Birnessite polytype systematics and identification by powder X-ray diffraction

被引:118
作者
Drits, Victor A.
Lanson, Bruno
Gaillot, Anne-Claire
机构
[1] Univ Grenoble, CNRS, Environm Geochem Grp, LGIT, F-38041 Grenoble 9, France
[2] Russian Acad Sci, Inst Geol, Moscow 109017, Russia
关键词
birnessite; polytype; phyllomanganate; Mn oxide;
D O I
10.2138/am.2007.2207
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The polytypes of birnessite with a periodic stacking along the c* axis of one-, two-, and three-layers are derived in terms of an anion close-packing formalism. Birnessite layers may be stacked so as to build two types of interlayers: P-type in which basal O atoms from adjacent layers coincide in projection along the c* axis, thus forming interlayer prisms; and, O-type in which these O atoms form interlayer octahedra. The polytypes can be categorized into three groups that depend on the type of interlayers: polytypes consisting of homogeneous interlayers of O- or P-type, and polytypes in which both interlayer types alternate. Ideal birnessite layers can be described by a hexagonal unit cell (a(h) = b(h) = 2.85 angstrom and gamma = 120 degrees) or by an orthogonal C-centered cell (a = root 3 b, b(h) approximate to 2.85 angstrom, and gamma = 90 degrees); and, hexagonal birnessite polytypes (1H, 2H(1), 2H(2), 3R(1), 3R(2), 3H(1), and 3H(2)) have orthogonal analogs (1O, 2O, 2O(2), 1M(1), 1M(2), 3O(1), and 3O(2)). X-ray diffraction (XRD) patterns from different polytypes having the same layer symmetry and the same number of layers per unit cell exhibit hkl reflections at identical 20 positions. XRD patterns corresponding to such polytypes differ only by their hkl intensity distributions, thus leading to possible ambiguities in polytype identification. In addition, the characteristics of the birnessite XRD patterns depend not only on the layer stacking but also on the presence of vacant layer sites, and on the type, location, and local environment of interlayer cations. Several structure models are described for birnessite consisting of orthogonal vacancy-free or of hexagonal vacancy-bearing layers. These models differ by their stacking modes and by their interlayer structures, which contain mono-, di-, or trivalent cations. Calculated XRD patterns for these models show that the hkl intensity distributions are determined by the polytype, with limited influence of the interlayer structure. Actual structures of phyllomanganates can thus be approximated by idealized models for polytype identification purpose. General rules for this identification are formulated. Finally, the occurrence of the different polytypes among natural and synthetic birnessite described in the literature is considered with special attention given to poorly understood structural and crystalchemical features.
引用
收藏
页码:771 / 788
页数:18
相关论文
共 91 条
[31]  
Drits VA, 1996, AM MINERAL, V81, P852
[32]  
Drits VA, 1990, XRAY DIFFRACTION DIS
[33]  
DRITS VA, 1987, ELECT DIFFRACTION HI
[34]   Synthesis of birnessite-type sodium manganese oxides by solution reaction and hydrothermal methods [J].
Feng, Q ;
Sun, EH ;
Yanagisawa, K ;
Yamasaki, N .
JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 1997, 105 (07) :564-568
[35]   HYDROTHERMAL SYNTHESIS OF LITHIUM AND SODIUM MANGANESE OXIDES AND THEIR METAL-ION EXTRACTION INSERTION REACTIONS [J].
FENG, Q ;
KANOH, H ;
MIYAI, Y ;
OOI, K .
CHEMISTRY OF MATERIALS, 1995, 7 (06) :1226-1232
[36]   Synthesis of birnessite-type potassium manganese oxide [J].
Feng, Q ;
Yanagisawa, K ;
Yamasaki, N .
JOURNAL OF MATERIALS SCIENCE LETTERS, 1997, 16 (02) :110-112
[37]   Structure of birnessite obtained from decomposition of permanganate under soft hydrothermal conditions. 1. Chemical and structural evolution as a function of temperature [J].
Gaillot, AC ;
Lanson, B ;
Drits, VA .
CHEMISTRY OF MATERIALS, 2005, 17 (11) :2959-2975
[38]   Structure of synthetic K-rich birnessites obtained by high-temperature decomposition of KMnO4. 2.: Phase and structural heterogeneities [J].
Gaillot, AC ;
Drits, VA ;
Plançon, A ;
Lanson, B .
CHEMISTRY OF MATERIALS, 2004, 16 (10) :1890-1905
[39]   Structure of synthetic K-rich birnessite obtained by high-temperature decomposition of KMnO4.: I.: Two-layer polytype from 800°C experiment [J].
Gaillot, AC ;
Flot, D ;
Drits, VA ;
Manceau, A ;
Burghammer, M ;
Lanson, B .
CHEMISTRY OF MATERIALS, 2003, 15 (24) :4666-4678
[40]   Structure of the synthetic K-rich phyllomanganate birnessite obtained by high-temperature decomposition of KMnO4 -: Substructures of K-rich birnessite from 1000°C experiment [J].
Gaillot, Anne-Claire ;
Drits, Victor A. ;
Manceau, Alain ;
Lanson, Bruno .
MICROPOROUS AND MESOPOROUS MATERIALS, 2007, 98 (1-3) :267-282