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The relevance of the combination of XRD and Raman spectroscopy for the characterization of the CaSO4-H2O system compounds

机译:XRD和拉曼光谱法结合用于表征CaSO4-H2O体系化合物的相关性

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The CaSO4-H2O system compounds have diverse roles as industrial chemicals and for that reason, a rapid and reliable form to characterize them is important. However, in despite of the large bibliography around this system there still remain too many unknown points because of its complexity. Focusing in the XRD literature, the contradictions found in bibliography can be associated with an incomplete or incorrect definition of the system which assigns ambiguous new phases or determines strange structures. Thanks to that revision and the development of different thermodynamic experiments by XRD, the clarification of some problematic aspects of the system was carried out. A depth discussion of the number of phases was carried out establishing five different phases for the system, namely gypsum, bassanite, and three phases of anhidrite, AI, AII and AIII, as well as the crystallographic data for each one were suggested. Moreover, some new discoveries were obtained, such as the identification of a tetragonal structure of the AII as a thermal modification or the unit cell parameters of the AI. Finally, the obtained conclusions about the usefulness of the XRD technique were compared with the Raman spectroscopy to determine the best technique to characterize the compounds of the studied system. In the case of bassanite, the Raman spectroscopy is more useful than XRD because of the similarities between the XRD diffractograms of this compound and that of AIII. However, XRD is more adequate for the identification of AI and AII, as well as, for the determination of the phase transitions. This work has demonstrated that it is crucial the use of both techniques for the correct characterization of this system. (C) 2015 Elsevier B.V. All rights reserved.
机译:CaSO4-H2O系化合物作为工业化学品具有多种作用,因此,快速,可靠地表征它们非常重要。但是,尽管围绕该系统有大量的书目,但由于其复杂性,仍然存在太多未知的地方。着眼于XRD文献,书目中发现的矛盾可能与系统的不完整或不正确定义有关,该系统分配了模糊的新阶段或确定了奇怪的结构。由于该修改以及XRD进行的各种热力学实验的发展,对系统中一些有问题的方面进行了澄清。对相数进行了深入的讨论,建立了系统的五个不同相,即石膏,重钙铝石和无铅矿的三个相,即AI,AII和AIII,并提出了每个相的晶体学数据。此外,还获得了一些新发现,例如,将AII的四边形结构鉴定为热修饰或AI的晶胞参数。最后,将有关XRD技术有用性的结论与拉曼光谱进行比较,以确定表征所研究系统化合物的最佳技术。就重锌矿而言,拉曼光谱比XRD更有用,因为该化合物的XRD衍射图与AIII的XRD衍射图相似。但是,XRD更适合于AI和AII的识别以及相变的确定。这项工作表明,正确使用这两种技术对系统进行正确表征至关重要。 (C)2015 Elsevier B.V.保留所有权利。

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