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首页> 外文期刊>Записки Российского минералогического общества >FEATURES OF MULTI-MINERAL CRYSTALLOGENESIS (BY EXAMPLE OF THE KCl - NaCl - MgCl_2 - H_2O SYSTEM)
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FEATURES OF MULTI-MINERAL CRYSTALLOGENESIS (BY EXAMPLE OF THE KCl - NaCl - MgCl_2 - H_2O SYSTEM)

机译:多矿物结晶的特征(通过KCl - NaCl - MgCl_2 - H_2O系统的实施例)

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The traditional crystallogenesis is confined mainly to processes of single crystal growth in simple and binary systems. Meanwhile general cases of multi-mineral crystallogenesis in ternary and more complex systems are of the principal interest for interpretations of natural features. The specifity of a joint growth of crystals of different phases is caused by an interaction of crystals of different phases that is revealed in inordinary combinations of familiar phenomena of single crystal growth and dissolution. Joint growth was investigated using monocrystal seeds of KCl and NaCl in eutonic aqueous solutions of these salts including those containing MgCl_2 in a wide range of concentrations. The improved Schreinemakers phase diagram of the system KCl - NaCl - MgCl_2 - H_2O revealed substantially more complex features comparatively to the usual configurations greatly increased an efficiency of our interpretations for multi-mineral media. Deformations of phase boundaries were revealed to display unequally directed trajectories of different solution compositions at parameter variations and unequal dependence of a supersaturation on supercooling in the different parts of the diagram. Growing of the partner phase and metastable carnallite crystals (When the composition field of the solution is at a certain distance from that of the crystals) upon the seeding (KCl or NaCl) indicates a sharp difference between compositions of the diffusion layer and the rest of the solution. When the mixtures are supercooled sufficiently, the irregular stages of dissolving of the NaCl seedings are observed. It is reflected in changed trajectory of the Figurative dot. The effect is explained by advanced growth of NaCl. Further spontaneous formation of KCl microcrystals upon the seeding surface is accompanied by the seeding dissolving that compensates its advanced growth. The metastable dissolving is the most profound metasomatic stage of the joint growth of different phases and determines the process kinetics in any system. We found out that the rates of growth of KCl and NaCl crystals increase and then drop with the increasing of MgCl_2 concentration, while supercooling proceeds to the same temperatures. This is due to similar nature of dependences of both components supersaturation resulting form changing the shape of eutonic line that, in turn, is caused by changing of MgCl_2 concentration. Hence, sings of a mineral replacement in magmatic and other rocks formed definitely by a direct crystallization can testify stages of a metastable dissolution, i.e. a revealed metasomatic component of the polymineral crystallization. Supersaturation is not a simple direct function of a supercooling (or a evaporation of a volatile substance). It varies in a complex fashion indetermined apriori. The correct analysis of a process is impossible without a sufficient information on the phase diagram shape.
机译:传统的晶体发生主要局限于简单和二元系统中单晶生长的过程。同时,“多矿物结晶”中的一般情况下,三元和更复杂的系统中的原因是对自然特征的解释的主要兴趣。不同阶段晶体的关节生长的规定是由不同相的晶体相互作用引起的,所述不同相对于单晶生长和溶解的熟悉现象的鉴定性组合揭示。使用KCl和NaCl在这些盐的助助液中的单晶种子和NaCl中的单晶种子来研究联合生长,包括在宽范围的浓度下含有MgCl_2的那些。系统KCl - NaCl - MgCl_2 - H_2O的改进的SchreineMakers相图揭示了与通常的配置相比的基本更复杂的特征大大提高了我们对多矿媒体的解释的效率。揭示了相界限的变形,以显示在参数变化下不同溶液组合物的不同溶液组合物的轨迹和过饱和在图中的不同部分中的过冷的不等依赖性。在接种(KCl或NaCl)时,伴侣相和亚料碳镍晶体(当溶液的组合物区域距离晶体的组合物)表示扩散层的组成和其余部分之间的尖锐差异解决方案。当混合物充分过冷时,观察到溶解NaCl播种的不规则阶段。它反映在比喻点的改变的轨迹中。通过NaCl的晚期生长来解释该效果。在播种表面上的KCl微晶的进一步自发形成伴随着播种​​溶解,以补偿其先进的生长。亚稳定的溶解是不同阶段的关节生长的最深刻的态阶段,并确定任何系统中的过程动力学。我们发现KCl和NaCl晶体的生长率增加,然后随着MgCl_2浓度的增加而下降,而过冷进入相同的温度。这是由于两种组分的依赖性的类似性质,所以通过改变助剂系的形状,又通过改变MgCl_2浓度来引起的。因此,通过直接结晶所形成的岩浆和其他岩石中的矿物替代物的串序可以证明亚稳溶解的阶段,即聚合物结晶的揭示态化组分。超饱和不是过冷的简单直接功能(或挥发物质的蒸发)。它在复杂的时尚不确定的Apriori中变化。没有足够的信息图形形状,不可能对过程的正确分析是不可能的。

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