期刊文献+

Hydroxyl groups in nonmetamict chevkinite-(Ce): a crystal chemical discussion

Hydroxyl groups in nonmetamict chevkinite-(Ce): a crystal chemical discussion
在线阅读 下载PDF
导出
摘要 The minerals of chevkinite group were commonly considered to be anhydrous minerals. The infrared absorption spectrum of natural nonmetamict chevkinite-(Ce) from the aegirine-alkali granite, Miannlng, Sichuan Province, China, exhibited two broad peaks in the 3600-2800 cm^-1 region owing to the OH stretching. The corresponding H20 content required for the charge balance in formula was 1.27%. The O-H. … O bond lengths maight cover from 0.2658 to 0.2794 nm by the correlated OH stretching energies. An electrostatic charge balance for chevkinite-(Ce) based on the assigned site-population from chemical data was calculated without the hydrogen contribution. The resulting empirical bond-valence sum on 06, 08, 02, 03, 05, and 04 ranged from 1.73 to 1.95 vu. The partial substitution of O by OH may occur in four atom sites: 06, 02, 04, and 05. The small differences in the bond-valence sums between the supposed donors and acceptors may mean a mixed donor/acceptor role of the involved oxygen atoms. The IR spectral features between 3394 and 3035 cm-1 consisted of various hydrous species at different structural sites and orientations. The OH groups in the chevkinlte-(Ce) appeared to be involved in local charge imbalance in the structure and to be present when the mineral crystallized hydrothermally. The minerals of chevkinite group were commonly considered to be anhydrous minerals. The infrared absorption spectrum of natural nonmetamict chevkinite-(Ce) from the aegirine-alkali granite, Miannlng, Sichuan Province, China, exhibited two broad peaks in the 3600-2800 cm^-1 region owing to the OH stretching. The corresponding H20 content required for the charge balance in formula was 1.27%. The O-H. … O bond lengths maight cover from 0.2658 to 0.2794 nm by the correlated OH stretching energies. An electrostatic charge balance for chevkinite-(Ce) based on the assigned site-population from chemical data was calculated without the hydrogen contribution. The resulting empirical bond-valence sum on 06, 08, 02, 03, 05, and 04 ranged from 1.73 to 1.95 vu. The partial substitution of O by OH may occur in four atom sites: 06, 02, 04, and 05. The small differences in the bond-valence sums between the supposed donors and acceptors may mean a mixed donor/acceptor role of the involved oxygen atoms. The IR spectral features between 3394 and 3035 cm-1 consisted of various hydrous species at different structural sites and orientations. The OH groups in the chevkinlte-(Ce) appeared to be involved in local charge imbalance in the structure and to be present when the mineral crystallized hydrothermally.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第4期609-613,共5页 稀土学报(英文版)
基金 the National Natural Science Foundation of China (40572029)
关键词 chevkinite-(Ce) infrared spectrum bond-valance sum bond length hydroxyl groups rare earths chevkinite-(Ce) infrared spectrum bond-valance sum bond length hydroxyl groups rare earths
  • 相关文献

参考文献3

二级参考文献27

  • 1张如柏,成都地质学院学报,1987年,14卷,2期,61页
  • 2张培善,白云鄂博矿物学,1986年
  • 3Williams C T. Analysis of rare earth minerals [A]. In: Jones A P, Wall F, Williams C T. ed. Rare Earth Minerals [C]. London: Chapman & Hall, 1996: 327.
  • 4Ewing R C. Alteration of metamict, rare-earth, AB2O6-type Nb-Ta-Ti oxides [J]. Geochim. Cosmochim. Acta, 1975, 39: 521.
  • 5Sheldrick G M. SHELXL-97, Program for the refinement of crystal structures. University of Goettingen, Germany, 1997.
  • 6Nespolo M, Ferraris G, Ohashi H. Charge distribution as a tool to investigate structural details: meaning and application to pyroxene [J]. Acta Crystallogr., 1999, B55: 902.
  • 7Hoppe R. Effective coordination numbers (ECoN) and mean fictive ionic radii (MEFIR) [J]. Z. Kristallogr., 1979, 150: 23.
  • 8Ito J, Arem J E. Chevkinite and perrierite: synthesis, crystal growth and polymorphism [J]. Am. Mineral., 1971, 56: 307.
  • 9Peng Z, Pan Z. The crystal structure of chevkinite [J]. Scientia Sinica, 1964, 13(9): 1539.
  • 10Gottardi G. The structure of perrierite [J]. Am. Mineral., 1960, 45: 1.

共引文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部