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两株嗜冷碳酸钙矿化菌对大理石表面修复效果研究 被引量:5
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作者 李琼芳 何鑫 +2 位作者 陈超 杨清清 吕治州 《人工晶体学报》 EI CAS CSCD 北大核心 2018年第1期172-178,共7页
细菌诱导的矿化沉积是一种有效修复和保护石质文物的方法。为探究生物矿化法应用于寒冷地区石质文物表面的修复效果,本文在黄龙高寒钙华沉积区分离到2株具高产碳酸酐酶(CA)活性的嗜冷型细菌菌株,并在大理石试件表面进行诱导矿化沉积。采... 细菌诱导的矿化沉积是一种有效修复和保护石质文物的方法。为探究生物矿化法应用于寒冷地区石质文物表面的修复效果,本文在黄龙高寒钙华沉积区分离到2株具高产碳酸酐酶(CA)活性的嗜冷型细菌菌株,并在大理石试件表面进行诱导矿化沉积。采用p H计、SEM、XRD等仪器,通过对矿化沉积过程中p H值、试件表面矿化沉积变化量、试件表面矿化沉积物的晶型晶貌、试件表面吸水性与透气性、耐酸度等的测定来表征嗜冷型碳酸酐酶产生菌在大理石试件表面矿化沉积的修复效果。结果表明,无论是存活菌还是灭活菌都在大理石试件表面生成了致密的碳酸钙矿化层,均为方解石晶型,形貌受菌体调控,活菌生成的矿化层更为均一和致密,长期作用比短期作用效果更明显,具有矿化层的试件在吸水性、透气性和耐酸度上都体现出更具防腐蚀的能力。其结果可为石质文物的修复提供一定的理论依据。 展开更多
关键词 嗜冷型碳酸酐酶产生菌 大理石 碳酸钙矿化沉积 文物表面修复
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Field trial on use of soybean crude extract for carbonate precipitation and wind erosion control of sandy soil 被引量:10
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作者 GAO Yu-feng MENG Hao +2 位作者 HE Jia QI Yong-shuai HANG Lei 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第11期3320-3333,共14页
Wind erosion is a major cause of land desertification and sandstorm formation in arid and semi-arid areas.The objective of this study was to evaluate the potential of soybeans crude extract induced calcium carbonate p... Wind erosion is a major cause of land desertification and sandstorm formation in arid and semi-arid areas.The objective of this study was to evaluate the potential of soybeans crude extract induced calcium carbonate precipitation(SICP)on reducing wind erosion risk of sandy soil.Field tests were carried out in Ulan Buh Desert,Ningxia Hui Autonomous Region,China.Results showed that the SICP method could significantly enhance the surface strength and wind erosion resistance of the topsoil.The optimal cementation solution(urea-CaCl2)concentration and spraying volume,according to experiments conducted on sandy land,were 0.2 mol/L and 4 L/m^2,respectively.Under this condition,the CaCO3 content was approximately 0.45%,the surface strength of sandy soil could reach 306.2 kPa,and the depth of wind erosion was approximately zero,after 30 d completion of SICP treatment.Soil surface strength declined with the increase of time,and long-term sand fixation effects of SICP treatment varied depending on topography.Whereas wind erosion in the top area of the windward slope was remarkable,sandy soils on the bottom area of the windward slope still maintained a relatively high level of surface strength and a low degree of wind erosion 12 month after SICP treatment.Scanning electron microscopy(SEM)tests with energy dispersive X-ray(EDX)confirmed the precipitation of CaCO3 and its bridge effect.These findings suggested that the SICP method is a promising candidate to protect sandy soil from wind erosion in desert areas. 展开更多
关键词 soybeans crude extract induced calcium carbonate precipitation(SICP) biocementation sandy soil erosion controll field tests
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