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Carbonation-Induced Mineralogical Changes in Coal Mining Waste Blended Cement Pastes and Their Influence on Mechanical and Microporosity Properties

机译:碳酸化引起的矿渣混合水泥浆的矿物学变化及其对机械和微孔性能的影响

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The worldwide pursuit of new eco-efficient pozzolans is ongoing. Kaolinite-based waste is an eco-friendly source of recycled metakaolinite, a highly pozzolanic product. In this study, a blended cement paste containing 20% activated coal waste (ACW) was exposed to a 100% CO 2 atmosphere at 65% RH for 7 days. The variations in its phase composition and strength were studied and compared to an OPC control. Both pastes were cured for 28 days prior to the carbonation test. Reaction kinetics were assessed using XRD, SEM/EDX, TG/DTG, FT-IR, Micro-Raman spectroscopy, pore solution pH and the cumulative carbonated fraction. The blended cement carbonated 68% faster than the control. While portlandite carbonation was the main reaction in both cements, decalcification was also observed (more intensely in the 20% ACW paste) in other hydraulic calcium phases (C-S-H gel, monocarboaluminate (C 4 AcH 12 ), ettringite and tetracalcium aluminate (C 4 AH 13 ). The end product of this reaction was calcium carbonate, mainly in the form of calcite, although traces of aragonite and amorphous carbonate were also detected. Compressive strength values rose with accelerated carbonation time and pore size reduction in both cement pastes.
机译:全球范围内对新型生态高效火山灰的追求正在进行中。高岭石废料是一种环保的可再生偏高岭土的来源,偏高岭土是一种高度火山灰的产品。在这项研究中,将含有20%活性煤废料(ACW)的混合水泥浆在100%CO 2大气中于65%RH下暴露7天。研究了其相组成和强度的变化,并将其与OPC对照进行了比较。在碳化测试之前,将两种糊剂固化28天。使用XRD,SEM / EDX,TG / DTG,FT-IR,显微拉曼光谱,孔溶液pH值和累积的碳酸级分评估反应动力学。混合水泥的碳酸化速度比对照快68%。尽管两种水泥的主要反应都是波特兰碳酸化,但在其他水硬性钙相(CSH凝胶,单碳铝酸盐(C 4 AcH 12),钙矾石和铝酸四钙(C 4 AH)中也观察到了脱钙现象(在20%ACW浆中更为强烈)。 13)。该反应的最终产物为碳酸钙,主要为方解石形式,尽管也检测到了文石和无定形碳酸盐的痕迹,两种水泥浆的抗压强度值均随着碳化时间的增加和孔径的减小而增加。

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