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基于铝基吸附剂的烟道气汞测量

Measurement of mercury in flue gas based on an aluminum matrix sorbent.

作者信息

Wang Juan, Xu Wei, Wang Xiaohao, Wang Wenhua

机构信息

School of Environmental Science & Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.

出版信息

ScientificWorldJournal. 2011;11:2469-79. doi: 10.1100/2011/756264. Epub 2011 Dec 26.

Abstract

The measurement of total mercury in flue gas based on an economical aluminum matrix sorbent was developed in this paper. A sorbent trap consisted of three tubes was employed to capture Hg from flue gas. Hg trapped on sorbent was transferred into solution by acid leaching and then detected by CVAAS. Hg adsorbed on sorbent was recovered completely by leaching process. The 87.7% recovery of Hg in flue gas by tube 1 and tube 2 was obtained on the equipment of coal combustion and sampling in lab. In order to evaluate the ability to recover and accurately quantify Hg(0) on the sorbent media, the analytical bias test on tube 3 spiked with Hg(0) was also performed and got the average recovery of 97.1%. Mercury measurements based on this method were conducted for three coal-fired power plants in China. The mercury in coal is distributed into bottom ash, electrostatic precipitator (ESP) ash, wet flue gas desulfurization (WFGD) reactant, and flue gas, and the relative distribution varied depending on factors such as the coal type and the operation conditions of plants. The mercury mass balances of three plants were also calculated which were 91.6%, 77.1%, and 118%, respectively. The reliability of this method was verified by the Ontario Hydro (OH) method either in lab or in field.

摘要

本文开发了一种基于经济的铝基吸附剂测量烟气中总汞的方法。采用由三根管子组成的吸附剂捕集器从烟气中捕集汞。吸附在吸附剂上的汞通过酸浸转移到溶液中,然后用冷原子吸收光谱法(CVAAS)进行检测。通过浸出过程,吸附在吸附剂上的汞被完全回收。在实验室的煤炭燃烧和采样设备上,1号管和2号管对烟气中汞的回收率达到了87.7%。为了评估吸附剂介质对Hg(0)的回收和准确定量能力,还对加标Hg(0)的3号管进行了分析偏差测试,平均回收率为97.1%。基于该方法对中国的三家燃煤电厂进行了汞测量。煤中的汞分布到底灰、静电除尘器(ESP)灰、湿法烟气脱硫(WFGD)反应物和烟气中,其相对分布因煤种和电厂运行条件等因素而异。还计算了三家电厂的汞质量平衡,分别为91.6%、77.1%和118%。该方法的可靠性在实验室和现场均通过安大略水电(OH)法得到了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/043f/3253588/fb580647a27b/TSWJ11-756264.001.jpg

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