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Evidence for H2S gas as an intermediate species in the reaction mechanism of trapping hydrogen by cobalt disulfide
Authors:David Chartier  Christophe Joussot-DubienDamien Quinton  Frederic BernardChantal Riglet-Martial  Emmanuel ExcoffierVincent Dauvois  Elisabeth ScioraFrederic Bouyer
Affiliation:a CEA, DEN, Marcoule, BP17171, F-30207 Bagnols-sur-Cèze, France
b Laboratoire Interdisciplinaire Carnot de Bourgogne, UMR 5209 CNRS-Université de Bourgogne, 9 Av. A. Savary, BP 47 870, F-21078 DIJON Cedex, France
c CEA, DEN, Cadarache, F-13108 Saint Paul lez Durance, France
d CEA, DEN, Saclay, F-91191 Gif sur Yvette, France
Abstract:Cobalt sulfide prepared by aqueous precipitation using Na2S and a Co(II) salt is known to trap hydrogen at room temperature and low pressure. The importance of oxidation of the primary CoS precipitate with atmospheric oxygen with respect to its efficiency as a hydrogen absorber is demonstrated. This stage of oxidation produces a mixture of two solid phases: a partially crystallized cobalt hydroxide Co(OH)2 and an amorphous cobalt sulfide CoS2 with a Co(OH)2/CoS2 molar ratio of 1 as predicted by thermodynamics. This biphasic product is probably the basic cobalt sulfide CoSOH considered in older and even more recent work. This product traps molecular hydrogen with a H2/Co molar ratio of 0.5 whereas unoxidized CoS precipitate traps almost no hydrogen (H2/Co = 0.025). Moderate acidic treatment of the absorber at room temperature leads to the selective dissolution of Co(OH)2. The remaining cobalt sulfide has CoS2 stoichiometry and reacts with hydrogen to form H2S gas and CoS. We showed that H2S released is reactive toward bases: CoS or Na2S were formed when H2S reacted with Co(OH)2 or NaOH, respectively. This proves that the hydrogen trapping reaction mechanism implies H2S as an intermediate species.
Keywords:Hydrogen   Cobalt sulfide   Hydrogen sulfide   Cobalt disulfide
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