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首页> 外文期刊>KSCE journal of civil engineering >The Effects of Pyrite Ash on the Compressive Strength Properties of Briquettes
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The Effects of Pyrite Ash on the Compressive Strength Properties of Briquettes

机译:硫铁矿灰对煤球抗压强度性能的影响

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The aim of this study is to investigate the utilization of Pyrite Ash (PA) in the production of briquettes as a replacement of clay or soil. To achieve this, first, the characterization of the materials used (clayey soil and pyrite ash) was made using Fourier Transform Infrared Spectroscopy (FTIR/ATR). Particle size distribution and microstructure elemental analyses of these materials were also obtained using a particle size analyzer (Mastersizer) and a Scanning Electron Microscope (SEM). Following the characterization of the materials, the samples of briquettes made with or without addition of PA were prepared and sintered at 950 and 1000℃ in the furnace. The PA replacement ratios with clayey soil were 0,5,10,20% in mass basis (w/w). Compressive strength and bulk densities of briquettes produced were measured and the results were presented. Compressive strength results of the briquette samples indicated that pyrite ash containing briquettes with 35 MPa compressive strength, which was higher than the requirements of Turkish Standard Specification (TS EN 771-1), can be obtained. It is also recorded that for each mixture, compressive strength values obtained at 1000℃ were higher than that of obtained at 950℃. XRD analyze was performed on sintered briquette sample made with 10% PA which have the highest compressive strength value. The XRD results showed that peaks are Quartz (SiO_2), Hematite (Fe_2O_3), Ortoclase (KAlSi_3O_8), Albite (Na(AlSi_3O_8)), Anorthite (CaAl_2Si_2O_8) and Gehlenite (2CaO.Al_2O_3.SiO_2).
机译:这项研究的目的是研究硫铁矿灰(PA)在煤饼生产中作为粘土或土壤替代品的利用。为此,首先,使用傅立叶变换红外光谱(FTIR / ATR)对所用材料(粘土和黄铁矿灰)进行表征。还使用粒度分析仪(Mastersizer)和扫描电子显微镜(SEM)获得了这些材料的粒度分布和微观结构元素分析。根据材料的特性,制备添加或不添加PA的团块样品,并在950和1000℃的炉中烧结。以粘土为基础的PA置换率为质量(w / w)的0.5%,10.20%。测量了所生产的团块的抗压强度和堆积密度,并给出了结果。团块样品的抗压强度结果表明,可以获得含黄铁矿灰的团块,其抗压强度为35 MPa,高于土耳其标准规范(TS EN 771-1)的要求。还记录到,对于每种混合物,在1000℃下获得的抗压强度值高于在950℃下获得的抗压强度值。 XRD分析是对10%PA制成的具有最高抗压强度值的烧结团块样品进行的。 XRD结果表明,峰为石英(SiO_2),赤铁矿(Fe_2O_3),斜长石(KAlSi_3O_8),钠铁矿(Na(AlSi_3O_8)),钙长石(CaAl_2Si_2O_8)和钠钙石(2CaO.Al_2O_3.SiO_2)。

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