Masato Kawaguchi
Shimizu Corporation
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Featured researches published by Masato Kawaguchi.
Journal of Hazardous Materials | 2000
Sumio Horiuchi; Masato Kawaguchi; Kazuya Yasuhara
A lot of effort has been put into increasing coal ash utilization; however, 50% of total amount is disposed of on land and in the sea. Several attempts have been reported recently concerning slurried coal fly ash use for civil engineering materials, such as for structural fill and backfill. The authors have studied this issue for more than 15 years and reported its potential for (1) underwater fills, (2) light weight backfills, and (3) light weight structural fills, through both laboratory tests and construction works. This paper is an overview of the results obtained for slurry, focusing on the following. (1) Coal fly ash reclaimed by slurry placement shows lower compressibility, higher ground density, and higher strength than by the other methods. This higher strength increases stability against liquefaction during earthquake. (2) Higher stability of the fly ash ground formed by slurry placement is caused by higher density and its self-hardening property. (3) Stability of fly ash reclaimed ground can be increased by increasing density and also by strength enhancement by cement addition. (4) Technical data obtained through a man-made island construction project shows the advantages of fly ash slurry in terms of mechanical properties such as higher stability against sliding failure, sufficient ground strength, and also in terms of cost saving. (5) Concentration in leachates from the placed slurry is lower than the Japanese environmental law. (6) In order to enlarge the fly ash slurry application toward a lightweight fill, mixtures of air foam, cement and fly ash were examined. Test results shows sufficient durability of this material against creep failure. This material was then used as lightweight structural fill around a high-rise building, and showed sufficient quality. From the above data, it can be concluded that coal fly ash slurry can be effectively utilized in civil engineering projects.
Environmental Science & Technology | 2016
Facun Jiao; Norie Iwata; Norikazu Kinoshita; Masato Kawaguchi; Motoyuki Asada; Maki Honda; Keisuke Sueki; Yoshihiko Ninomiya
Chemical Engineering Journal | 2017
Facun Jiao; Norikazu Kinoshita; Masato Kawaguchi; Motoyuki Asada; Maki Honda; Keisuke Sueki; Yoshihiko Ninomiya
Archive | 2000
Motoyuki Asada; Sumio Horiuchi; Masato Kawaguchi; Takao Take; 澄夫 堀内; 正人 川口; 高男 武; 素之 浅田
Archive | 2012
Yukinori Fuse; 幸則 布施; Yuichi Tsukahara; 裕一 塚原; Masato Kawaguchi; 正人 川口
Archive | 2006
Kozo Fukuoka; Masakatsu Hakumo; Sumio Horiuchi; Masato Kawaguchi; Michihiro Kida; Yoshimasa Kitamura; Toshikazu Tamai; 圭正 北村; 澄夫 堀内; 正人 川口; 道宏 木多; 利和 玉井; 正勝 白茂; 浩三 福岡
Archive | 2010
Sumio Horiuchi; Masato Kawaguchi; Yusaku Osaki; 澄夫 堀内; 雄作 大崎; 正人 川口
Archive | 2007
Hideo Fukai; Yukinori Fuse; Masato Kawaguchi; Yoko Nachi; 洋子 名知; 正人 川口; 幸則 布施; 日出男 深井
Archive | 2006
Masaaki Chatani; Sumio Horiuchi; Masato Kawaguchi; Yuichi Nakano; Yuichi Tanimoto; Junichi Tsushima; Atsushi Uehara; Kohei Yoshida; 淳 上原; 裕一 中野; 幸平 吉田; 澄夫 堀内; 正人 川口; 潤一 津島; 正明 茶谷; 祐一 谷本
Proceedings of the 2002 SPE International Petroleum Conference and Exhibition in Mexico | 2002
Akihiko Hirayama; Masaki Maegaito; Masato Kawaguchi; Akira Ishikawa; Mark Sueyoshi; Ali S. Al-Bemani; Ahmed Mushtaque; Humphrey A. Esechie; Salim Ali Al-Mazrui; Mansour Al-Haddabi; Sulaiman Said Al-Khanjari