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与制砖过程相关的土壤高温氟排放研究。

Study on fluoride emission from soils at high temperature related to brick-making process.

作者信息

Xie Z M, Wu W H, Xu J M

机构信息

College of Environmental and Resource Science, Zhejiang University, Hangzhou 310029, PR China.

出版信息

Chemosphere. 2003 Feb;50(6):763-9. doi: 10.1016/s0045-6535(02)00217-5.

Abstract

Characteristics of fluoride emission from 12 soils at temperatures of 400-1,100 degrees C related to the brick-making process were studied. The results obtained in this study indicate that fluoride emission as gaseous HF and SiF4 was related to the firing temperature, soil total fluoride content, soil composition and calcium compounds added to soils. Soils began to release fluoride at temperatures between 500 and 700 degrees C. Marked increases of the average fluoride mission rate from 57.2% to 85.4% of soil total fluoride were noticed as the heating temperature was increased from 700 to 1,100 degrees C. It was found that the major proportion (over 50%) of the soil total fluoride was emitted from soils at approximate 800 degrees C. The amount of fluoride released into the atmosphere when heated depended on the total fluoride contents in the soils. Correlation analysis showed that the soil composition, such as cation exchange capacity, exchangeable calcium and CaCO3, had some influence on fluoride emission below 900 degrees C, but had no influence at temperatures above 900 degrees C. Addition of four calcium compounds (CaO, CaCO3, Ca(OH)2, and CaSO4) at 1.5% by weight raised the temperature at which fluoride began to be released to 700 degrees C. The greatest decrease in fluoride emission among the four calcium compound treatments was found with CaCO3.

摘要

研究了12种土壤在400-1100摄氏度温度下与制砖过程相关的氟化物排放特征。本研究获得的结果表明,气态HF和SiF4形式的氟化物排放与烧制温度、土壤总氟含量、土壤组成以及添加到土壤中的钙化合物有关。土壤在500至700摄氏度之间开始释放氟化物。当加热温度从700摄氏度提高到1100摄氏度时,平均氟排放率从土壤总氟的57.2%显著增加到85.4%。发现土壤总氟的大部分(超过50%)在约800摄氏度时从土壤中排放出来。加热时释放到大气中的氟化物量取决于土壤中的总氟含量。相关分析表明,土壤组成,如阳离子交换容量、可交换钙和CaCO3,在900摄氏度以下对氟化物排放有一定影响,但在900摄氏度以上的温度下没有影响。以1.5%的重量添加四种钙化合物(CaO、CaCO3、Ca(OH)2和CaSO4)将氟化物开始释放的温度提高到700摄氏度。在四种钙化合物处理中,发现CaCO3处理的氟化物排放减少最多。

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