Strength and leaching characteristics of stabilized ionic rare earth tailings by microbially induced calcium carbonate precipitation. [PDF]
Guo Z, Cao X, Liu Q, Xie S, Zhong Y.
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Multi-omic characterization of a soil microbial consortium reveals critical role of succinate and glutamate metabolism during calcium carbonate precipitation. [PDF]
Anthony WE +9 more
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Industrial-grade nitrogen sources modulate CaCO3 polymorphs and strength in MICP-cemented sand: A structure-property study. [PDF]
Zhang Y +8 more
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Ureolytic bacteria for MICP application to iron-rich slag materials for waste stabilization and carbon sequestration. [PDF]
Wilcox SM, Mulligan CN, Neculita CM.
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Prospects for the Use of MICP Technology in the Remediation of Saline-Alkaline Soil Heavy Metal Pollution. [PDF]
Guo H, Wang N, Ma Q, Wang J, Gao X.
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Isolation and screening of native ureolytic bacteria that induce calcium carbonate precipitation for prospective use in construction materials. [PDF]
Tamayo-Figueroa DP +2 more
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Large-scale experimental investigation of biotreated sand column using different grouting pipe configurations. [PDF]
Wang C, Wei Z, Shi J, He X.
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High-strength salt-tolerant mineralisation strain and microbial reinforcement mechanism of saline soil. [PDF]
Zhang N, Wang X, Xue Y, Li C.
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Solidification Performance and Mechanism of TSC Composite Soil Based on Microbially Induced Mineralization. [PDF]
Ding H, Zhan Q, Hu H, Xiong Y.
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Microbially-induced carbonate precipitation in coal-associated environments: opportunities and challenges. [PDF]
Tastambek K +10 more
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