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Effect of Cr on the Mineral Structure and Composition of Cement Clinker and Its Solidification Behavior

机译:铬对水泥熟料矿物结构和成分的影响及其凝固行为

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摘要

In order to reveal the solidification behavior of Cr in the cement clinker mineral phase, Si magic-angle spinning nuclear magnetic resonance, X-ray diffraction, and scanning electron microscopy with energy-dispersive X-ray spectroscopy techniques were used to analyze the morphology and composition of the cement clinker mineral phase doped with Cr. The results showed that the addition of Cr did not change the chemical environment of Si in the clinker mineral phase, and it was still an isolated silicon–oxygen tetrahedron. Cr affected the orientation of the silicon–oxygen tetrahedron and the coordination number of calcium, leading to the formation of defects in the crystal structure of the clinker mineral phase, by replacing Ca into the mineral phase lattice to form a new mineral phase Ca Cr (SiO ) . Cr acted as a stabilizer for the formation of β-C S in the clinker calcination. As the amount of Cr increased, the relative content of C S decreased and the relative content of C S increased. Further, Cr easily dissolved in C S, while it was not found in C S. This study is conducive to further research on the mechanism of heavy metal solidification in cement clinker. Furthermore, it is important to evaluate the environmental risk of heavy metals in the process of sludge disposal through cement kiln and promote the utilization of sludge resources and the sustainable development of the cement industry.
机译:为了揭示Cr在水泥熟料相中的凝固行为,使用Si魔角旋转核磁共振,X射线衍射和扫描电子显微镜结合能量色散X射线光谱技术分析了形貌和掺Cr的水泥熟料矿物相的组成结果表明,Cr的添加不会改变熟料矿相中Si的化学环境,它仍然是一种孤立的硅氧四面体。 Cr影响硅-氧四面体的取向和钙的配位数,通过将Ca替换为矿物相晶格形成新的矿物相Ca Cr(导致熟料矿物相的晶体结构中形成缺陷)。 SiO)。 Cr用作熟料煅烧过程中形成β-CS的稳定剂。随着Cr含量的增加,C S的相对含量降低,并且C S的相对含量增加。此外,Cr容易溶解在C S中,而在C S中则没有发现。这项研究有助于进一步研究水泥熟料中重金属的固化机理。此外,重要的是评估通过水泥窑处理污泥过程中重金属的环境风险,并促进污泥资源的利用和水泥工业的可持续发展。

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