A natural intermediate member of the scapolite solid solution (Me47; experimental chemical formula: (Na1.86Ca1.86K0.23Fe0.01)(Al4.36Si7.64)O24[Cl0.48(CO3)0.48(SO4)0.01]), with the unusual I4/m space group, has been studied at various temperatures and combined high-T and high-P by means of in situ single-crystal and powder X-ray diffraction, at both conventional and synchrotron sources. In addition, single-crystal neutron diffraction data were collected at ambient-T and 685 °C. A fit of the experimental V-T data with a thermal equation of state yielded a calculated thermal expansion coefficient at ambient conditions: αV25°C = 1/V0·(∂V/∂T)P,25°C = 1.74(3)·10-5 K-1. A comparative analysis of the elastic behavior of scapolite based on this study and other high-T XRD data reported in the literature suggests that a thorough re-investigation of the different members of the marialite-meionite solid solution is needed to fully understand the role of crystal chemistry on the thermal behavior of these complex non-binary solid solutions. The experimental data obtained within the full temperature range of analysis at ambient pressure confirm that the investigated sample always preserves the I4/m space group, and possible implications on the metastability of I4/m intermediate scapolite are discussed. Neutron diffraction data show that no significant Si and Al re-arrangement among the T sites occurs between 25 and 685 °C. The combined high-T and high-P data show that at 650 °C and between 10.30(5) and 10.71(5) GPa a phase transition towards a triclinic polymorph occurs, with a positive Clapeyron slope (i.e., dP/dT > 0). A comprehensive description of the atomic-scale structure deformation mechanisms induced by temperature and/or pressure, including those leading to structural instability, is provided based on single-crystal structure refinements.

Thermal and combined high-temperature and high-pressure behavior of a natural intermediate scapolite / P. Lotti, G.D. Gatta, L. Gigli, H. Krüger, V. Kahlenberg, M. Meven, D. Comboni, S. Milani, M. Merlini, H. Liermann. - In: THE AMERICAN MINERALOGIST. - ISSN 1945-3027. - 109:(2024 Feb 01), pp. 243-254. [10.2138/am-2023-8962]

Thermal and combined high-temperature and high-pressure behavior of a natural intermediate scapolite

P. Lotti
Primo
;
G.D. Gatta
Secondo
;
D. Comboni;S. Milani;M. Merlini
Penultimo
;
2024

Abstract

A natural intermediate member of the scapolite solid solution (Me47; experimental chemical formula: (Na1.86Ca1.86K0.23Fe0.01)(Al4.36Si7.64)O24[Cl0.48(CO3)0.48(SO4)0.01]), with the unusual I4/m space group, has been studied at various temperatures and combined high-T and high-P by means of in situ single-crystal and powder X-ray diffraction, at both conventional and synchrotron sources. In addition, single-crystal neutron diffraction data were collected at ambient-T and 685 °C. A fit of the experimental V-T data with a thermal equation of state yielded a calculated thermal expansion coefficient at ambient conditions: αV25°C = 1/V0·(∂V/∂T)P,25°C = 1.74(3)·10-5 K-1. A comparative analysis of the elastic behavior of scapolite based on this study and other high-T XRD data reported in the literature suggests that a thorough re-investigation of the different members of the marialite-meionite solid solution is needed to fully understand the role of crystal chemistry on the thermal behavior of these complex non-binary solid solutions. The experimental data obtained within the full temperature range of analysis at ambient pressure confirm that the investigated sample always preserves the I4/m space group, and possible implications on the metastability of I4/m intermediate scapolite are discussed. Neutron diffraction data show that no significant Si and Al re-arrangement among the T sites occurs between 25 and 685 °C. The combined high-T and high-P data show that at 650 °C and between 10.30(5) and 10.71(5) GPa a phase transition towards a triclinic polymorph occurs, with a positive Clapeyron slope (i.e., dP/dT > 0). A comprehensive description of the atomic-scale structure deformation mechanisms induced by temperature and/or pressure, including those leading to structural instability, is provided based on single-crystal structure refinements.
English
scapolite; temperature; pressure; phase transition; synchrotron data; neutron data;
Settore GEO/09 - Georisorse Miner.Appl.Mineral.-Petrogr.per l'amb.e i Beni Cul
Settore GEO/06 - Mineralogia
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
   Mineral Reactivity in Large-scale Processes (MiReLaP)
   MiReLaP
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017L83S77_003

   Piano di Sostegno alla Ricerca 2015-2017 - Linea 2 "Dotazione annuale per attività istituzionali" (anno 2021)
   UNIVERSITA' DEGLI STUDI DI MILANO
1-feb-2024
21-giu-2023
Mineralogical Society of America
109
243
254
12
Pubblicato
Periodico con rilevanza internazionale
https://www.degruyter.com/document/doi/10.2138/am-2023-8962/html
crossref
Aderisco
info:eu-repo/semantics/article
Thermal and combined high-temperature and high-pressure behavior of a natural intermediate scapolite / P. Lotti, G.D. Gatta, L. Gigli, H. Krüger, V. Kahlenberg, M. Meven, D. Comboni, S. Milani, M. Merlini, H. Liermann. - In: THE AMERICAN MINERALOGIST. - ISSN 1945-3027. - 109:(2024 Feb 01), pp. 243-254. [10.2138/am-2023-8962]
partially_open
Prodotti della ricerca::01 - Articolo su periodico
10
262
Article (author)
Periodico con Impact Factor
P. Lotti, G.D. Gatta, L. Gigli, H. Krüger, V. Kahlenberg, M. Meven, D. Comboni, S. Milani, M. Merlini, H. Liermann
File in questo prodotto:
File Dimensione Formato  
8962LottiPreprint(3).pdf

Open Access dal 22/06/2024

Tipologia: Post-print, accepted manuscript ecc. (versione accettata dall'editore)
Dimensione 1.27 MB
Formato Adobe PDF
1.27 MB Adobe PDF Visualizza/Apri
10.2138_am-2023-8962.pdf

accesso riservato

Descrizione: Manoscritto pubblicato
Tipologia: Publisher's version/PDF
Dimensione 1.46 MB
Formato Adobe PDF
1.46 MB Adobe PDF   Visualizza/Apri   Richiedi una copia
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/980234
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 1
  • ???jsp.display-item.citation.isi??? 1
social impact