Session Details
[U-05]Natural Hydrogen, Understanding its Subsurface System and Production Engineering
Fri. May 29, 2026 9:00 AM - 10:30 AM JST
Fri. May 29, 2026 12:00 AM - 1:30 AM UTC
Fri. May 29, 2026 12:00 AM - 1:30 AM UTC
Exhibition Hall Special Setting (1) Exhibition Hall 7&8, Makuhari Messe
convener:Shin'ichi Kuramoto(Japan Agency for Marine-Earth Science and Technology), Ayumi Kosugi(Japan Organization for Metals and Energy Security), Haru-Hisa Uchida(Tokai University), Qingwang Yuan(Texas Tech University), Jean-Marc Fleury(Terrensis), Chairperson:Kuramoto Shin'ichi(Japan Agency for Marine-Earth Science and Technology), Kosugi Ayumi(Japan Organization for Metals and Energy Security), Uchida Haru-Hisa(Tokai University)
Natural hydrogen, recognized as a zero-emission energy source with substantial potential as a next-generation resource, has recently garnered increasing global attention. Its generation is primarily attributed to water-rock reactions involving iron-bearing lithologies at elevated temperatures (on the order of several hundred degrees Celsius), most notably through the serpentinization of ultramafic rocks. To date, exploration has been conducted predominantly in continental settings. On land, hydrogen seepage is occasionally expressed as ring-shaped surface depressions, commonly referred to as "fairy circles", which may serve as geomorphological indicators of subsurface hydrogen accumulations. Occurrences associated with interactions between meteoric water and mantle-derived ultramafic rocks, such as those documented in the Oman ophiolite and Alpine suture zones, have been reported worldwide. Collectively, these findings underscore the growing recognition of natural hydrogen as a viable energy resource, supported by favorable economic prospects including comparatively low extraction costs. In addition, stimulated hydrogen production has been proposed as a means of enhancing natural yields. Research into natural hydrogen is also closely linked to studies on the origin of life on early Earth and is increasingly considered a valuable analogue for potential extraterrestrial habitats.<br/>This session will address diverse aspects of natural hydrogen in both onshore and offshore environments, with particular emphasis on 1) its geological, geophysical, microbiological, and geochemical generation processes, 2) migration, accumulation and consumption mechanisms, 3) effective method and workflow of exploration, 4) thechno-economic analysis of the natural and stimulated hydrogen, and 5) the engineering approaches of production and recovery. We invite contributions from researchers, engineers, and industry professionals offering multidisciplinary perspectives on natural hydrogen.[U05-01]Abstract: A First Look at a Natural Hydrogen System “In the Wild”: MAX Power’s Lawson Saskatchewan Natural Hydrogen Discovery★Invited Papers
*Ranjith Narayanasamy1 (1.MAX Power Mining Corp.)
[U05-02]Trapping mechanisms in a natural hydrogen play-based exploration - The Pyrenees case
Firmin Destampes2,1, *Jean-Marc Fleury1, Frederic Mouthereau2, Henri Puntous1 (1.Terrensis, 2.Toulouse University - GET- OMP UMR5563)
[U05-03]Linking soil gas monitoring to geological hydrogen systems: measurement approaches and best practices
*Jelena Markov1, Dane Kasperczyk2, Vincent Mow2, Michael Breedon3, Martin Moran2, David Down2, Michael Camilleri2, Julian Strand1, Jiabin Liang1 (1.CSIRO, Energy, Kensington, Australia, 2.CSIRO, Energy, Clayton, Australia , 3.CSIRO, Manufacturing, Clayton, Australia)
[U05-04]Hydrogen Production Induced by Degree of Serpentinization: Hydrothermal Experiment on Natural Ultramafic Samples.
*Nomin Tumurkhuu1, Otgonbayar Dandar1, Manzshir Bayarbold1, Kazuki Yoshida2, Jiajie Wang1, Noriaki Watanabe1, Yasuhiro Niwa2,3, Masao Kimura2,3, Atsushi Okamoto1 (1.Graduate School of Environmental Studies, Tohoku University, 2.High Energy Accelerator Research Organization (KEK), 3.The Graduate University for Advanced Studies)
[U05-05]Unlocking the Potential of Oceanic Natural Hydrogen
*Shin'ichi Kuramoto1, Asahiko Taira2, Haru-Hisa Uchida2, Izumi Sakamoto2, Ryota Gamma2, Shigekazu Yamada2, Kohsaku Arai3, Yasuhiko Ohara4 (1.Japan Agency for Marine-Earth Science and Technology, 2.Tokai Univ., 3.AIST, 4.Hydrographic and Oceanographic Department of Japan)
[U05-06]Hydrogen generation potential of the Philippine Sea oceanic core complexes: a geological synthesis of the Godzilla and Nankaido Megamullions
*Yasuhiko Ohara1,2,3, Shin'ichi Kuramoto3 (1.Hydrographic and Oceanographic Department of Japan, 2.Nagoya Universtiy, 3.Japan Agency for Marine-Earth Science and Technology)
