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The Effect of Liquid Slurry-Enhanced Corrosion on the Phase Composition of Selected Portland Cement Pastes

机译:液体浆料增强腐蚀对选定的波德水泥浆料相组成的影响

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摘要

This paper presents the scientific problem of the biological corrosion of Portland cements and its effects on the phase composition of cement pastes after the corrosion process in the environment of reactive media from the agricultural industry. Seven Portland cements produced from different cement plants exposed to pig slurry and water as a reference medium for a period of six weeks were tested. After the exposure process in both of the above-mentioned reaction environments, the hydrating cement pastes were characterized in terms of their phase composition using the XRD method and were also subjected to morphological observations and a chemical composition analysis with the application of SEM and EDS methods. The results of these studies indicate the presence of a biological corrosion product in the form of taumasite [C3S·CO2·SO3·15H2O], which is a phase formed as a result of the reaction of dead matter (cement paste) with living matter, caused by the presence of bacteria in pig slurry. In addition to taumasite, the tested samples also showed the presence of the hydration product of Portland cements named portlandite (Ca(OH)2). Moreover, unreacted phases of cement clinker, i.e., dicalcium silicate (C2S) and tricalcium aluminate (C3A), were detected. Based on microscopic observations and analyses of the chemical composition of selected areas of the samples, the presence of the taumasite phase and compact areas of pseudo-crystalline C-S-H phases with different morphological structures, derived from the hydration products of cements doped with ions originating from the corrosive environment, were confirmed.
机译:本文介绍了波特兰水泥生物腐蚀的科学问题及其对农业工业反应介质环境腐蚀过程后水泥浆料相成分的影响。测试了由不同水泥厂生产的七种港口水泥,暴露于猪浆料和水作为参考介质的六周时间。在两种上述反应环境中的曝光过程之后,使用XRD方法的相位组合物表征水合水泥浆料,并且还通过应用SEM和EDS方法进行形态观察和化学成分分析。这些研究的结果表明存在以Taumasite [C3s·CO 2·SO3·15H2O形式的生物腐蚀产物的存在,这是由于死亡(水泥糊)与生物的反应而形成的相位,由猪浆料的细菌存在引起的。除Taumasite外,测试样品还显示出名为Portlandite的波特兰水泥的水化产物(Ca(OH)2)。此外,检测到未反应的水泥熟料相,即硅酸钠(C2s)和铝酸钙(C3A)的未反应相。基于样品的选定区域的微观观察和分析,基于所选区域的化学成分,具有不同形态结构的桃皂石相和紧凑型具有不同形态学结构的细孔区域,衍生自掺杂的水泥的水合产物腐蚀性环境得到了确认。

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