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Effect of some biotic factors on microbially-induced calcite precipitation in cement mortar

机译:某些生物因子对微生物引起的水泥砂浆方解石沉淀的影响

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摘要

Sporosarcina pasteurii, a common soil bacterium has been tested for microbial treatment of cement mortar. The present study also seeks to investigate the effects of growth medium, bacterial concentration and different buffers concerning the preparation of bacterial suspensions on the compressive strength of cement mortar. Two growth media, six different suspensions and two bacterial concentrations were used in the study. The influence of growth medium on calcification efficiency of S. pasteurii was insignificant. Significant improvement in the compressive as well as the tensile strength of cement mortar was observed. Microbial mineral precipitation visualized by Scanning Electron Microscopy (SEM) shows fibrous material that increased the strength of cement mortar. Formation of thin strands of fillers observed through SEM micrographs improves the pore structure, impermeability and thus the compressive as well as the tensile strengths of the cement mortar. The type of substrate and its molarity have a significant influence on the strength of cement mortar.
机译:已经测试了一种常见的土壤细菌巴斯德孢子菌(Sporosarcina pasteurii),用于微生物处理水泥砂浆。本研究还试图研究生长介质,细菌浓度和有关制备细菌悬浮液的不同缓冲液对水泥砂浆抗压强度的影响。在研究中使用了两种生长培养基,六种不同的悬浮液和两种细菌浓度。生长培养基对巴氏葡萄球菌钙化效率的影响不明显。观察到水泥砂浆的抗压强度和抗张强度有了显着改善。通过扫描电子显微镜(SEM)观察到的微生物矿物沉淀表明,纤维状材料增加了水泥砂浆的强度。通过SEM显微照片观察到,细细的填充料条的形成改善了孔隙结构,抗渗性,从而改善了水泥砂浆的抗压强度和抗张强度。基材的类型及其摩尔浓度对水泥砂浆的强度有重要影响。

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