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Applications of microorganisms to geotechnical engineering for bioclogging and biocementation of soil in situ

机译:微生物在土工生物阻塞和生物固井的岩土工程中的应用

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摘要

Microbial Geotechnology is a new branch of geotechnical engineering that deals with the applications of microbiological methods to geological materials used in engineering. The aim of these applications is to improve the mechanical properties of soil so that it will be more suitable for construction or environmental purposes. Two notable applications, bioclogging and biocementation, have been explored. Bioclogging is the production of pore-filling materials through microbial means so that the porosity and hydraulic conductivity of soil can be reduced. Biocementation is the generation of particle-binding materials through microbial processes in situ so that the shear strength of soil can be increased. The most suitable microorganisms for soil bioclogging or biocementation are facultative anaerobic and micro-aerophilic bacteria, almough anaerobic fermenting bacteria, anaerobic respiring bacteria, and obligate aerobic bacteria may also be suitable to be used in geotechnical engineering. The majority of the studies on Microbial Geotechnology at present are at the laboratory stage. Due to the complexity, the applications of Microbial Geotechnology would require an integration of microbiology, ecology, geochemistry, and geotechnical engineering knowledge.
机译:微生物地球技术是岩土工程的一个新分支,致力于将微生物学方法应用于工程中使用的地质材料。这些应用的目的是改善土壤的机械性能,使其更适合于建筑或环境目的。已经探索了两个显着的应用,生物阻塞和生物胶结。生物阻塞是通过微生物手段产生的孔隙填充材料,因此可以降低土壤的孔隙率和水力传导率。生物胶结是通过微生物过程原位生成颗粒结合材料,从而可以提高土壤的剪切强度。用于土壤生物阻塞或生物固结的最合适的微生物是兼性厌氧和微需氧细菌,海藻厌氧发酵细菌,厌氧呼吸细菌和专性需氧细菌也可能适用于岩土工程。目前,大多数关于微生物地球技术的研究都处于实验室阶段。由于其复杂性,微生物地球技术的应用将需要整合微生物学,生态学,地球化学和岩土工程知识。

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