Hydrogen absorption behavior of Zr-based getter materials with Pd[sbnd]Ag coating against gaseous impurities

Tiebang Zhang, Yunlong Zhang, Mi Zhang, Rui Hu, Hongchao Kou, Jinshan Li, Xiangyi Xue

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

In this work, Pd[sbnd]Ag coating has been deposited on different Zr-based Lave phase alloys, including ZrV2, Zr0.9Ti0.1V2 and Zr57V36Fe7, by the electroless plating technique. It is attempted to illustrate the role of Pd[sbnd]Ag coating on hydrogenation performance of Zr-based alloys against gaseous impurities. X-ray diffraction and scanning electron microscope (SEM) observations along with energy disperse spectroscopy (EDS) give evidences that the Pd[sbnd]Ag coating has been uniformly deposited on the surface of experimental alloys. Activation behavior and hydrogenation kinetics in pure H2 and mixture gases (H2 containing 1 vol.% air) are evaluated by using a Sieverts-type apparatus. The Pd[sbnd]Ag coating accelerates the hydrogenation kinetics and slightly decreases the hydrogen storage capacity of experimental Zr-based AB2 alloys. The poisoning effect of air gaseous impurities mainly deteriorates the hydrogen absorption capacity of experimental Zr-based alloys with Pd[sbnd]Ag coating at room temperature. The Pd[sbnd]Ag coated Zr0.9Ti0.1V2 preserves the fastest hydriding reaction rate at 303 K and 673 K among three experimental alloys. The slope value in the rapid absorbing stage (ka1) in mixture gases at each temperature of Pd[sbnd]Ag coated Zr-based AB2 alloys is quite higher than that of the corresponding bare alloy which indicates the uniform Pd[sbnd]Ag coating evidently improves the poison resistance capability of alloys in a wide temperature range. The Pd[sbnd]Ag coating does not fall off significantly from the surface after 6 times hydrogenation/dehydrogenation cycles.

Original languageEnglish
Pages (from-to)14778-14787
Number of pages10
JournalInternational Journal of Hydrogen Energy
Volume41
Issue number33
DOIs
StatePublished - 7 Sep 2016

Keywords

  • Electroless plating
  • Gaseous impurities
  • Getter materials
  • Pd–Ag coating
  • Poisoning resistance

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