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作 者:张建伟[1,2] 黄小山 边汉亮 岳建伟 ZHANG Jianwei;HUANG Xiaoshan;BIAN Hanliang;YUE Jianwei(School of Civil Engineering and Architecture, Henan University, Kaifeng, Henan 475004, China;Henan Provincial Research Center of Engineering on Intelligent Construction of Rail Transit, Kaifeng, Henan 475004, China)
机构地区:[1]河南大学土木建筑学院,河南开封475004 [2]河南省轨道交通智能建造工程技术中心,河南开封475004
出 处:《中国科技论文》2021年第10期1035-1039,1054,共6页China Sciencepaper
基 金:国家自然科学基金资助项目(51508163);河南省科技厅科技攻关重点项目(192102310226);河南省高等学校青年骨干教师培养计划项目(2019GGJS041)。
摘 要:为研究诱导碳酸钙技术修复与加固砖石古建筑的效果,采用胶结液中添加脱脂奶粉的方法对微生物诱导碳酸钙沉淀(microbially induced carbonate precipitation,MICP)技术和酶诱导碳酸钙沉淀(enzyme induced carbonate precipitation,EICP)技术进行改良,对比分析碳酸钙的沉淀质量、X射线衍射(X-ray diffraction,XRD)下的晶型、扫描电子显微镜(scanning electron microscope,SEM)下的晶貌及砖石抗折强度的修复效果。结果表明:EICP生成碳酸钙沉淀质量最多;脱脂奶粉作为添加剂,能够改变MICP的碳酸钙晶型,使原有8.3%球霰石的沉淀完全转化为方解石沉淀;通过抗折试验得到MICP技术能修复与加固古建筑砖石,特别是在添加脱脂奶粉后,其抗折强度能达到原有砖石抗折强度的121.69%。因此,添加脱脂奶粉的MICP技术更适用于砖石古建筑的修复与加固。Microbially induced carbonate precipitation(MICP)technology and enzyme induced carbonate precipitation(EICP)technology were improved by adding skimmed milk powder into the cementing solution to repair and strengthen the ancient masonry buildings with induced calcium carbonate technology.The precipitation quality of calcium carbonate,crystal shape under X-ray diffraction(XRD),crystal appearance under scanning electron microscope(SEM)and restoration effect of brick and stone fracture strength were compared and analyzed.The results show that the quality of calcium carbonate precipitation generated by EICP is the highest.As an additive,skimmed milk powder can change the calcium carbonate crystal shape of MICP and completely convert the original 8.3%aragonite precipitation into calcite precipitation.The MICP technology can repair and reinforce ancient architectural bricks and stones through folding resistance test.Especially after adding skimmed milk powder,it reached 121.69%of the original brick and stone folding strength.Therefore,MICP technology,as an additive of skimmed milk powder,is more suitable for the restoration and reinforcement of brick and stone ancient buildings.
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