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A critical review of biomineralization in environmental geotechnics: Applications, trends, and perspectives

Yu Zhang, Xinlei Hu, Yijie Wang, Ning‐Jun Jiang

2023Biogeotechnics101 citationsDOIOpen Access PDF

Abstract

In this review paper, the applications of biomineralization in environmental geotechnics are analyzed. Three environmental geotechnics scenarios, namely heavy metal contamination immobilization and removal, waste and CO2 containment, and recycled use of industrial byproducts, are discussed and evaluated regarding current trends and prospects. The biomineralization process, specifically the Microbially Induced Carbonate Precipitation (MICP) technology, is an effective solution for immobilizing heavy metals through co-precipitation with calcium carbonate, with successful results in cleaning up contaminated soils. The nature of biomineralization enhances earth material strength and decreases permeability, making it suitable for waste and CO2 containment. Additionally, using industrial byproducts in MICP technology can improve the physical, mechanical, and hydraulic properties of earth materials, making it a potential solution for efficient waste utilization. In conclusion, the applications of biomineralization in environmental geotechnics hold great promise for solving various environmental problems. However, further research is needed to better understand the control and consistency of biomineralization processes, the durability of biominerals, the scale of applications, and environmental concerns.

Topics & Concepts

GeotechnicsBiomineralizationEngineering ethicsEngineeringGeotechnical engineeringChemical engineeringMicrobial Applications in Construction MaterialsCalcium Carbonate Crystallization and InhibitionBone Tissue Engineering Materials
A critical review of biomineralization in environmental geotechnics: Applications, trends, and perspectives | Litcius