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Soil biostabilisation and interaction with compaction processes for earthen engineering structures production

机译:土壤生物稳态与土工程结构生产压实过程的相互作用

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Interaction between microbially induced calcium carbonate precipitation (MICP) and compaction procedures to stabilise raw soil materials has been studied with the aim of producing earthen engineering structures. Initial tests to optimise MICP in aqueous medium and in selected soils were performed. MICP and compaction were finally applied to assess medium_fsize elements. The main result was that sandy soils should be compacted before irrigation treatment to close the existing voids and prevent bacterial sweeping, whereas clayey soils should be compacted after irrigation treatment to avoid the plugging effect. MICP improved small sand soil compressive strength by up to 32% over the value reached by compaction alone. However, MICP had no positive effect on coarse soils and soils with an optimum particle size distribution: MICP treatment was not able to fill large connected voids in the first case and it caused little void generation due to bacteria sporulation in the second.
机译:微生物诱导的碳酸钙沉淀(MICP)和压实程序之间的相互作用已经研究了稳定原料土壤的目标,目的是生产土工程结构。 进行优化水介质和所选土壤中MICP的初始试验。 最终应用MICP和压实以评估介质_FSIZE元件。 主要结果是,砂质土壤应在灌溉治疗前进行压实,以缩短现有的空隙并防止细菌扫描,而灌溉处理后粘土土壤应在避免堵塞效果。 MICP通过单独压实达到的值达到小于砂土压缩强度高达32%。 然而,MICP对具有最佳粒度分布的粗糙土壤和土壤没有积极影响:MICP处理不能在第一种情况下填充大连接的空隙,并且由于第二次孢子术而导致的空隙产生很小。

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