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首页> 外文期刊>Crystals >Optimization of Enzyme-Mediated Calcite Precipitation as a Soil-Improvement Technique: The Effect of Aragonite and Gypsum on the Mechanical Properties of Treated Sand
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Optimization of Enzyme-Mediated Calcite Precipitation as a Soil-Improvement Technique: The Effect of Aragonite and Gypsum on the Mechanical Properties of Treated Sand

机译:作为土壤改良技术的酶解方解石沉淀的优化:文石和石膏对处理过的砂土力学性能的影响

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The effectiveness of magnesium as a substitute material in enzyme-mediated calcite precipitation was evaluated. Magnesium sulfate was added to the injecting solution composed of urea, urease, and calcium chloride. The effect of the substitution on the amount of precipitated materials was evaluated through precipitation tests. X-ray powder diffraction and scanning electron microscopy analyses were conducted to examine the mineralogical morphology of the precipitated minerals and to determine the effect of magnesium on the composition of the precipitated materials. In addition to calcite, aragonite and gypsum were formed as the precipitated materials. The effect of the presence of aragonite and gypsum, in addition to calcite, as a soil-improvement technique was evaluated through unconfined compressive strength tests. Soil specimens were prepared in polyvinyl chloride cylinders and treated with concentration-controlled solutions, which produced calcite, aragonite, and gypsum. The mineralogical analysis revealed that the low and high concentrations of magnesium sulfate effectively promoted the formation of aragonite and gypsum, respectively. The injecting solutions which produced aragonite and calcite brought about a significant improvement in soil strength. The presence of the precipitated materials, comprising 10% of the soil mass within a treated sand, generated a strength of 0.6 MPa.
机译:评价了镁在酶介导的方解石沉淀中作为替代材料的有效性。将硫酸镁添加到由尿素,尿素酶和氯化钙组成的注射溶液中。通过沉淀测试评估了取代对沉淀材料量的影响。进行了X射线粉末衍射和扫描电子显微镜分析,以检查沉淀矿物的矿物学形态,并确定镁对沉淀物质组成的影响。除方解石外,还形成了文石和石膏作为沉淀物。通过无限制抗压强度试验评估了除方解石之外,文石和石膏的存在对土壤改良技术的影响。在聚氯乙烯圆筒中制备土壤标本,并用浓度受控的溶液处理,生成方解石,文石和石膏。矿物学分析表明,低和高浓度的硫酸镁分别有效地促进了文石和石膏的形成。产生文石和方解石的注射液使土壤强度显着提高。沉淀物质的存在(占处理过的沙子中土壤质量的10%)产生了0.6 MPa的强度。

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