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[1]梁仕华,牛九格,房采杏,戴君,尹应梅,刘勇健.营养液钙源对微生物固化砂土效果影响的试验研究[J].防灾减灾工程学报,2018,38(05):781-786.
梁仕华, 牛九格, 房采杏, et al. Experimental Study on the Effect of Nutrient Solution Calcium Sources on Bio-cemented Sand[J]. 2018, 38(5): 781-786.
[1]梁仕华,牛九格,房采杏,戴君,尹应梅,刘勇健.营养液钙源对微生物固化砂土效果影响的试验研究[J].防灾减灾工程学报,2018,38(05):781-786. DOI: 10.13409/j.cnki.jdpme.2018.05.002.
梁仕华, 牛九格, 房采杏, et al. Experimental Study on the Effect of Nutrient Solution Calcium Sources on Bio-cemented Sand[J]. 2018, 38(5): 781-786. DOI: 10.13409/j.cnki.jdpme.2018.05.002.
微生物诱导碳酸钙沉淀(MICP)作为一种环保型地基处理技术
其机理是通过微生物诱导碳酸钙沉淀有效改善土体工程性能
参与固化反应的营养液成份不同对固化效果有显著影响。分别选用氯化钙和硝酸钙作为营养液中的钙源
通过渗透实验、干密度实验、吸水率实验、无侧限抗压强度实验从宏观角度分析钙源对微生物固化砂土物理力学指标的影响。同时
结合电镜扫描测试
从微观角度对比了不同钙源作用下碳酸钙沉淀晶体形态及空间分布的差异。研究结果表明:利用硝酸钙固化后的砂柱整体密实度更高
其破坏裂缝在饱水和干燥状态下比氯化钙固化后的砂柱更小;硝酸钙作为钙源固化后的砂柱渗透系数和吸水率更低
干密度和无侧限抗压强度也更高。电镜扫描结果显示
氯化钙为钙源形成的碳酸钙沉淀量较少
形态为球状
散落分布在砂粒表面;硝酸钙形成碳酸钙沉淀量较多
形态以球状或者立方体为主
包裹住砂颗粒
团聚效果更为明显。因此
就钙源而言
硝酸钙的微生物固化效果较氯化钙更好。
Microbial induced carbonate precipitation(MICP)
an environmental-friendly foundation treatment technology
can effectively improve the engineering performance of soil.Different nutrient solution components have a significant impact on the stabilization effect.This paper showed the effect of calcium chloride and calcium nitrate
which were chosen as the calcium sources in nutrient solution
on physico-mechanical properties of bio-cemented sand by penetration test
dry density test
water absorption test
and unconfined compressive strength test
respectively.The morphological differences of calcium carbonate precipitates from the two calcium sources were compared by scanning electron microscopy.Results showed that the overall density of the stabilized sand columns with calcium nitrate was higher
and the fractures after failure were smaller than those in calcium chloride stabilized sand under either saturated or dry conditions.Calcium carbonate in the stabilized sand columns with calcium nitrate had lower permeability coefficient and water absorption
and higher dry density and unconfined compressive strength.Less calcium carbonate precipitates in columns cultured with calcium chloride
as globular grains scattering on the sand surface
while more globular and cube-shaped calcium carbonate precipitates in columns cultured with calcium nitrate
which wraps sand particles
showing more significant agglomeration.Consequently
calcium nitrate is more efficient in culturing microorganisms than calcium chloride in terms of calcium source.
不同固化方式对微生物固化砂土强度影响的研究 [J]. 梁仕华,戴君,李翔,牛九格,黄郁东,尹应梅. 工业建筑 . 2017(02)
营养盐浓度对胶结砂试样物理力学特性试验研究 [J]. 王绪民,郭伟,余飞,易朝,孙霖. 岩土力学 . 2016(S2)
颗粒粒径对微生物固化砂土强度影响的试验研究 [J]. 崔明娟,郑俊杰,赖汉江. 岩土力学 . 2016(S2)
微生物岩土技术的研究进展 [J]. 何稼,楚剑,刘汉龙,高玉峰,李冰. 岩土工程学报 . 2016(04)
化学处理方式对微生物固化砂土强度影响研究 [J]. 崔明娟,郑俊杰,章荣军,苗晨曦,张君洁. 岩土力学 . 2015(S1)
营养盐对微生物加固可液化砂土效果的探讨 [J]. 韩智光,程晓辉. 工业建筑 . 2015(07)
微生物诱导碳酸钙沉积技术治理某地下室渗漏的现场试验 [J]. 张越,郭红仙,程晓辉,李萌. 工业建筑 . 2013(12)
细菌诱导碳酸钙沉积修复混凝土裂缝 [J]. 李沛豪,屈文俊. 土木工程学报 . 2010(11)
Significant indicators for biomineralisation in sand of varying grain sizes [J] . Navdeep Kaur Dhami,M. Sudhakara Reddy,Abhijit Mukherjee. Construction and Building Materials . 2016
Role of calcium sources in the strength and microstructure of microbial mortar [J] . Y. Zhang,H.X. Guo,X.H. Cheng. Construction and Building Materials . 2015
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