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Comparison of the Effectiveness of Enzyme and Portland Cement for Compressive Strengths of Stabilized Soils

机译:酶与波特兰水泥对稳定土壤抗压强度的效果比较

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Portland cement can be used as soil stabilizer, but poses some problems such as dust pollution, consumption of fossil energy and relatively large amounts of calcium-rich raw materials. Enzyme as a soil enzymatic stabilizer is a natural organic compound and promising material to reduce the application of Portland cement. Perma-Zyme is one type of enzyme. The results of the study showed that soil type and curing method significantly affected the effectiveness of the treatments with Perma-Zyme and Composite Portland cement. Under the air-dry conditions, the unconfined compressive strengths of soils stabilized with Composite Portland cement were lower than those treated with Perma-Zyme at each age. In sealed glass containers, the unconfined compressive strengths of soils treated with Composite Portland cement were higher than those treated with Perma-Zyme. These results indicate that after compaction, the surface of soil stabilized with Portland cement should be moistened with a spray of some water or cover with materials (such as plastic sheet), but the surface of soil stabilized with Perma-Zyme need not spray water and cover with materials in the actual project construction.
机译:波特兰水泥可用作土壤稳定剂,但造成一些问题,如粉尘污染,化石能量消耗和相对大量的富含钙的原料。作为土壤酶促稳定剂的酶是一种天然有机化合物和有希望的材料,以减少波特兰水泥的应用。 PENMA-ZYME是一种酶。该研究的结果表明,土壤型和固化方法显着影响了Perma-yzyme和复合硅酸盐水泥的治疗的有效性。在空气干燥条件下,用复合薄壁水泥稳定的土壤的非整合抗压强度低于每年胚泽酶处理的土壤的抗压强度。在密封的玻璃容器中,用复合硅酸盐水泥处理的土壤的不包含束缚的抗压强度高于Perma-Zyme处理的土壤。这些结果表明,在压实之后,用波特兰水泥稳定的土壤表面应润湿一些水或用材料(如塑料片)喷洒,但用脓性酵素稳定的土壤表面不需要喷水用材料覆盖实际项目建设。

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