首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF CALCIUM HYDROXIDE AND WATER TO SOLID RATIO ON COMPRESSIVE STRENGTH OF MORDENITE-BASED GEOPOLYMER AND THE EVALUATION OF ITS THERMAL TRANSMISSION PROPERTY
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EFFECT OF CALCIUM HYDROXIDE AND WATER TO SOLID RATIO ON COMPRESSIVE STRENGTH OF MORDENITE-BASED GEOPOLYMER AND THE EVALUATION OF ITS THERMAL TRANSMISSION PROPERTY

机译:氢氧化钙和水对固比的影响对丝光沸石基地聚合物抗压强度的影响及其热传递性能的评价

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Mordenite-rich tuff is one of most available zeolitic rocks all over the world. Because of this, the research of natural mordenite as a raw material of geopolymeric materials can provide an almost unlimited source of solid precursor for manufacturing such building materials. Despite efforts to shed light on the behaviour of mordenite-rich tuff during geopolymeric reaction, the performance of these novel materials is barely understood. The aim of this study is to explore the effect of the content of calcium hydroxide, CH, and water-to-solid ratio, W/S, as mixing parameters on compressive strength of mordenite-based geopolymers, MBG, and its thermal conductivity. As solid precursor was used mordenite-rich tuff and mixed with sodium hydroxide (NaOH) at WMthat kept constant during the experiment. Two experimental parameters were selected as independent variables i.e, the content of CH and water-to-solid ratio, and their levels, according to a central composite experimental design. All these designed mixes were characterized by using quantitative X-ray diffraction (QXRD), Fourier Transform Infrared spectroscopy (FTIR), Thermogravimetry and differential scanning calorimetry (TGA-DSC), scanning electron microscopy coupled with energy dispersed spectroscopy (SEM-EDS), in addition thermal conductivity tests were also run according to standard method ASTM C177 at 9, 24, 39°C. The overall results suggested that MBG can be used as building material, however its thermal conductivity was higher than that of commercial isolate building material. The experimental design analysis indicated that the optimum water-to-solid ratio was 0.35, but in the case of the content of CH, the optimum value was not observed on this experimental range because the compressive strength increased as the content of CH increased as well. The compressive strength of MBG was observed in the range between 8.7 and 11.3 MPa. On the other hand, QXRD and FTIR showed that mordenite reacted during the geopolymeric reaction, but instead quartz, also found in zeolitic tuff, acted as inert filler.
机译:富含丝光沸石的凝灰岩是世界上最易获得的沸石岩之一。因此,对天然丝光沸石作为地聚材料原料的研究可以为制造此类建筑材料提供几乎无限的固体前体来源。尽管努力阐明在地质聚合物反应过程中富含丝光沸石的凝灰岩的行为,但对这些新型材料的性能了解甚少。这项研究的目的是探讨氢氧化钙含量,CH和水固比W / S作为混合参数对丝光沸石基地质聚合物MBG的抗压强度及其导热系数的影响。作为固体前体,使用富含丝光沸石的凝灰岩,并在WM下与氢氧化钠(NaOH)混合,在实验过程中保持恒定。根据中央复合实验设计,选择了两个实验参数作为自变量,即CH含量和水固比及其水平。使用定量X射线衍射(QXRD),傅立叶变换红外光谱(FTIR),热重分析和差示扫描量热法(TGA-DSC),扫描电子显微镜结合能量分散光谱(SEM-EDS)对所有这些设计的混合物进行表征此外,还根据标准方法ASTM C177在9、24、39°C下进行了导热系数测试。总体结果表明,MBG可用作建筑材料,但是其导热系数高于商业隔离建筑材料的导热系数。实验设计分析表明,最佳水固比为0.35,但在CH含量的情况下,在该实验范围内未观察到最佳值,因为抗压强度也随CH含量的增加而增加。观察到MBG的抗压强度在8.7和11.3MPa之间的范围内。另一方面,QXRD和FTIR表明,丝光沸石在地质聚合物反应过程中发生了反应,但沸石(也存在于沸石凝灰岩中)起了惰性填料的作用。

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