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Published in: Physics of Metals and Metallography 10/2019

01-10-2019 | STRUCTURE, PHASE TRANSFORMATIONS, AND DIFFUSION

Effect of Annealing on the Structure of Metallic Diffusive Membrane Filters on the Base of Palladium

Authors: O. V. Akimova, A. A. Veligzhanin

Published in: Physics of Metals and Metallography | Issue 10/2019

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Abstract

Abstract—The metallic filter foils of palladium-yttrium alloys are studied using X-ray diffraction analysis. The aim of the research is to study the high-temperature effects on phase transformations in palladium-based alloys. The change in the phase composition of the alloy and in its subsystems of defects were found upon the additional annealing of one of the membranes. A decrease in the microstrains was estimated by the change in the diffraction-reflections smearing after the annealing. The formation of regions with an increased lattice parameter in comparison with that of the matrix structure and effects of the high-temperature annealing on the structure of these regions are discussed.

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Literature
1.
go back to reference C. Stiller, P. Schmidt, and J. Michalski, “Storage of Renewable Electricity through Hydrogen Production,” World Renewable Energy Congress–2011 (Linköping University Electronic Press, Linköping, Sweden, 2011), pp. 4202–4208. C. Stiller, P. Schmidt, and J. Michalski, “Storage of Renewable Electricity through Hydrogen Production,” World Renewable Energy Congress–2011 (Linköping University Electronic Press, Linköping, Sweden, 2011), pp. 4202–4208.
2.
go back to reference V. S. Tereshchuk, “Hydrogen generator based on reduced solid fuel,” Russ. Eng. Res. 31, 1205–1212 (2011).CrossRef V. S. Tereshchuk, “Hydrogen generator based on reduced solid fuel,” Russ. Eng. Res. 31, 1205–1212 (2011).CrossRef
3.
go back to reference A. V. Gusev, R. A. Kornev, and A. Yu. Sukhanov, “Preparation of trichlorosilane by plasma hydrogenation of silicon tetrachloride,” Inorg. Mater. 42, 1023–1026 (2006).CrossRef A. V. Gusev, R. A. Kornev, and A. Yu. Sukhanov, “Preparation of trichlorosilane by plasma hydrogenation of silicon tetrachloride,” Inorg. Mater. 42, 1023–1026 (2006).CrossRef
4.
go back to reference G. Alefel’d and J. Völkl (Eds.), Hydrogen in Metals. vol. 1 (Springer, Berlin, 1978; Mir, Moscow, 1981). G. Alefel’d and J. Völkl (Eds.), Hydrogen in Metals. vol. 1 (Springer, Berlin, 1978; Mir, Moscow, 1981).
5.
go back to reference G. S. Burkhanov, N. B. Gorina, N. B. Kol’chugina, and N. R. Roshan, “Palladium alloys for hydrogen energy,” Zh. Ros. Khim. Ob-va im. D. I. Mendeleeva 50, 36–40 (2006). G. S. Burkhanov, N. B. Gorina, N. B. Kol’chugina, and N. R. Roshan, “Palladium alloys for hydrogen energy,” Zh. Ros. Khim. Ob-va im. D. I. Mendeleeva 50, 36–40 (2006).
6.
go back to reference S. V. Gorbunov, S. V. Kannykin, T. N. Penkina, N. R. Roshan, E. M. Chistov, and G. S. Burkhanov, “Palladium–lead alloys for the purification of hydrogen-containing gas mixtures and the separation of hydrogen from them,” Russ. Metall. (Metally), 2017, 54–59 (2017).CrossRef S. V. Gorbunov, S. V. Kannykin, T. N. Penkina, N. R. Roshan, E. M. Chistov, and G. S. Burkhanov, “Palladium–lead alloys for the purification of hydrogen-containing gas mixtures and the separation of hydrogen from them,” Russ. Metall. (Metally), 2017, 54–59 (2017).CrossRef
