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Oral presentation

Spherical concretion formation; Understandings and applications

Yoshida, Hidekazu*; Yamamoto, Koshi*; Maruyama, Ippei*; Asahara, Yoshihiro*; Minami, Masayo*; Shirono, Shinichi*; Hasegawa, Hitoshi*; Katsuta, Nagayoshi*; Nishimoto, Shoji*; Muramiya, Yusuke*; et al.

no journal, , 

no abstracts in English

Oral presentation

Study for self-sealing process of EDZ and flow-paths factures learnt from spherical carbonate concretion formation

Yoshida, Hidekazu*; Yamamoto, Koshi*; Maruyama, Ippei*; Karukaya, Koichi*; Nakayama, Masashi; Sakurai, Akitaka; Sato, Toshinori

no journal, , 

Spherical, isolated carbonate concretions occur throughout the world in marine argillaceous sedimentary rocks of widely varying geological ages. These concretions are characteristically highly enriched in CaCO$$_{3}$$ compared to the surrounding sedimentary rock matrices and are commonly containing the well-preserved fossils inside. Recently the process of the enrichment of CaCO$$_{3}$$ has been revealed and synthetic concretion materials are developed. Here we will introduce the in-situ experiment with the synthetic concretion material for EDZ sealing carried out in Horonobe Underground Research Laboratory and the preliminary results of the EDZ sealing process and their sealing effectiveness.

Oral presentation

In-situ sealing feasibility experiment of flow-paths fractures learnt from spherical carbonate concretion formation

Yoshida, Hidekazu*; Yamamoto, Koshi*; Karukaya, Koichi*; Matsui, Hiroya

no journal, , 

no abstracts in English

Oral presentation

In-situ feasibility experiment for self-sealing process of EDZ and flow-paths factures learnt from spherical carbonate concretion formation

Yoshida, Hidekazu*; Yamamoto, Koshi*; Asahara, Yoshihiro*; Karukaya, Koichi*; Saito, Akane*; Matsui, Hiroya

no journal, , 

no abstracts in English

Oral presentation

Rapid sealing of bed rock flow paths by a synthetic concentration forming solvent

Yoshida, Hidekazu*; Yamamoto, Koshi*; Asahara, Yoshihiro*; Karukaya, Koichi*; Matsui, Hiroya; Metcalfe, R.*

no journal, , 

The ability of synthetic concretion-forming solvents to seal groundwater flow-paths by rapid precipitation of CaCO$$_{3}$$ in bed rock flow-paths has been tested by an in-situ experiment in the underground research laboratory (URL) located in Horonobe, northern Hokkaido, Japan. The experiment showed a decrease in permeability to as low as 1/100 to 1/1,000 of the initial permeability over a period of one year. This sealing process can be applied to various activities that require long-term containment of materials underground, for example abandonment of boreholes connected with hydrocarbon extraction, or CO$$_{2}$$ injection, or sealing of facilities for geological disposal of nuclear wastes.

Oral presentation

In situ experiment for the technology for sealing to underground cavities by a synthetic concretion-forming solvent; Rapid re-sealing of bed rock flow-paths after a earthquake

Yoshida, Hidekazu*; Yamamoto, Koshi*; Asahara, Yoshihiro*; Karukaya, Koichi*; Saito, Akane*; Matsui, Hiroya; Mochizuki, Akihito

no journal, , 

The report are the results of the in situ experiment for sealing to underground cavities by a synthetic concretion-forming solvent and observed phenomenon of the sealing function after a earthquake.

Oral presentation

In-situ feasibility experiment for self-sealing process of EDZ and flow-paths factures learnt from spherical carbonate concretion formation, 2

Yoshida, Hidekazu*; Yamamoto, Koshi*; Asahara, Yoshihiro*; Karukaya, Koichi*; Saito, Akane*; Matsui, Hiroya; Mochizuki, Akihito

no journal, , 

This report summarized the latest results of in-situ feasibility experiment for self-sealing process of EDZ and flow-paths factures in Horonobe URL of JAEA and calsite crystallization induced by concretion-forming solvent injection was observed on the fracture surface in EDZ.

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