Thermal conductivity measurements of magnesium hydride powder beds under operating conditions for heat storage applications
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作者:
Albert, Rene
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Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Albert, Rene
[1
]
Urbanczyk, Robert
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Inst Energie & Umwelttech eV, Bliersheimer Str 58-60, D-47229 Duisburg, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Urbanczyk, Robert
[2
]
Felderhoff, Michael
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Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Felderhoff, Michael
[1
]
机构:
[1] Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
One of the major issues of the change in energy politics is the storage of renewable energy in order to facilitate a continuous energy supply to the grid. An efficient way to store energy (heat) is provided by the usage of Thermochemical Energy Storage (TES) in metal hydrides. Energy is stored in dehydrogenated metal hydrides and can be released by hydrogenation for consumption. One prominent candidate for high temperature (400 degrees C) heat storage is magnesium hydride. It is a well-known and investigated material which shows high cycling stability over hundreds of cycles. It is an abundant material, non-toxic and easy to prepare in bigger scales. One of the major drawbacks for heat storage applications is the low heat transfer capability of packed beds of magnesium hydrides. In this work we present results of effective thermal conductivity (ETC) which were measured under hydrogen pressure up to 25 bar and temperatures up to 410 degrees C in order to meet the operating conditions of magnesium hydride as a thermochemical heat storage material. We could show that the effective thermal conductivity of a magnesium hydride hydrogen system at 410 C and 25 bar hydrogen increases by 10% from 1.0 W m(-1) K-1 to 1.1 W m(-1) K-1 after 18 discharging and charging cycles. In dehydrogenated magnesium hydride this increase of the thermal conductivity was found to be at 50% from 1.20 W m(-1) K-1 to 1.80 W m(-1) K-1 at 21 bar hydrogen. These data are very important for the design and construction of heat storage tanks based on high temperature metal hydrides in the future. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
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Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Albert, Rene
Wagner, Christian
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Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Wagner, Christian
Urbanczyk, Robert
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Inst Energie & Umwelttech eV IUTA, Bliersheimer Str 58-60, D-47229 Duisburg, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
Urbanczyk, Robert
Felderhoff, Michael
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Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, GermanyMax Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany
机构:
Univ Lille, Univ Artois, Cent Lille Inst, Unite Catalyse & Chim Solide,CNRS,UMR 8181,UCCS, F-59000 Lille, FranceUniv Lille, Univ Artois, Cent Lille Inst, Unite Catalyse & Chim Solide,CNRS,UMR 8181,UCCS, F-59000 Lille, France
Xiong, Shuyao
Jiang, Zhuojun
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Chinese Acad Sci, Inst Proc Engn, CAS Key Lab Green Proc & Engn, State Key Lab Biochem Engn, Beijing 100190, Peoples R ChinaUniv Lille, Univ Artois, Cent Lille Inst, Unite Catalyse & Chim Solide,CNRS,UMR 8181,UCCS, F-59000 Lille, France
Jiang, Zhuojun
Fatah, Nouria
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Univ Lille, Univ Artois, Cent Lille Inst, Unite Catalyse & Chim Solide,CNRS,UMR 8181,UCCS, F-59000 Lille, FranceUniv Lille, Univ Artois, Cent Lille Inst, Unite Catalyse & Chim Solide,CNRS,UMR 8181,UCCS, F-59000 Lille, France
机构:
Pontifical Catholic Univ Rio de Janeiro PUC Rio, Dept Mech Engn, BR-22451900 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro PUC Rio, Dept Mech Engn, BR-22451900 Rio De Janeiro, Brazil
Veiga, H. M. B.
Fleming, F. P.
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Petrobras Res & Dev Ctr, CENPES, BR-21941915 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro PUC Rio, Dept Mech Engn, BR-22451900 Rio De Janeiro, Brazil
Fleming, F. P.
Azevedo, L. F. A.
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Pontifical Catholic Univ Rio de Janeiro PUC Rio, Dept Mech Engn, BR-22451900 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro PUC Rio, Dept Mech Engn, BR-22451900 Rio De Janeiro, Brazil