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Defect Structure and Transport Properties of Nonstoichiometric Metal Sulphides

机译:非化学计量的金属硫化物的缺陷结构和传输性质

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The present paper is an attempt to discuss the results of studies on the defect structure and transport properties of nonstoichiometric metal sulphides,obtained in the recent decade. These physicochemical properties of metal sulphides remain still less known than those of corresponding oxides. Such situation results mainly from much greater experimental difficulties in studying the high-temperature heterogeneous reactions in sulphur-containing atmospheres. Sulphur vapours are,namely,extremely aggressive at high temperatures and as a consequence,all standard thermogravimetric and other equipments commonly used in oxidation studies are not applicable under such conditions. This experimental restriction has been overcame recently by the development of novel microthermogravimetric assemblies,enabling the determination of the kinetics of mass changes of a given sample with the accuracy of about two orders of magnitude higher than in all other thermogravimetric equipments. In addition,these assemblies make it possible to study the concentration and the mobility of point defects in metal sulphides showing not only large,but also very low deviation from stoichiometry. As a consequence,important information on physicochemical properties of metal sulphides can be obtained in rather simple way by two microthermogravimetric techniques,i.e. re-equilibration and two-stage kinetic methods,with the accuracy difficult to attain using other,much more complicated and time consuming methods. It has been shown that the results obtained using both these methods may be useful in studying transport properties of nonstoichiometric metal sulphides and thereby in designing novel high temperature alloys,better resistant to sulphide corrosion.
机译:本文试图讨论近十年来获得的非化学计量的金属硫化物的缺陷结构和传输性质的研究结果。与相应的氧化物相比,金属硫化物的这些物理化学性质仍然鲜为人知。这种情况主要是由于在研究含硫气氛中的高温非均相反应方面更大的实验困难所致。也就是说,硫蒸气在高温下具有极强的腐蚀性,因此,氧化研究中常用的所有标准热重分析仪和其他设备均不适用于此类条件。最近,通过开发新型微热解重量组件克服了这一实验限制,从而能够确定给定样品的质量变化动力学,其准确度比所有其他热解重量设备高约两个数量级。此外,这些组件使得研究金属硫化物中点缺陷的浓度和迁移率不仅显示出与化学计量的偏差大,而且显示出非常低的偏差成为可能。结果,可以通过两种微量热重技术以相当简单的方式获得有关金属硫化物的理化性质的重要信息。再平衡和两阶段动力学方法,使用其他更复杂和耗时的方法难以获得准确度。已经表明,使用这两种方法获得的结果都可用于研究非化学计量的金属硫化物的传输性能,从而设计出更好的耐硫化物腐蚀性能的新型高温合金。

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