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有机钙孔隙结构与脱硫性能研究
引用本文:肖海平,李惊涛,周俊虎,孙保民.有机钙孔隙结构与脱硫性能研究[J].环境科学,2008,29(8):2361-2365.
作者姓名:肖海平  李惊涛  周俊虎  孙保民
作者单位:1. 华北电力大学电站设备状态监测与控制教育部重点实验室,北京,102206
2. 浙江大学能源清洁利用国家重点实验室,杭州,310027
3. 杭州广翰能源科技有限公司,杭州,310027
基金项目:国家重点基础研究发展计划(973计划),教育部跨世纪优秀人才培养计划
摘    要:在定碳炉上对有机钙进行煅烧试验,利用氮吸附仪测定样品的微观孔隙结构,采用智能定硫仪对有机钙进行了脱硫实验研究.结果表明.900℃下煅烧.醋酸钙镁的比表面积高达46.6 m2/g,大约为普通石灰石比表面积的4倍.醋酸钙比表面积主要分布在孔径小于5 nm的微孔和中孔,醋酸钙镁比表面积主要集中在孔径为5 nm左右的中孔.醋酸钙的烧结主要发生在微孔和中孔,醋酸钙镁的烧结发生在整个孔径分布区域,有机钙表现出良好的抗烧结特性.1 000℃下按钙硫比为1添加钙基,有机钙的脱硫效率为68.28%-75.55%.比普通石灰石高1倍以上.煅烧形成的良好孔隙结构使得有机钙具有较高的脱硫效果.

关 键 词:有机钙  醋酸钙镁  醋酸钙  孔隙结构  脱硫
修稿时间:2007/11/26 0:00:00

Pore Structure and Desulfurization Characteristics of Organic Calcium
Xiao Hai-ping,Li Jing-tao,Zhou Jun-hu,Sun Bao-min,Ye Li-ping.Pore Structure and Desulfurization Characteristics of Organic Calcium[J].Chinese Journal of Environmental Science,2008,29(8):2361-2365.
Authors:Xiao Hai-ping  Li Jing-tao  Zhou Jun-hu  Sun Bao-min  Ye Li-ping
Institution:Key Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, North China Electric Power University, Beijing 102206, China. dr_xiaohaiping@yahoo.com.cn
Abstract:Calcination of oganic calcium was carried out in fixed bed, pore structure of tested sample was analyzed with auto-adsorption analyzer, and desulfurization experiment was studied by intelligent sulfur determination analyzer. Specific surface area of calcium magnesium acetate (CMA) was 46.6 m2/g after calcination at 900 degrees C, almost four times of that of limestone. Specific surface area of calcium acetate (CA) were mainly made up of pore of diameter less than 5 nm, and those of CMA was chiefly contributed by middle pore of diameter about 5 nm. Agglomeration of CA occurred in pore of diameter less than 5 nm, while CMA was sintered in whole range of pore size distribution. Agglomeration of organic calcium were slighter. Desulfurization efficiency of organic calcium ranged from 62.28% to 75.55% at 1000 degrees C as calcium/sulfur ratio being one, which was one time more than that of limestone. Perfect pore structure of organic calcium contributes to higher desulfurization efficiency.
Keywords:organic calcium  calcium magnesium acetate  calcium acetate  pore structure  desulfurization
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