›› 2016, Vol. 32 ›› Issue (3): 73-78.

• 其它 • 上一篇    

不同性质石灰石高温煅烧后的石灰活性度研究

汪筱渊,薛正良,李建立   

  1. 武汉科技大学
  • 收稿日期:2015-10-30 修回日期:2015-11-25 接受日期:1900-01-01 出版日期:2016-06-05 发布日期:2016-06-15
  • 通讯作者: 薛正良 E-mail:xuezhengliang@wust.edu.cn
  • 基金资助:
    国家自然科学基金资助项目

Research on the reactivity of lime by calcining limestone with different properties at high temperature

  1. 1.
    2. wuhan university of science and technology
  • Received:2015-10-30 Revised:2015-11-25 Accepted:1900-01-01 Online:2016-06-05 Published:2016-06-15

摘要: 研究了不同性质的石灰石在远高于活性石灰最佳煅烧温度条件下快速煅烧时,得到的石灰的活性度与石灰石原料物理化学特性之间的关系。用盐酸滴定法测定石灰的活性度,用XRD测定石灰石和石灰的物相组成,在扫描电镜下观察石灰石中CaCO3的晶粒形貌和石灰中CaO晶粒的微观结构变化。试验结果表明:石灰石中的CaCO3晶粒度越小,高温快速煅烧所得石灰中CaO晶粒烧结致密化程度越轻,石灰活性度越高;在1450℃下将高温煅烧时间延长至15min时,不同CaCO3晶粒度的石灰石煅烧出的石灰中的CaO晶粒均已融合长大,活性度明显下降;石灰石中的SiO2对煅烧产物的活性度影响很大,SiO2含量高时,高温快速煅烧后石灰的活性度显著降低。因此,石灰石中的CaCO3晶粒度越小、SiO2含量越低,越有利于在高温快速煅烧条件下获得高活性度的石灰。

关键词: 石灰石, 石灰活性度, 高温, 快速煅烧, 晶粒度

Abstract: The relationship between physical and chemical properties of limestone and the activity of lime was studied by rapid calcining the limestone at the temperature, which was much higher than the typical calcination temperature of active lime. The lime activity was tested by the titration of hydrochloric acid, and the phase compositions of limestone and lime were tested by XRD. The grain size of CaCO3 and the microstructure variation of CaO grains were analyzed by SEM. The results showed that the smaller CaCO3 grain size of the limestone resulted in better sintered situation of CaO and higher lime activity after calcining the limestone rapidly at high temperature. When prolonging the calcination time to 15min at 1450℃, the CaO grains in the lime that obtained by calcining the limestone with different CaCO3 grain size had fused and grown. The fusion and growth of CaO grains led to the significant decrease of the lime activity. The lime activity was greatly influenced by the content of SiO2 in the limestone. When the content of SiO2 was higher, the lime activity after calcining decreased remarkably. Therefore, the smaller CaCO3 grain size and the lower content of SiO2 of the limestone lead to the higher activity of lime after calcining the limestone rapidly at high temperature.

Key words: limestone, lime reactivity, high temperature, rapid calcinaion, grain size

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