首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Solubility of enstatite plus forsterite in H2O at deep crust/upper mantle conditions: 4 to 15 kbar and 700 to 900 degrees C
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Solubility of enstatite plus forsterite in H2O at deep crust/upper mantle conditions: 4 to 15 kbar and 700 to 900 degrees C

机译:在深地壳/上地幔条件下,顽辉石和镁橄榄石在水中的溶解度:4至15 kbar和700至900摄氏度

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摘要

Ten reversed brackets of aqueous silica concentration in equilibrium with enstatite (Mg2Si2O6) and forsterite (Mg2SiO4) were determined at 700 to 900degreesC and 4.35 to 14 kbar. Silica solubilities were measured by a weight loss-weight gain method and by approaching equilibrium from higher and lower silica concentrations. Both single-crystal and fine-grained synthetic enstatite and forsterite starting material were used, as well as low-Fe natural minerals. Results for all three kinds of starting material were concordant. Silica concentrations buffered by enstatite + forsterite at 10 kbar increase from 0.16 moles/kg H2O (in) at 700degreesC to 0.50 m at 900degreesC, but show only small variation with pressure in the range 7 to 14 kbar. The ratio X-S(Q)/X-S(FF), where X-S(Q) is the mote fraction of aqueous SiO2 (S) in equilibrium with quartz (Q) from Manning (1994), and X-S(FE) is the corresponding mole fraction in equilibrium with forsterite (F) and enstatite (E) at the same P and T, from 1 to 15 kbar and 700 to 900degreesC is described by X-S(Q) / X-S(FE) = 2.61 - 0.000930T + 0.0236 + 290P / T where P is in kbar and T in Kelvins. All of our measured silica solubilities are significantly lower than predicted with the conventional assumption of unit activity of silica for concentrations from zero to quartz saturation. Aqueous silica therefore exhibits negative, composition-dependent departures from ideality, in agreement with the deduction of Zhang and Frantz (2000) based on measurements at higher temperatures. Zhang and Frantz (2000) suggested that the formation of solute silica dimers accounts for the lowered activity. The equilibrium constant, K, for the proposed dimer formation reaction, 2H(4)SiO(4) = H6Si2O7 + H2O is K = X(dimers)a(H2O)/X-monomers(2), where the activities (a) of solute species are equated with their mole fractions, and a(H2O) approximate to 1 at the low SiO2 concentrations considered. Our solubility data at 700degreesC and 10 kbar give logK = 2.2, which predicts that solute silica in equilibrium with quartz at these conditions is about 40% polymerized, assuming dimers are the only polymer species. This estimate is in good agreement with Raman spectroscopic results of Zotov and Keppler (2002). However, if higher polymers, including rings and chains, are also present, the estimates of K based on either the solubility measurements or the spectroscopic observations would be substantially smaller. Our solubility measurements show that the activity of aqueous silica is substantially less than the molar concentration at deep crust/upper mantle PT conditions. Copyright (C) 2002 Elsevier Science Ltd. [References: 26]
机译:在700至900摄氏度和4.35至14 kbar的压力下,测定了十个倒角括号内的水合二氧化硅浓度与顽辉石(Mg2Si2O6)和镁橄榄石(Mg2SiO4)的平衡。二氧化硅的溶解度通过重量损失-重量增加法以及通过从较高和较低的二氧化硅浓度达到平衡来测量。同时使用了单晶和细粒合成顽辉石和镁橄榄石原料,以及低铁天然矿物。三种起始材料的结果均一致。在10 kbar下由顽辉石+镁橄榄石缓冲的二氧化硅浓度从700摄氏度下的0.16摩尔/千克H2O(in)增加到900摄氏度下的0.50 m,但在7至14 kbar的压力范围内仅显示出很小的变化。 XS(Q)/ XS(FF)之比,其中XS(Q)是与Manning(1994)的石英(Q)平衡的SiO2(S)水溶液的微粒分数,XS(FE)是相应的摩尔分数在相同的P和T下与镁橄榄石(F)和顽辉石(E)处于平衡状态时,XS(Q)/ XS(FE)= 2.61-0.000930T + 0.0236 + 290P / T,其中P以千巴为单位,T以开尔文为单位。我们测得的所有二氧化硅溶解度均显着低于从零到石英饱和浓度范围内二氧化硅单位活度的常规假设所预测的结果。因此,与基于较高温度下的测量结果得出的Zhang和Frantz(2000)的推论一致,水性二氧化硅表现出与理想状态相反的,与组成有关的负值。 Zhang and Frantz(2000)认为,溶质二氧化硅二聚体的形成是活性降低的原因。对于拟议的二聚体形成反应,2H(4)SiO(4)= H6Si2O7 + H2O的平衡常数K为K = X(二聚体)a(H2O)/ X-单体(2),其中活度(a)的溶质种类的摩尔分数等于它们的摩尔分数,在低SiO2浓度下,a(H2O)近似为1。我们在700摄氏度和10 kbar下的溶解度数据得出logK = 2.2,这表明在二聚体是唯一的聚合物种类的情况下,与石英平衡的溶质二氧化硅的聚合度约为40%。这个估计与Zotov和Keppler(2002)的拉曼光谱结果非常吻合。但是,如果还存在包括环和链在内的高级聚合物,则基于溶解度测量或光谱观察的K估计值将大大减小。我们的溶解度测量结果表明,在深地壳/上地幔PT条件下,含水二氧化硅的活性明显小于摩尔浓度。版权所有(C)2002 Elsevier Science Ltd. [参考:26]

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