7.
go back to reference G. S. Burkhanov, N. L. Korenovskii, N. E. Klyueva, A. V. Gusev, and R. A. Kornev, “Extraction of hydrogen from a silicon production waste mixture using metal membranes made of palladium-based alloys,” Perspekt. Mater., No. 3, 62–67 (2007). G. S. Burkhanov, N. L. Korenovskii, N. E. Klyueva, A. V. Gusev, and R. A. Kornev, “Extraction of hydrogen from a silicon production waste mixture using metal membranes made of palladium-based alloys,” Perspekt. Mater., No. 3, 62–67 (2007).
8.
go back to reference G. S. Burkhanov, N. B. Gorina, N. B. Kolchugina, and N. R. Roshan, “Palladium-based alloy membranes for separation of high purity hydrogen from hydrogen–containing gas mixtures, Platinum Met. Rev. 55, 3–12 (2011).CrossRef G. S. Burkhanov, N. B. Gorina, N. B. Kolchugina, and N. R. Roshan, “Palladium-based alloy membranes for separation of high purity hydrogen from hydrogen–containing gas mixtures, Platinum Met. Rev. 55, 3–12 (2011).CrossRef
9.
go back to reference V. M. Avdyukhina, O. V. Akimova, I. S. Levin, and G. P. Revkevich, “Features of α–β transformation in Pd–In–Ru–H system,” Poverkhnost, No. 1, 1–6 (2014). V. M. Avdyukhina, O. V. Akimova, I. S. Levin, and G. P. Revkevich, “Features of α–β transformation in Pd–In–Ru–H system,” Poverkhnost, No. 1, 1–6 (2014).
10.
go back to reference Phase Diagrams of Metallic Systems. Review (Izd-vo Nauka, Moscow, 1968), p. 323 [in Russian]. Phase Diagrams of Metallic Systems. Review (Izd-vo Nauka, Moscow, 1968), p. 323 [in Russian].
11.
go back to reference O. V. Akimova, V. M. Avdyukhina, and I. V. Shchetinin, “Role of vacancies in the relaxation of Pd–5.3 at % In–0.5 at % Ru alloy foil after hydrogen desorption,” Phys. Met. Metallogr. 117, 130–134 (2016).CrossRef O. V. Akimova, V. M. Avdyukhina, and I. V. Shchetinin, “Role of vacancies in the relaxation of Pd–5.3 at % In–0.5 at % Ru alloy foil after hydrogen desorption,” Phys. Met. Metallogr. 117, 130–134 (2016).CrossRef
12.
go back to reference M. V. Koval’chuk, V. V. Kvardakov, and V. N. Korchu-ganov, “KISI yesterday, today, tomorrow,” Priroda (Moscow, Russ. Fed.), No. 12, 25–36 (2013). M. V. Koval’chuk, V. V. Kvardakov, and V. N. Korchu-ganov, “KISI yesterday, today, tomorrow,” Priroda (Moscow, Russ. Fed.), No. 12, 25–36 (2013).
13.
go back to reference O. V. Akimova and A. A. Veligzhanin, X-ray studies of Pd–In–Ru alloys using the method of synchrotron radiation, in Proc. of All-Russian Conference with International Participation “Solid State Chemistry and Functional Materials-2018” (2018). O. V. Akimova and A. A. Veligzhanin, X-ray studies of Pd–In–Ru alloys using the method of synchrotron radiation, in Proc. of All-Russian Conference with International Participation “Solid State Chemistry and Functional Materials-2018” (2018).
14.
go back to reference O. V. Akimova and A. A. Veligzhanin, “Structural diagnostics of metal solid solutions: New capabilities with the use of synchrotron radiation,” Poverkhnost, No. 2, 29–33 (2018). O. V. Akimova and A. A. Veligzhanin, “Structural diagnostics of metal solid solutions: New capabilities with the use of synchrotron radiation,” Poverkhnost, No. 2, 29–33 (2018).
