日本地球惑星科学連合2015年大会

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セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS24] ガスハイドレートと地球環境・資源科学

2015年5月28日(木) 14:15 〜 16:00 102B (1F)

コンビーナ:*戸丸 仁(千葉大学理学部地球科学科)、八久保 晶弘(北見工業大学環境・エネルギー研究推進センター)、森田 澄人(独立行政法人 産業技術総合研究所 地圏資源環境研究部門)、座長:木田 真人(産業技術総合研究所)

14:30 〜 14:45

[MIS24-21] MH堆積物圧力コアの内部構造可視化に向けたサブサンプリングシステムの開発

*神 裕介1今野 義浩1長尾 二郎1 (1.産業技術総合研究所)

キーワード:圧力コア, メタンハイドレート, X線CT

Gas clathrate hydrates (gas hydrates, GHs) are ice- like crystalline compounds consisting of gas and water molecules, in which the gas molecules are stored in a framework of water. GHs exist in oceanic and permafrost sediments; because they are a primary means of storing methane (CH4), natural GHs are of interest as a potential new energy resource. On March 12, 2013, the first offshore gas production test from the sandy GH layer in the eastern NT area; CH4 gas productions were produced from the offshore hydrate layer. Here, porosity of GH bearing sediment is a key of gas production efficient from natural gas-hydrate reservoir. Developable natural GHs by conventional gas/oil production apparatus almost exist in unconsolidated sedimental layer. Because sand matrix in GH sediments could have been changed by freezing water in pores in the case of quenched sample, porosity discussed using quenched GH bearing sediment may be over estimated comparing with nature of sediments at in situ condition. Therefore, we developed in situ sub-sampling system for pressured natural GH sediments due to in situ porosity estimation. In this study, we demonstrated sub-sampling from an artificial GH sediment and confirmed sub-sampling results through micro-imaging.
This work was supported by funding from the Research Consortium for Methane Hydrate Resources in Japan (MH21 Research Consortium) planned by the Ministry of Economy, Trade and Industry (METI), Japan.