Global hydrogen reservoirs in basement and basins

Глобальные резервуары водорода в фундаменте и бассейнах
John Parnell, Nigel Blamey
2017-03-20

Archean and Palaeoproterozoic granites and gneissfluid inclusions cold crushinghydrogen in basement rockshydrogen reservoirs in sediments and basementsradiolysis of water and hydration reactions
BACKGROUND: Hydrogen is known to occur in the groundwaters of some ancient cratons. Where associated gases have been dated, their age extends up to a billion years, and the hydrogen is assumed also to be very old. These observations are interpreted to represent the radiolysis of water and hydration reactions and migration of hydrogen into fracture systems. A hitherto untested implication is that the overwhelming bulk of the ancient low-permeability basement, which is not adjacent to cross-cutting fractures, constitutes a reservoir for hydrogen. RESULTS: New data obtained from cold crushing to liberate volatiles from fluid inclusions confirm that granites and gneiss of Archean and Palaeoproterozoic (>1600 Ma) age typically contain an order of magnitude greater hydrogen in their entrained fluid than very young (<200 Ma) granites. Sedimentary rocks containing clasts of old basement also include a greater proportion of hydrogen than the young granites. CONCLUSIONS: The data support the case for a global reservoir of hydrogen in both the ancient basement and in the extensive derived sediments. These reservoirs are susceptible to the release of hydrogen through a variety of mechanisms, including deformation, attrition to reduce grain size and diagenetic alteration, thereby contributing to the hydrogen required by chemolithoautotrophs in the deep biosphere.
1
Ancient low-permeability basement and extensive derived sediments constitute a global reservoir of hydrogen.
2
Archean and Palaeoproterozoic (>1600 Ma) granites and gneiss contain about an order of magnitude more hydrogen in fluid inclusions than very young (<200 Ma) granites.
3
Cold-crushing volatile analyses confirm that hydrogen is entrained within fluid inclusions of ancient basement rocks and derived sediments.
4
Hydrogen in these reservoirs can be released by deformation, grain-size reduction (attrition), and diagenetic alteration, supplying hydrogen to chemolithoautotrophs in the deep biosphere.
5
Sedimentary rocks that include clasts of ancient basement also contain a greater proportion of hydrogen than young granites.

Global hydrogen reservoirs in ancient continental basement rocks and derived sedimentary basins

Occurrence, abundance and storage of molecular hydrogen within fluid inclusions of Archean–Palaeoproterozoic granites and gneisses and in sediments derived from old basement, and their potential to release H2 to support the deep biosphere

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2017-03-20
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John Parnell
Nigel Blamey
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