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Potential uses and cementing mechanism of bio-carbonate cement and bio-phosphate cement

机译:生物碳酸盐水泥和生物磷酸盐水泥的潜在用途和固井机理

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Bio-cement, based on microbial-induced mineralization, can consolidate the loose particles and be applied to foundation reinforcement, dust control, desert settlement, repair cementitious materials crack, and other fields. In the paper, two kinds of bio-cement, such as bio-carbonate cement and bio-phosphate cement, were discussed as novel binders. The calcium carbonate (calcite), induced precipitation via Sporosarcina pasteurii, could cement between loose sandy soil particles. A series of sand-cemented experiments were conducted to confirm the cemented properties, and a numerical model based on the distribution of the concentration of Sporosarcina pasteurii was established to further analyze bio-grouting process. The evolution law of microstructure was revealed by X-ray computed tomography (X-CT) technique. The atomic binding energy of C-O bond in calcium carbonate, Si-O bond and Si in sand analysis showed that microbial-induced calcium carbonate interacted with surface of loose sand particles formed the intermolecular hydrogen bond. The other kind of bacteria (Bacillus subtilis) could hydrolyze organic phosphate monoester and released PO43-, which could react with different metal cations formed bio-phosphate minerals. The bio-phosphate cement can be used as treatment of sandy soil foundation, functional materials, remediation of heavy metals in contaminated soil, and so on.
机译:基于微生物诱导的矿化作用的生物水泥可以固结疏松的颗粒,可用于基础加固,除尘,沙漠沉降,修复胶凝材料裂缝等领域。在本文中,讨论了两种生物水泥,例如生物碳酸盐水泥和生物磷酸盐水泥,作为新型粘合剂。碳酸钙(方解石)通过巴斯德孢子虫(Sporosarcina pasteurii)引起的沉淀,可以在疏松的沙质土壤颗粒之间固结。进行了一系列的沙固实验,以确认固井性能,并建立了一种基于巴氏孢子菌浓度分布的数值模型,以进一步分析生物灌浆过程。 X射线计算机断层扫描(X-CT)技术揭示了微观结构的演变规律。碳酸钙中C-O键,Si-O键和Si的原子结合能表明,微生物诱导的碳酸钙与疏松砂粒表面相互作用形成分子间氢键。另一种细菌(枯草芽孢杆菌)可以水解有机磷酸单酯并释放出PO 4 3-,PO 4 3-可以与形成生物磷酸盐矿物质的不同金属阳离子反应。该生物磷酸盐水泥可用于处理沙质土壤基础,功能性材料,修复污染土壤中的重金属等。

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