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The Fe-Mg-saponite solid solution series - a hydrothermal synthesis study

机译:Fe-Mg-皂石固溶体系列-水热合成研究

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摘要

The boundary conditions of saponite formation are generally considered to be well known, but significant gaps in our knowledge persist in respect to the influence of solution chemistry, temperature, and reaction time on the mineralogy, structure, stability, and chemical composition of laboratory-grown ferrous saponite. In the present study, ferrous saponite and Mg-saponite were synthesized in Teflon-lined, stainless steel autoclaves at 60, 120 and 180℃, alkaline pH, reducing conditions, and initial solutions with molar Si:Fe:Mg ratios of 4:0:2, 4:1:1, 4:1.5:0.5, 4:1.75:0.25, and 4:1.82:0.18. The experimental solutions were prepared by dissolution of sodium orthosilicate (Na_4SiO_4), iron(Ⅱ)sulfate (FeSO_4·6H_2O) and magnesium chloride salts (MgCl_2·6H_2O with ≤0.005 mass% of K and Ca) in 50 mL ultrapure water that contained 0.05% sodium dithionite as the reducing agent. The precipitates obtained at two, five and seven days of reaction time were investigated by X-ray diffraction techniques, transmission electron microscopy analysis, infra-red spectroscopy, and thermo-analytical methods. The precipitates were composed mainly of trioctahedral ferrous saponite, with small admixtures of co-precipitated brucite, opal-CT, and 2-line ferrihydrite, and nontronite as the probable alteration product of ferrous saponite. The compositions of the obtained ferrous saponites were highly variable, (Na_(0.44-0.59)K_(0.00-0.05)Ca_(0.00-0.02))(Fe_(0.37-2.41)~(2+)Mg_(0.24-2.44)Fe_(0.00-0.28)~(3+))∑_(22.65-2.85) [(Fe_(0.00-0.37)~(3+)Si_(3.63-4.00))O_(10)](OH)_2, but show similarities with naturally occurring trioctahedral Fe and Mg end members, except for the Al content. This suggests that a complete solid solution may exist in the Fe-Mg-saponite series. A conceptual reaction sequence for the formation of ferrous saponite is developed based on the experimental solution and solid compositions. Initially, at pH ≥ 10.4, brucite-type octahedral template sheets are formed, where dissolved Si-O tetrahedra are condensed. Subsequent reorganization of the octahedra and tetrahedra via multiple dissolution-precipitation processes finally results in the formation of saponite structures, together with brucite and partly amorphous silica. The extent of Fe~(2+) incorporation in the octahedral template sheets via isomorphic substitution is suggested to stabilize the saponite structure, explaining (ⅰ) the abundance of saponite enriched in ~ⅥFe~(2+) at elevated Fe supply and (ⅱ) the effect of structural Fe on controlling the net formation rates of ferrous saponite.
机译:皂石形成的边界条件通常被认为是众所周知的,但是就溶液化学,温度和反应时间对实验室生长的矿物学,结构,稳定性和化学组成的影响而言,我们知识的重大缺陷仍然存在亚铁皂石。在本研究中,在60、120和180℃,碱性pH值,还原条件和初始溶液中,Si:Fe:Mg摩尔比为4:0的铁氟龙衬里不锈钢高压釜中合成了亚铁皂石和Mg皂石:2、4:1:1、4:1.5:0.5、4:1.75:0.25和4:1.82:0.18。将原硅酸钠(Na_4SiO_4),硫酸铁(Ⅱ)硫酸盐(FeSO_4·6H_2O)和氯化镁盐(MgCl_2·6H_2O的K和Ca含量≤0.005质量%)溶解在50 mL含0.05毫升的超纯水中制成实验溶液。 %的连二亚硫酸钠作为还原剂。通过X射线衍射技术,透射电子显微镜分析,红外光谱和热分析方法研究了在2、5和7天反应时间获得的沉淀物。沉淀物主要由三八面体亚铁皂石,少量共沉淀水镁石,蛋白石-CT和2线亚铁水合物以及绿脱石(可能为亚铁皂石的蚀变产物)组成。所获得的亚铁皂石的组成变化很大,(Na_(0.44-0.59)K_(0.00-0.05)Ca_(0.00-0.02))(Fe_(0.37-2.41)〜(2+)Mg_(0.24-2.44)Fe_ (0.00-0.28)〜(3 +))∑_(22.65-2.85)[(Fe_(0.00-0.37)〜(3+)Si_(3.63-4.00))O_(10)](OH)_2,但显示与天然八面体的Fe和Mg末端成员相似,除了Al含量不同。这表明Fe-Mg-皂石系列中可能存在完整的固溶体。基于实验溶液和固体成分,开发了用于形成亚铁皂石的概念性反应顺序。最初,在pH≥10.4时,形成水镁石型八面体模板片,在其中冷凝溶解的Si-O四面体。八面体和四面体的随后重组是通过多次溶解-沉淀过程最终导致皂石结构,水镁石和部分非晶态二氧化硅的形成。建议通过同构取代将Fe〜(2+)引入八面体模板片中的程度可稳定皂石结构,解释(ⅰ)在高Fe供应下,〜ⅥFe〜(2+)中富含的皂石和(and结构铁对控制亚铁皂苷净形成速率的影响。

著录项

  • 来源
    《Clay Minerals》 |2014年第3期|391-415|共25页
  • 作者单位

    Institute of Applied Geosciences, Graz University of Technology, Graz, Austria;

    BGR, Bundesanstalt fuer Geowissenschaften und Rohstoffe, Hannover, Germany;

    BGR, Bundesanstalt fuer Geowissenschaften und Rohstoffe, Hannover, Germany;

    Institute of Applied Geosciences, Graz University of Technology, Graz, Austria;

    Institute of Electron Microscopy and Nanoanalysis, Graz University of Technology, Graz, Austria;

    Institute of Applied Geosciences, Graz University of Technology, Graz, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    saponite; trioctahedral clay minerals; hydrothermal synthesis; XRD; TEM-EELS;

    机译:皂石三八面体粘土矿物;水热合成XRD;透射电镜;

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