model locally inhomogeneous objects. To fit room and liquid-nitrogen Mössbauer spectra of two glauconite samples of close compositions with unusually low Fe3+/Fe2+ ratios, reconstruction of quadrupole splitting distributions (QSD) in terms of quasi-continuous model-independent approach was applied. Interpretation of the obtained QSDexps became possible owing to application of a crystal-chemical model (CCM) taking account of the effects of the local structural and chemical heterogeneity of layer silicates. 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The agreement between CD reconstructions, the QSDsim profiles simulated on the basis of the CCM parameters and the QSDexps provided, first, the corroboration of the Δipred values for Fe3+; second, the refinement of the Δiref values for Fe2+; and third, revealing the difference in the octahedral cation distributions for the studied glauconites.</description><subject>Aluminum</subject><subject>Cations</subject><subject>Crystal structure</subject><subject>Heterogeneity</subject><subject>Magnesium</subject><subject>Mathematical models</subject><subject>Mica</subject><subject>Parameters</subject><subject>Physics</subject><subject>Quadrupoles</subject><subject>Silicates</subject><subject>Simulation</subject><subject>Splitting</subject><issn>1742-6596</issn><issn>1742-6588</issn><issn>1742-6596</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2010</creationdate><recordtype>article</recordtype><sourceid>BENPR</sourceid><recordid>eNp9Uctu1TAUjBBItIVfQJa6aRfptZNc-2aJboEiFSEEXVt-nLSunDj1sYX6Y6zY8WM4DSosKryxNZ6ZMzpTVW8YPWN0t9sw0TU13_Z80zCxYRvKGrptnlUHjx_P_3m_rA4RbyltyxEH1c99GGcVHYaJaEjfASaSboDcZYWuNmFKbsoh4wLYmOfggeDsXSr4NbEOU3Q6JxcmJCdfvp6fkiFE8unXD0StMsRCBpOiImEg117l4ugSIFGTfZhTJPUcw-B8AdGN2asEloQ1hS4hcJGaeI9J-drcwOiM8mQMFvyr6sWgPMLrP_dRdfX-3bf9RX35-cPH_dvL2nSMpZq1XIGyGuhO084K03YCrOGDaLXoOe2bzuiWd501Ajhtet4KbQXloDkVZU9H1fHqW5LeZcAkb0OOUxkpm63oiwXbscLiK8vEgBhhkHN0o4r3klG5NCWXEuRSgixNSSbXpoqwXoUuzH81T3LlbIfCZ0_w_z_jN4NIp8c</recordid><startdate>20100301</startdate><enddate>20100301</enddate><creator>Dainyak, L G</creator><creator>Rusakov, V S</creator><creator>Sukhorukov, I A</creator><creator>Zviagina, B B</creator><creator>Chistiakova, N I</creator><creator>Drits, V A</creator><general>IOP Publishing</general><scope>AAYXX</scope><scope>CITATION</scope><scope>8FD</scope><scope>8FE</scope><scope>8FG</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>ARAPS</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>BGLVJ</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>H8D</scope><scope>HCIFZ</scope><scope>L7M</scope><scope>P5Z</scope><scope>P62</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope></search><sort><creationdate>20100301</creationdate><title>Comparison between the quasi-continuous quadrupole splitting distributions (QSD) for Mössbauer spectra of glauconites and the QSD-profiles simulated on the basis of crystal-chemical model</title><author>Dainyak, L G ; Rusakov, V S ; Sukhorukov, I A ; Zviagina, B B ; Chistiakova, N I ; Drits, V A</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c411t-136aeadbe08b04d7c347edc6f73b7960924cb3644dc7e6029637bd706eb607333</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2010</creationdate><topic>Aluminum</topic><topic>Cations</topic><topic>Crystal structure</topic><topic>Heterogeneity</topic><topic>Magnesium</topic><topic>Mathematical models</topic><topic>Mica</topic><topic>Parameters</topic><topic>Physics</topic><topic>Quadrupoles</topic><topic>Silicates</topic><topic>Simulation</topic><topic>Splitting</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Dainyak, L G</creatorcontrib><creatorcontrib>Rusakov, V S</creatorcontrib><creatorcontrib>Sukhorukov, I A</creatorcontrib><creatorcontrib>Zviagina, B B</creatorcontrib><creatorcontrib>Chistiakova, N I</creatorcontrib><creatorcontrib>Drits, V A</creatorcontrib><collection>CrossRef</collection><collection>Technology Research Database</collection><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>ProQuest Central (Alumni)</collection><collection>ProQuest Central</collection><collection>Advanced Technologies & Aerospace Database (1962 - current)</collection><collection>ProQuest Central Essentials</collection><collection>ProQuest Central</collection><collection>Technology Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Central</collection><collection>Aerospace Database</collection><collection>SciTech Premium Collection</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>ProQuest advanced technologies & aerospace journals</collection><collection>ProQuest Advanced Technologies & Aerospace Collection</collection><collection>Publicly Available Content Database</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>ProQuest Central China</collection><jtitle>Journal of physics. Conference series</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Dainyak, L G</au><au>Rusakov, V S</au><au>Sukhorukov, I A</au><au>Zviagina, B B</au><au>Chistiakova, N I</au><au>Drits, V A</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Comparison between the quasi-continuous quadrupole splitting distributions (QSD) for Mössbauer spectra of glauconites and the QSD-profiles simulated on the basis of crystal-chemical model</atitle><jtitle>Journal of physics. 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The main parameters of the CCM are individual quadrupole splittings, Δi, for Fe3+ Fe2+ in different local cationic arrangements (LCAs) having the occurrence probabilities, wi, provided by two-dimensional simulation of the cation distribution (CD). The agreement between CD reconstructions, the QSDsim profiles simulated on the basis of the CCM parameters and the QSDexps provided, first, the corroboration of the Δipred values for Fe3+; second, the refinement of the Δiref values for Fe2+; and third, revealing the difference in the octahedral cation distributions for the studied glauconites.</abstract><cop>Bristol</cop><pub>IOP Publishing</pub><doi>10.1088/1742-6596/217/1/012052</doi><oa>free_for_read</oa></addata></record> |
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subjects | Aluminum Cations Crystal structure Heterogeneity Magnesium Mathematical models Mica Parameters Physics Quadrupoles Silicates Simulation Splitting |
title | Comparison between the quasi-continuous quadrupole splitting distributions (QSD) for Mössbauer spectra of glauconites and the QSD-profiles simulated on the basis of crystal-chemical model |
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