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Investigation of use of coal fly ash in eco-friendly construction materials: fired clay bricks and silica-calcareous non fired bricks

机译:环保建筑材料中煤粉煤灰使用的调查:燃烧粘土砖和二氧化硅 - 钙质非燃烧砖

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The use of coal fly ash (CFA) as raw material for the manufacture of two construction materials, fired clay bricks and silica-calcareous non-fired bricks, was investigated. Fired clay bricks were manufactured using a commercial clay and different waste ratios (0-50 wt%), moulded at 10 MPa and fired at 1000 degrees C (4 h). Silica-calcareous non fired bricks were prepared using two wastes as raw material: CFA and "geosilex"(G), a hidrated lime residue which comes entirely from acetylene industry waste. Different proportions CFA (80-30 wt%) G (20-70 wt%) were investigated. Raw materials were moulded at 10 MPa and cured in water at room temperature during 28 days. The results indicated that the incorporation of up to 20 wt% of CFA produced fired clay bricks with physical and mechanical properties similar to control bricks without waste. However, additions of a higher amount (30-50 wt%) of residue resulted in a more pronounced decrease in mechanical properties (between 25-50%) due to an increase in open porosity. The technological characterization of the silica-calcareous non fired bricks showed a reduction in the values of bulk density and water absorption when the coal fly ash content decreases. Silica-calcareous non-fired bricks containing between 40 and 60 wt% of CFA had the highest values of compressive strength in the range 46-43 MPa. These silica-calcareous non-fired bricks, 60CFA-40 G, 50CFA-50 G and 40CFA-60 G, presented the optimum amount of pozzolanic materials (SiO2 and Al2O3) in the coal fly ash and calcium hydroxide in the geosilex to give rise to the formation of calcium silicate hydrates and calcium aluminate hydrates, the phases responsible for the mechanical resistance increase of the construction materials. Therefore, CFA-clay fired bricks and silica-calcareous CFA-Geosilex non-fired bricks presented optimal technological properties that attain the quality standards.
机译:研究了使用煤粉煤灰(CFA)作为制造两种建筑材料,烧制粘土砖和二氧化硅 - 钙质非燃烧砖的原料。使用商业粘土和不同的废物比(0-50wt%)制造烧制的粘土砖,以10MPa成型并以1000℃(4小时)烧制。使用两次废物作为原料制备二氧化硅 - 钙质非燃烧砖:CFA和“Geosilex”(g),一种倾异的石灰残留物,其完全来自乙炔工业废物。研究了不同的比例CFA(80-30wt%)g(20-70wt%)。将原料在10MPa下模塑,在28天内在室温下在水中固化。结果表明,掺入高达20%wt%的CFA产生的燃烧粘土砖,其具有类似于控制砖的物理和机械性能,无浪费。然而,由于开放孔隙率的增加,增加了更高量(30-50wt%)残基的残余物,导致机械性能(25-50%)的降低。二氧化硅 - 钙质非发射砖的技术特征表明当煤粉煤灰含量降低时,堆积密度和吸水率的值减少。含有40至60wt%CFA的二氧化硅 - 钙质非烧制砖的抗压强度值在46-43MPa范围内。这些二氧化硅 - 钙质非烧成砖,60cfa-40g,50cfa-50g和40cfa-60g,在Geosilex中呈现在煤粉煤灰和氢氧化钙中的火山灰材料(SiO2和Al2O3),以产生以形成硅酸钙水合物和铝酸钙水合物,阶段负责建筑材料的机械电阻增加。因此,CFA-粘土燃烧砖和二氧化硅 - 钙质CFA-Geosilex未烧制砖呈现出质量标准的最佳技术特性。

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