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风沙冲蚀与碳化耦合作用下风积沙粉体混凝土耐久性能 被引量:7
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作者 李根峰 申向东 +1 位作者 邹欲晓 高波 《农业工程学报》 EI CAS CSCD 北大核心 2018年第17期158-166,共9页
该研究以风积沙粉体为水泥替代材料的风积沙粉体混凝土为研究对象,设计风沙冲蚀-碳化、碳化-风沙冲蚀2种工况,探讨其在风沙冲蚀、碳化环境下的劣化机理及耐久性能。结果表明,风沙冲蚀时,90o冲蚀角作用时以撞击作用为主,产生冲蚀坑洞,45&... 该研究以风积沙粉体为水泥替代材料的风积沙粉体混凝土为研究对象,设计风沙冲蚀-碳化、碳化-风沙冲蚀2种工况,探讨其在风沙冲蚀、碳化环境下的劣化机理及耐久性能。结果表明,风沙冲蚀时,90o冲蚀角作用时以撞击作用为主,产生冲蚀坑洞,45°冲蚀角作用时以削切作用为主,产生冲蚀沟壑,且风沙冲蚀破坏混凝土表面水泥石结构,可使碳化深度增加3倍以上;碳化作用时,普通混凝土碳化时是由于氢氧化钙和水化硅酸钙发生脱钙反应,风积沙粉体混凝土则是由于氢氧化钙、水化硅酸钙和钙矾石发生脱钙反应,且由于碳化产物自身的膨胀作用使混凝土变的疏松,使风沙冲蚀后质量损失增加1.6倍以上;风积沙粉体混凝土内部孔径在20 nm以下的无害孔的比例多于普通混凝土21.37个百分点,200 nm以上多害孔少于普通混凝土13.93个百分点,其劣化显著性低于普通混凝土;相对于单一工况,风沙冲蚀、碳化耦合作用下劣化显著性更高,且风沙冲蚀-碳化耦合作用劣化显著性低于碳化-风沙冲蚀耦合作用,风沙冲蚀-碳化耦合作用后的10~15 mm范围内出现碳化区域、碳化产物发生变化(生成硫酸钙)及非碳化区域的混合区,且风沙冲蚀-碳化耦合作用后风积沙粉体混凝土孔隙度下降0.47%,20 nm以下的无害孔的比例高出普通混凝土25.15%。 展开更多
关键词 混凝土 耐久性 孔隙度 风积沙 风沙冲蚀 碳化 冲蚀角 脱钙反应
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Acid leaching decarbonization and following pressure oxidation of carbonic refractory gold ore 被引量:1
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作者 张杜超 肖庆凯 +3 位作者 刘伟锋 陈霖 杨天足 刘又年 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第7期1584-1590,共7页
Carbonate decomposition of carbonic refractory gold ore and the following pressure oxidation were studied.In the carbonate decomposition procedure,the effects of liquid-to-solid ratio and reaction time on decompositio... Carbonate decomposition of carbonic refractory gold ore and the following pressure oxidation were studied.In the carbonate decomposition procedure,the effects of liquid-to-solid ratio and reaction time on decomposition ratio of carbonate were investigated.The experimental result shows that the decomposition ratio of carbonate is 98.24%under the conditions of liquid-to-solid ratio of 5:1,Fe^(3+)concentration of 20 g/L,sulfuric acid concentration of 20 g/L,reaction temperature of 80 ℃ and reaction time of 2 h.Then,the slurry obtained from carbonate decomposition was put into the titanium autoclave for pressure oxidation leaching.Effects of liquid-to-solid ratio,temperature,time and oxygen partial pressure on sulfur oxidation ratio were studied during pressure oxidation.With the prolonged time,pyrite and arsenopyrite are oxidized to ferric subsulfate,hydrated ferric sulfate and jarosite,resulting in the increasing residue ratio.The residue ratio and the sulfur content in the residue can be decreased by ferric subsulfate dissolution.The oxidation ratio of the sulfur is 99.35% under the conditions of oxidation time of 4 h,temperature of 210 ℃,oxygen partial pressure of 0.8 MPa and stirring speed of 600 r/min. 展开更多
关键词 carbonic refractory gold ore carbonate decomposition pressure oxidation ferric subsulfate dissolution
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