优化加压MICP固化砂质黏性紫色土试验研究

    Experimental study on optimization of pressure grouting MICP solidification for sandy clayey purple soil

    • 摘要: 微生物诱导碳酸钙沉积(MICP)技术对岩土材料加固具有广泛应用前景。加压灌浆的方式适用于固化渗透性较低的岩土材料。通过对重庆地区砂质黏性紫色土进行灌浆压力、胶结液浓度、灌浆流量、周期条件的四因素三水平L9(34)正交试验和扫描电镜微观结构分析,研究加压灌浆方式对固化试样的微观结构、强度、模量、碳酸钙均匀性等方面的影响规律。结果表明:灌浆浓度和流量是影响碳酸钙沉积位置的重要因素,适当提升流量可以在土样上层碳酸钙大量絮凝之前将其输送到土体内部;胶结液在1,3,5个灌浆周期后的利用率依次降低,分别为67%,48%,36%;受到碳酸钙产量、灌浆压力及灌浆次数共同影响,试样渗透系数由初始的2.5×10-4 cm/s降低1~2个数量级;碳酸钙产量对无侧限峰值强度增量(ΔUCS)的影响呈近似线性关系,大于1.1%的碳酸钙产量可使紫色土ΔUCS获得可见的提升;5次灌浆以后,强度最高可提升至2倍;割线模量与碳酸钙离散度保持负相关关系,并随着碳酸钙的增加波动上升。加压灌浆获得的固化样割线模量E50最高可达301 MPa,是未固化试样的3.2倍;最佳灌浆工艺条件是灌浆压力为150 kPa,流量为28 mL/h、胶结液浓度为1 mol/L、灌浆次数为5次的固化模式。该压力、流量可控的优化加压灌浆系统同时实现了对每轮灌浆后渗透系数的测量,试验结果可以为低渗土壤微生物加压灌浆的应用提供参考。

       

      Abstract: Technology of microbially induced calcite precipitation (MICP) has a wide application prospect in geotechnical material reinforcement. The method of pressure grouting is suitable for the test of geomaterials with low permeability. The effects of grouting pressure, concentration of the cementation reagent, grouting flow rate and cycle condition are measured through L9(34) orthogonal test of Chongqing sandy clayey purple soil. Cooperated with the micro-structure analysis of SEM, the influence of pressure grouting approaches on sample's micro-structure, strength, secant modulus and uniformity distribution of calcite distribution are unveiled. The results show that the reagent concentration and flow rate are important factors to determine the deposition location of calcite. The calcite can be transported to the interior of sample before a large amount of flocculation precipitated on upper layer by properly increasing the flow rate. After 1, 3 and 5 grouting cycles, the utilization rate of reagent decreases successively, which is 67%, 48%, and 36%, respectively. Under the influence of yield calcite, grouting pressure and periodicity, the permeability coefficient of the sample decreased by 1-2 orders of magnitude from an initial value of 2.5×10-4 cm/s. Calcite production rate for peak unconfined compressive strength increment (ΔUCS) expresses an approximately linear relationship, the influence of more than 1.1% of calcite increment can make the purple soil ΔUCS obtain visible improvement. After 5 times of pressure grouting, the strength is maximumly increased by 2 times; The secant modulus is negatively correlated with the dispersion and fluctuates with the increase of calcium carbonate. The secant modulus E50 of cured samples by pressure grouting is up to 301 MPa, 3.2 times that of uncured samples. The optimal grouting Conditions for the treatment are: a grouting pressure of 150 kPa, 28 mL/h, a flow rate of a cementation reagent concentration of 1 mol/L, and 5 grouting cycles. Designed pressure grouting system with controllable flow rate and grouting pressure can measure the permeability coefficient after each round of treatment, and the test results can provide reference for the application of microbially pressure grouting in low permeable soil.

       

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