中乌拉尔Alapaevsky高碱性岩块中铬铁矿的高温电导率及其组成和变质作用

V. Bakhterev
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The electrical parameters for the three groups of samples were found to differ depending on the degree of metamorphic changes. It was established that an increase in metamorphism leads to an increase in lgRₒ and a decrease in Eₒ. For the studied samples of chromite ore from the Podennoye deposit, Eₒ and lgRₒ vary from 0.61 to 0.96 and from 2.5 to –0.41, respectively. In the Kurmanovskoye field, these parameters vary from 0.81 to 1.35 and from 0.95 to –2.8, respectively. For the studied samples of chromitites from the Podennoye deposit, Eₒ varies from 0.21 to 0.41, while lgRₒ varies from –0.08 to 1.67. In this case, the coefficients a and b are different for each group of samples. For some samples, the chemical composition was determined, and for six samples (two samples from each group), the content of ferrous and trivalent iron oxides in the original sample and a duplicate sample after calcination at temperature of up to 800 °C was determined. 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引用次数: 0

摘要

研究课题。Alapaevsky超基岩块体中含氧化铝(低铬)铬尖晶石的铬铁矿和块状铬铁矿(Podennoye矿床)和含高铬铬尖晶石的铬铁矿(Kurmanovskoye矿床)。材料和方法。利用化学分析和电学方法(电导率、介电损耗)对现场采集的铬铁矿和块状铬铁矿样品进行透明切片研究。结果。得到了在20 ~ 800℃温度范围内电阻和介电损耗的温度依赖性。确定了电参数lgRₒ和Eₒ,并揭示了它们之间的反线性关系。发现三组样品的电参数不同,取决于变质变化的程度。确定了变质作用的增加导致lgRₒ的增加和Eₒ的减少。研究的Podennoye矿床铬铁矿样品的Eₒ和lgRₒ分别在0.61 ~ 0.96和2.5 ~ -0.41之间变化。在Kurmanovskoye油田,这些参数分别在0.81 ~ 1.35和0.95 ~ -2.8之间变化。Podennoye矿床铬铁矿样品的Eₒ变化范围为0.21 ~ 0.41,lgRₒ变化范围为-0.08 ~ 1.67。在这种情况下,每组样本的系数a和b是不同的。对于一些样品,测定了化学成分,对于六个样品(每组两个样品),测定了在高达800°C的温度下煅烧后的原始样品和重复样品中铁和三价铁氧化物的含量。比较了初始样品(FeO/Fe2O3)*和重复样品(FeO/Fe2O3)** H = [(FeO/Fe2O3)*/(FeO/Fe2O3)**]中亚铁和三价铁氧化物比例的相对变化以及介电损耗最大值在温标上的位置。在H-T,°C坐标系中,研究样品根据变质变化占据一定位置。结论。研究表明,所得资料可作为铬铁矿床的岩石成因指标,同时对其变质程度进行评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-temperature electrical conductivity of chromite ores from the Alapaevsky hyperbasite massif, Middle Urals, as a function of their composition and metamorphism
   Research subject. Chromite ores and massive chromitites with alumina (low chromium) chrome spinelide (the Podennoye deposit deposit) and chromite ores with high-chromium chrome spinelide (Kurmanovskoye deposit) of the Alapaevsky hyperbasite massif.   Materials and methods. Samples of chromite ores and massive chromitites collected during field research were studied in transparent sections using chemical analysis and electrical methods (electrical conductivity, dielectric losses).   Results. The temperature dependences of electrical resistance and dielectric losses in the temperature range of 20‒800°C were obtained. The electrical parameters lgRₒ and Eₒ were determined, and the inverse linear relationship bet-ween them was revealed. The electrical parameters for the three groups of samples were found to differ depending on the degree of metamorphic changes. It was established that an increase in metamorphism leads to an increase in lgRₒ and a decrease in Eₒ. For the studied samples of chromite ore from the Podennoye deposit, Eₒ and lgRₒ vary from 0.61 to 0.96 and from 2.5 to –0.41, respectively. In the Kurmanovskoye field, these parameters vary from 0.81 to 1.35 and from 0.95 to –2.8, respectively. For the studied samples of chromitites from the Podennoye deposit, Eₒ varies from 0.21 to 0.41, while lgRₒ varies from –0.08 to 1.67. In this case, the coefficients a and b are different for each group of samples. For some samples, the chemical composition was determined, and for six samples (two samples from each group), the content of ferrous and trivalent iron oxides in the original sample and a duplicate sample after calcination at temperature of up to 800 °C was determined. Relative change in the ratio of ferrous and trivalent iron oxides in the initial sample (FeO/Fe2O3)* and a duplicate sample (FeO/Fe2O3)** H = [(FeO/Fe2O3)*/(FeO/Fe2O3)**] was compared with the position of the maximum of dielectric losses on the temperature scale. In the coordinates H–T, °C, the studied samples, depending on the metamorphic changes, occupy a certain place.   Conclusions. The study indicates the potential of the obtained information to be used as petrogenetic indicators of chromite deposits with a simultaneous assessment of the degree of metamorphic changes.
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