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Estudo da potencialidade da incorporação de resíduo de granito e da queima da casca do café em cerâmica vermelha

机译:研究在红色陶瓷中掺入花岗岩残渣并燃烧咖啡壳的可能性

摘要

The industrial production of ornamental rocks and the burning of coffee husk generate waste that is discarded into the environment. However, with the study of the incorporation of these residues in ceramic products, may be found an alternative to reducing environmental impacts and detrimental effects on human health caused by its indiscriminate disposal of waste in nature. Thus, this work aimed to study the addition of ashes of the coffee husk and granite residue in matrix of red ceramic. The raw materials were dry milled and sieved to mesh 100. To characterize the raw materials were carried out analyzes of X-ray diffraction (XRD), X-ray fluorescence (XRF), particle size analysis (PSA), differential thermal analysis (DTA) and thermogravimetric analysis (TG). Six formulations were prepared where the clay content was kept constant (70%wt) and ashes contents and granite residue varied from 10, 15, 20 and 30%. Dilatometrics analyzes were performed at four selected formulations, containing them: 100% clay (A100); 70% clay and 30% ashes (A70C30); 70% clay and 30% granite residue (A70G30); and 70% clay, 15% granite residue and 15% ashes (A70G15C15). The samples were prepared by uniaxial compaction with pressure of 25 MPa, and fired at temperatures of 800°C, 850ºC, 900ºC, 950ºC, 1000ºC and 1100°C. Assays were performed to determine the linear shrinkage of burning (LSB), water absorption (WA), apparent porosity (AP), density (D) and tensile bending. Also were performed analyzes of X-ray diffraction (XRD) and scanning electron microscopy (SEM) of the samples fired. The formulations incorporating granite residue and/or ashes reached the required limits of water absorption according to NBR 15270-1 and NBR 15310 and tensile bending according to classical literature (SANTOS, 1989) necessary for the production of tiles and ceramic block for masonry sealing
机译:观赏性岩石的工业生产和咖啡果皮的燃烧产生的废物被丢弃到环境中。但是,通过研究将这些残留物掺入陶瓷产品中,可以发现减少残留物在自然界中对环境的影响以及对人类健康的有害影响的替代方法。因此,这项工作旨在研究在红色陶瓷基质中添加咖啡灰和花岗岩残留物的灰烬。将原料干磨并筛分至100目。为表征原料,进行了X射线衍射(XRD),X射线荧光(XRF),粒度分析(PSA),差热分析(​​DTA)的分析。 )和热重分析(TG)。制备了六种配方,其中粘土含量保持恒定(70%wt),灰分含量和花岗岩残渣变化范围为10%,15%,20%和30%。用四种选定的配方进行了膨胀计量分析,其中包括:100%粘土(A100); 70%的粘土和30%的骨灰(A70C30); 70%的粘土和30%的花岗岩残渣(A70G30);和70%的粘土,15%的花岗岩残渣和15%的骨灰(A70G15C15)。通过在25 MPa的压力下单轴压制制备样品,并在800°C,850°C,900°C,950°C,1000°C和1100°C的温度下烧制。进行测定以确定燃烧的线性收缩率(LSB),吸水率(WA),表观孔隙率(AP),密度(D)和拉伸弯曲。还对发射的样品进行了X射线衍射(XRD)和扫描电子显微镜(SEM)分析。根据NBR 15270-1和NBR 15310,掺有花岗岩残留物和/或灰烬的配方达到了要求的吸水极限,并且根据古典文献(SANTOS,1989年)达到了拉伸弯曲的要求,这是生产砖石和砖石密封所需的

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    Avelino Keite Anny Rocha;

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  • 年度 2013
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