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Basalt mine-tailings as raw-materials for Portland clinker

机译:玄武岩尾矿作为硅酸盐熟料的原料

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Large volumes of waste materials are produced by crushing of basaltic rocks for aggregate production, which is widely used in regions that lack rocks of granitic or gneissic composition. Two types of waste materials are produced (a) quarry fines, which are in part used as fine aggregates in concrete and (b) vesicular basalt, a porous variety of basalt that is useless as aggregate. This paper presents a procedure to use basaltic mine-tailings as raw-mixtures for Portland cement by adjusting the proportion of the other raw-materials (limestone, clay, iron ore). It is demonstrated that there is no need for additional fluxes to the basalt-bearing raw-mixtures, since the setting of the chemical parameters is enough to guarantee clinker formation. Two series of experimental clinkers were synthesized with raw-mixtures containing residues from a basalt quarry that produces aggregates for concrete. Experimental clinkers were produced from raw-mixtures with similar lime saturation factors, silica and alumina modules, which were set by adjusting the proportions of limestone, clay and iron ore to the varying proportions of basaltic materials added to them. One series of clinkers was made with basalt quarry fines, which are in part used as fine aggregate, but also accumulate as mine-tailings. Other series was made using vesicular (porous) basalt, a variety not resistant enough to be used as aggregate. It is demonstrated that the basaltic composition is fully compatible with clinker production, and no addition of fluxes or other additions is required. Composition of the raw-mixtures was checked by chemical analysis. Quantitative phase analysis of the clinkers was made by optical microscopy point counting, together with qualitative X-ray diffraction. All mixtures produced clinkers with acceptable proportions of major and minor crystalline phases, inside the range of common industrial Portland clinkers.
机译:通过破碎玄武岩来产生大量废料以进行集料生产,该废料被广泛用于缺乏花岗岩或片麻岩成分的地区。产生两种类型的废料:(a)采石场粉,部分用作混凝土中的细骨料;(b)水泡玄武岩,一种多孔的玄武岩,可用作骨料。本文提出了一种通过调整其他原料(石灰石,粘土,铁矿石)的比例来使用玄武岩尾矿作为硅酸盐水泥原料的方法。已证明不需要额外的助熔剂到含玄武岩的原料混合物中,因为化学参数的设定足以保证熟料的形成。合成了两个系列的实验性熟料,其中的原料混合物含有玄武岩采石场的残留物,该残渣产生了混凝土的骨料。实验性熟料是由具有类似石灰饱和度因子,二氧化硅和氧化铝模块的原始混合物生产的,这些混合物是通过将石灰石,粘土和铁矿石的比例调整为变化的玄武质材料比例来设定的。一系列熟料是用玄武岩采石场粉制成的,这些粉矿的一部分用作细骨料,但也作为矿用尾料积累。其他系列是使用水合(多孔)玄武岩制成的,该玄武岩的抵抗力不足以用作骨料。已经证明,该玄武岩组合物与熟料生产完全相容,并且不需要添加助熔剂或其他添加。通过化学分析检查原料混合物的组成。熟料的定量相分析是通过光学显微镜点计数以及定性X射线衍射进行的。所有混合物均在普通工业波特兰熟料范围内生产出具有可接受比例的主要和次要结晶相的熟料。

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