15.
go back to reference R. D. Svetogorov, Dionis—Diffraction Open Integration Software. Certificate of state registration of computer programs for PC no. 2018660965. R. D. Svetogorov, Dionis—Diffraction Open Integration Software. Certificate of state registration of computer programs for PC no. 2018660965.
16.
go back to reference M. Wojdyr, “Fityk: A general-purpose peak fitting program,” J. Appl. Cryst. 43, 1126–1128 (2010).CrossRef M. Wojdyr, “Fityk: A general-purpose peak fitting program,” J. Appl. Cryst. 43, 1126–1128 (2010).CrossRef
17.
go back to reference V. I. Iveronova and G. P. Revkevich, Theory of Scattering of X-rays (Izd-vo MGU, Moscow, 1978) [in Russian]. V. I. Iveronova and G. P. Revkevich, Theory of Scattering of X-rays (Izd-vo MGU, Moscow, 1978) [in Russian].
18.
go back to reference A. E. Vol and I. K. Kagan, Structure and Properties of Binary Metallic Systems (Nauka, Moscow, 1976), vol. 3. A. E. Vol and I. K. Kagan, Structure and Properties of Binary Metallic Systems (Nauka, Moscow, 1976), vol. 3.
19.
go back to reference M. A. Krivoglaz, X-ray and Neutron Diffraction in Nonideal Crystals (Naukova Dumka, Kiev, 1983). M. A. Krivoglaz, X-ray and Neutron Diffraction in Nonideal Crystals (Naukova Dumka, Kiev, 1983).
20.
go back to reference G. P. Revkevich, A. A. Katsnel’son, and M. K. Mitkova, “Phenomenon of ascending diffusion in palladium–samarium alloys saturated with hydrogen,” Vestnik Mosk. Un-Ta, Ser. 3, Fiz., Astron., No. 2, 30–33 (1997). G. P. Revkevich, A. A. Katsnel’son, and M. K. Mitkova, “Phenomenon of ascending diffusion in palladium–samarium alloys saturated with hydrogen,” Vestnik Mosk. Un-Ta, Ser. 3, Fiz., Astron., No. 2, 30–33 (1997).
21.
go back to reference O. V. Akimova, V. M. Avdyukhina, I. S. Levin, and G. P. Revkevich, “Hydrogen-induced phase transformations in foils of palladium–indium–ruthenium alloy,” Bull. Russ. Acad. Sci.: Phys. 79, 1101–1105 (2015).CrossRef O. V. Akimova, V. M. Avdyukhina, I. S. Levin, and G. P. Revkevich, “Hydrogen-induced phase transformations in foils of palladium–indium–ruthenium alloy,” Bull. Russ. Acad. Sci.: Phys. 79, 1101–1105 (2015).CrossRef
22.
go back to reference G. K. Williamson and W. H. Hall, “X-ray line broadening from filed aluminium and wolfram,” Acta Metall. 1, 22–31 (1953).CrossRef G. K. Williamson and W. H. Hall, “X-ray line broadening from filed aluminium and wolfram,” Acta Metall. 1, 22–31 (1953).CrossRef
23.
go back to reference M. A. Krivoglaz and A. A. Smirnov, Theory of Ordering Alloys (Fizmatgiz, Moscow, 1958). M. A. Krivoglaz and A. A. Smirnov, Theory of Ordering Alloys (Fizmatgiz, Moscow, 1958).
Metadata
Title
Effect of Annealing on the Structure of Metallic Diffusive Membrane Filters on the Base of Palladium
Authors
O. V. Akimova
A. A. Veligzhanin
Publication date
01-10-2019
Publisher
Pleiades Publishing
Published in
Physics of Metals and Metallography / Issue 10/2019
Print ISSN: 0031-918X
Electronic ISSN: 1555-6190
DOI
https://doi.org/10.1134/S0031918X19080027

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