MECHANISM OF PLAGIOCLASE DISSOLUTION IN ACID-SOLUTION AT 25-DEGREES-C

被引:102
作者
OXBURGH, R [1 ]
DREVER, JI [1 ]
SUN, YT [1 ]
机构
[1] UNIV WYOMING,DEPT GEOL & GEOPHYS,LARAMIE,WY 82070
关键词
D O I
10.1016/0016-7037(94)90496-0
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 dissolution kinetics of three plagioclase feldspars (An(13), An(46), and An(76)) were studied in flow-through reactors over the pH range 3-7. In accordance with the surface complexation model, dissolution rate was described by the equation Rate = x(a)A exp (E(a)/kT)(C-H(s))(n), where (C-H(s)) is the concentration of protonated surface sites, x(2) is the mole fraction of these that are activated, A is the Arrhenius pre-exponential factor, and E(a) is the activation energy for the reaction. The reaction order with respect to surface charge (n) at pH < 5 is a function of mineral composition, and increases with increasing anorthite content. Orders of 0.46, 1.2, and 2.0 are obtained for oligoclase, andesine, and bytownite, respectively. This indicates that the reaction intermediate is more highly protonated in feldspars of higher aluminum content. The nonintegral reaction orders obtained demonstrate the importance of several surface species in the dissolution reaction. Reaction rates increase with increasing anorthite content. In acid solution this reflects the linear dependence of E(a) on the number of Al-O-Si bonds involved in the rate-determining step. Under conditions of low surface protonation (in near-neutral solutions), dissolution is independent of surface charge. As reaction occurs at neutral alumina sites, the rate is approximately proportional to the anorthite (Al) content of the feldspar.
引用
收藏
页码:661 / 669
页数:9
相关论文
共 28 条
[1]   SOME FACTORS AFFECTING THE DISSOLUTION KINETICS OF ANORTHITE AT 25-DEGREES-C [J].
AMRHEIN, C ;
SUAREZ, DL .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1992, 56 (05) :1815-1826
[2]   THE USE OF A SURFACE COMPLEXATION MODEL TO DESCRIBE THE KINETICS OF LIGAND-PROMOTED DISSOLUTION OF ANORTHITE [J].
AMRHEIN, C ;
SUAREZ, DL .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1988, 52 (12) :2785-2793
[3]   SURFACE-ROUGHNESS OF MINERALS AND IMPLICATIONS FOR DISSOLUTION STUDIES [J].
ANBEEK, C .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1992, 56 (04) :1461-1469
[4]   ROLE OF SURFACE SPECIATION IN THE LOW-TEMPERATURE DISSOLUTION OF MINERALS [J].
BLUM, A ;
LASAGA, A .
NATURE, 1988, 331 (6155) :431-433
[5]   THE ROLE OF SURFACE SPECIATION IN THE DISSOLUTION OF ALBITE [J].
BLUM, AE ;
LASAGA, AC .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1991, 55 (08) :2193-2201
[6]   CONTROLS ON SILICATE DISSOLUTION RATES IN NEUTRAL AND BASIC PH SOLUTIONS AT 25-DEGREES-C [J].
BRADY, PV ;
WALTHER, JV .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1989, 53 (11) :2823-2830
[7]   THE SURFACE OF LABRADORITE FELDSPAR AFTER ACID-HYDROLYSIS [J].
CASEY, WH ;
WESTRICH, HR ;
MASSIS, T ;
BANFIELD, JF ;
ARNOLD, GW .
CHEMICAL GEOLOGY, 1989, 78 (3-4) :205-218
[8]   THE SURFACE-CHEMISTRY OF DISSOLVING LABRADORITE FELDSPAR [J].
CASEY, WH ;
WESTRICH, HR ;
ARNOLD, GW ;
BANFIELD, JF .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1989, 53 (04) :821-832
[9]   SURFACE-CHEMISTRY OF LABRADORITE FELDSPAR REACTED WITH AQUEOUS-SOLUTIONS AT PH = 2, 3, AND 12 [J].
CASEY, WH ;
WESTRICH, HR ;
ARNOLD, GW .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1988, 52 (12) :2795-2807
[10]  
CASEY WH, 1991, AM MINERAL, V76, P211