User:Woclass/钙矾石

钙矾石
钙矾石, 3.3×2.6×2.5 cm. 产自南非北开普省卡拉哈里锰田
基本資料
類別硫酸盐
化学式Ca
6
Al
2
(SO
4
)
3
(OH)
12
·26H
2
O
施特龙茨分类7.DG.15
晶体分类Ditrigonal pyramidal (3m)
赫尔曼–莫甘记号: (3m)
晶体空间群P31c
晶胞a = 11.23, c = 21.44 [Å]; Z = 2
性質
顏色无色、淡黄色或乳白色
晶体惯态针状生长、棱纹状晶体; 纤维状至棉絮状
晶系六方晶系
解理{1010} 完全
莫氏硬度2-2.5
光澤玻璃光泽
條痕白色
透明性透明至不透明
比重1.77
光學性質单轴 (-)
折射率nω = 1.491, nε = 1.470
双折射δ = 0.021
發光性无荧光性
溶解度部分溶于水
可轉變為在空气中部分脱水,变得不透明
參考文獻[1][2][3]

钙矾石 是一种含水的钙铝硫酸盐矿物,其化学式为Ca
6
Al
2
(SO
4
)
3
(OH)
12
·26H
2
O
。它呈无色到黄色,晶系为三方晶系。其柱状晶体通常情况下无色,部分脱水后显白色。[2][3]钙矾石类矿物包括硅灰石膏和钙铬矾。[4]


参见 编辑

参考文献 编辑

  1. ^ Ettringite data, Webmineral
  2. ^ 2.0 2.1 2.2 2.3 2.4 2.5 Ettringite in Handbook of Mineralogy
  3. ^ 3.0 3.1 3.2 3.3 Ettringite. Mindat.org
  4. ^ Ettringite-group.
  5. ^ Lehmann, J. (1874): Über den Ettringit, ein neues Mineral in Kalkeinschlüssen der Lava von Ettringen (Laacher Gebiet). N. Jb. Mineral. Geol. Paläont., 273-275
  6. ^ Carpenter, A.B. (1963): Oriented overgrowths of thaumasite on ettringite. Am. Mineral. 48
  7. ^ Merlini, Marco; Artioli, Gilberto; Cerulli, Tiziano; Cella, Fiorenza; Bravo, Anna. Tricalcium aluminate hydration in additivated systems. A crystallographic study by SR-XRPD. Cement and Concrete Research (Elsevier). 2008, 38 (4): 477–486. doi:10.1016/j.cemconres.2007.11.011. 
  8. ^ Bazant, Z.P.; Wittmann F.H. Creep and shrinkage in concrete structures. John Wiley and Sons. 1982. ISBN 0-471-10409-4. 
  9. ^ 9.0 9.1 Moore A E , Taylor H F W (1970), Crystal structure of ettringit, Acta Crystallographica Section B , 26 p.386-393
  10. ^ Bannister, M.A. (1935): Ettringite from Scawt Hill, Co. Antrim. Mineralogical Magazine, 24, 324-329
  11. ^ Goetz-Neunhoeffer, F. and Neubauer, J. (2006): Refined ettringite (Ca6Al2(SO4)3(OH)12·26H2O) structure for quantitative X-ray diffraction analysis. Powder Diffr. 21, 4-11.
  12. ^ Rachel L. Norman a,b, Sandra E. Dann a, Simon C. Hogg c, Caroline A. Kirk. (2013): Synthesis and structural characterisation of new ettringite and thaumasite type phases: Ca6[Ga(OH)6.12H2O]2(SO4)3.2H2O and Ca6[M(OH)6.12H2O]2(SO4)2(CO3)2, M = Mn, Sn, Solid State Sciences 25.
  13. ^ 13.0 13.1 Moon DH, Park JW, Cheong KH, Hyun S, Koutsospyros A, Park JH, Ok YS. (2013): Stabilization of lead and copper contaminated firing range soil using calcined oyster shells and fly ash, Environ Geochem Health 35