Properties and Behavior of Sandy Soils by a New Interpretation of MICP

被引:1
|
作者
Fukue, Masaharu [1 ]
Lechowicz, Zbigniew [2 ]
Mulligan, Catherine N. [3 ]
Takeuchi, Seiichi [4 ]
Fujimori, Yuichi [5 ]
Emori, Kentaro [6 ]
机构
[1] Japanese Geotech Assoc Housing Disaster Prevent, 1622 Oshikiri,Shimizu Ku, Shizuoka 4240008, Japan
[2] Warsaw Univ Life Sci, Inst Civil Engn, Dept Geotech Engn, Nowoursynowska 159, PL-02776 Warsaw, Poland
[3] Concordia Univ, Dept Bldg Civil & Environm Engn, 1455 Maisonneuve Blvd W, Montreal, PQ H3G 1M8, Canada
[4] Fudo Tetra Co, 7-2 Koami Cho,Chuo Ku, Tokyo 1030016, Japan
[5] Chubu Sokuchi Res Inst Co, 801-1 Konami, Suwa 3920131, Japan
[6] Sanko Kaihatsu Co Ltd, 1320 Gokanjima, Fuji 4160946, Japan
关键词
MICP process; optical density (OD); cell viability; carbonate formation rate (CPR); OD-CPR relationship; sandy soils; CARBONATE; PRECIPITATION; SR;
D O I
10.3390/ma18040809
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Research on MICP technology for ground improvement began in the early 2000s, and since then, it has been considered as innovative research. The field of applications is showing signs of expanding from sandy soil stabilization to remediation. However, the research has not always progressed, because it is extremely difficult to evaluate the ability (viability rate) related to microorganisms and how to handle them quantitatively. In fact, this problem hinders the consensus of research results in terms of quantitative evaluation of microorganisms and the cross-comparison (evaluation) and use of MICP technology research. The crucial disadvantage of using bacteria is that their properties are not constant due to changes over time and in the surrounding environment. Therefore, for engineering purposes, we used the carbonate formation rate (CPR), instead of urease activity, as a function of the microbial mass (OD) with viable bacteria. Thus, the standard OD-CPR relationship was defined experimentally, and the estimation method of viability was established. The required amount of microorganisms for testing was given by OD*, and the relationship "OD = Rcv OD*" was defined to convert from OD* to OD. Rcv was defined as the viable bacterial rate. It was found that the Ca2+/OD ratio controls the inhibition behavior in MICP. At a Ca2+/OD ratio of >8.46 M, then inhibition occurs, while at Ca2+/OD = 8.46 M, CPR = 8.46 OD and the CPR is proportional to the viable OD, Rcv, and OD*. We show that it is possible to perform an experiment using OD* with aged bacteria, obtain Rcv from the standard OD-CPR and OD*-CPR relationships, convert OD* to OD and to perform a unified evaluation without actually determining the viability rate.
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页数:20
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