Integrated use of unconditional mining raw materials

L. I. Khudyakova
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Abstract

The development of the mining industry is accompanied by an increase in the volume of overburden, enclosing and substandard rocks located in dumps, which negatively affects the ecological situation. The purpose of this study is to establish a possibility and offer ways for the integrated use of mining raw materials. A number of experiments were conducted to achieve the goal. Using the methods of gravimetry and atomic absorption spectroscopy, the chemical analysis of basalts of the Baikal region was carried out; using the destructive method, physical and mechanical tests of the samples were performed. The possibility of using these rocks as a coarse aggregate for concrete was studied; the dependence of the strength of the materials on the chemical composition of crushed stone was established; in particular, it was determined that the addition of crushed stone with a high content of magnesium and iron oxides into the composition of concrete improves the mechanical properties of the samples. The rock acidity modulus was within the regulated limits, which indicates the possibility of obtaining high-quality melt that contributes to good fiber formation. The working temperature for the basalt melt and its relationship with the chemical and mineralogical composition of the basalts were established. Basalts which are of little use for producing concrete are high-quality raw materials for producing mineral fiber. It is possible to use mining raw materials in a complex way and reduce the amount of substandard rocks transferred to dumps, thereby improving the environmental situation in the areas of subsoil use.
综合利用无条件开采原料
随着采矿业的发展,堆积场的上覆岩、围护岩和不合格岩体积增加,对生态环境产生了不利影响。本研究的目的是为矿山原料的综合利用提供可能性和途径。为了达到这个目标,进行了许多实验。采用重量法和原子吸收光谱法对贝加尔湖地区玄武岩进行了化学分析;采用破坏法对试样进行了物理力学试验。研究了用这些岩石作为混凝土粗集料的可能性;建立了材料强度与碎石化学成分的关系;特别是,在混凝土成分中加入高含量氧化镁和氧化铁的碎石,可以改善样品的力学性能。岩石酸性模量在规定范围内,表明有可能获得有利于纤维形成的高质量熔体。建立了玄武岩熔体的工作温度及其与玄武岩化学和矿物组成的关系。玄武岩很少用于生产混凝土,是生产矿物纤维的优质原料。可以综合利用采矿原料,减少不合格岩石排土场的数量,从而改善底土利用地区的环境状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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