首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Effect of Magnesium as Substitute Material in Enzyme-Mediated Calcite Precipitation for Soil-Improvement Technique
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Effect of Magnesium as Substitute Material in Enzyme-Mediated Calcite Precipitation for Soil-Improvement Technique

机译:镁替代材料在酶解方解石沉淀中的改良作用

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The optimization of enzyme-mediated calcite precipitation (EMCP) was evaluated as a soil improvement technique. In our previous works, purified urease was utilized to bio-catalyze the hydrolysis of urea, which causes the supplied Ca2+ to precipitate with CO32- as calcium carbonate. In the present work, magnesium chloride was newly added to the injecting solutions to delay the reaction rate and to enhance the amount of carbonate precipitation. Soil specimens were prepared in PVC cylinders and treated with concentration-controlled solutions composed of urea, urease, calcium, and magnesium chloride. The mechanical properties of the treated soil specimens were examined through unconfined compressive strength (UCS) tests. A precipitation ratio of the carbonate up to 90% of the maximum theoretical precipitation was achieved by adding a small amount of magnesium chloride. Adding magnesium chloride as a delaying agent was indeed found to reduce the reaction rate of the precipitation, which may increase the volume of the treated soil if used in real fields because of the slower precipitation rate and the resulting higher injectivity. A mineralogical analysis revealed that magnesium chloride decreases the crystal size of the precipitated materials and that another carbonate of aragonite is newly formed. Mechanical test results indicated that carbonate precipitates within the soils and brings about a significant improvement in strength. A maximum UCS of 0.6 MPa was obtained from the treated samples.
机译:酶介导的方解石沉淀(EMCP)的优化被评估为土壤改良技术。在我们以前的工作中,纯化的脲酶被用于生物催化尿素的水解,这导致所提供的Ca2 +与CO32-以碳酸钙的形式沉淀。在目前的工作中,将氯化镁新添加到注射液中以延迟反应速率并增加碳酸盐沉淀的量。用PVC圆筒准备土壤标本,并用尿素,尿素酶,钙和氯化镁组成的浓度受控溶液进行处理。通过无侧限抗压强度(UCS)测试来检查处理过的土壤标本的机械性能。通过添加少量的氯化镁,可达到最高理论沉淀量的90%的碳酸盐沉淀率。确实发现添加氯化镁作为延迟剂会降低沉淀的反应速率,如果在实际田间使用,这可能会增加处理过的土壤的体积,因为沉淀速率较慢,因此注入量较高。矿物学分析表明,氯化镁降低了沉淀物质的晶体尺寸,并且新形成了另一种文石碳酸盐。力学测试结果表明,碳酸盐在土壤中沉淀,强度显着提高。从处理后的样品中获得的最大UCS为0.6 MPa。

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