高水氟含锂花岗岩熔体在800 ~ 400℃、1kbar压力下的结晶特性(根据实验数据)

A. Rusak, Shchekina Tatyana, Zinovyeva Nina, Alferyeva Yana, Khvostikov Vladimir, Gramenitsky Evgeniy, Kotelnikov Alexey
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摘要

实验研究了Si-Al-Na-K-Li-F-H-O模型花岗岩体系在温度为800、700℃,P = 1、2 kbar,以及温度为600、550、500、400℃,P = 1 kbar,含水量为2 ~ 50 wt.%时的相关系。最初的成分是这样设定的,由此产生的硅酸盐熔体的成分接近于花岗岩共晶。结果表明,在Li的存在下,体系中形成了两种不混溶的熔体:铝硅酸盐(L)和盐碱-氟化铝(LF)。结果表明,在Т = 800°С, Р = 1 kbar和2 kbar,含水量> 10 wt. %时,体系中存在L、LF和流体(Fl)三相平衡。不含稀土元素的冰晶石(Crl)在700℃时开始从盐液中结晶。石英(Qtz)在600℃时从硅酸盐熔体中结晶,平衡相为L、LF、Crl、Qtz。在T = 500℃时,铝硅酸盐熔体中产生Qtz、Na和K氟化铝和多石矿结晶。观察到铬和Qtz的联合结晶。冰晶石和橄榄石的大晶体在盐和硅酸盐熔体中形成。同时,部分富集Li和REE的残盐熔体得到保存。在400℃时,LF完全结晶,L处于亚稳态。结果表明,稀土、钪、Y、Li在500℃以下盐液中富集,分配系数>> 1。在T = 500℃和400℃时,REE和Sc进入晶相组成。Sc部分同构取代Al。REE通常形成自己的LnF3型氟相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Peculiarities of Crystallization of Lithium-Containing Granite Melt with High Water and Fluorine Contents in the Temperature Range of 800 - 400 °C and Pressure of 1 kbar (According to Experimental Data).
The phase relations in the Si-Al-Na-K-Li-F-H-O model granite system are studied experimentally at T = 800, 700 °C and P = 1 and 2 kbar, as well as at T = 600, 550, 500 and 400 °C and P = 1 kbar and different water content from 2 to 50 wt.%. The initial composition was set in such a way that the composition of the resulting silicate melt was close to the granite eutectic. It is shown that in the presence of Li, two immiscible melts are formed in the system—an aluminosilicate (L) and a salt alkali-aluminofluoride (LF). It is shown that at Т = 800 °С, Р = 1 kbar and 2 kbar and water content > 10 wt. %, three phases are equilibrium in the system: L, LF, and fluid (Fl). Cryolite (Crl), which does not contain REE, begins to crystallize from the salt melt at 700 °C. Quartz (Qtz) crystallizes from the silicate melt at 600 °C and the equilibrium phases are L, LF, Crl, Qtz. At T = 500 °C Qtz, Na and K aluminofluorides and polylithionite crystallize from the aluminosilicate melt. The joint crystallization of Crl and Qtz is observed. Large crystals of cryolite and elpasolite are formed in both the salt and silicate melts. At the same time, the residual salt melt enriched in Li and REE is partially preserved. LF is completely crystallized at 400 °C, and L is in a metastable state. It is established that REE, Sc, Y and Li accumulate in the salt melt up to 500 °C with partition coefficients >> 1. REE and Sc enter into composition of the crystal phases at T = 500 °C and 400 °C. Sc partially isomorphically replaces Al. REE most often forms its own fluoride phases of the LnF3 type.
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