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采用气相汞还原法测定燃煤锅炉烟气中的总汞含量。

Gas-phase mercury reduction to measure total mercury in the flue gas of a coal-fired boiler.

作者信息

Meischen Sandra J, Van Pelt Vincent J, Zarate Eugene A, Stephens Edward A

机构信息

Tennessee Valley Authority, Muscle Shoals, Alabama 35662, USA.

出版信息

J Air Waste Manag Assoc. 2004 Jan;54(1):60-7. doi: 10.1080/10473289.2004.10470886.

Abstract

Gaseous elemental and total (elemental + oxidized) mercury (Hg) in the flue gas from a coal-fired boiler was measured by a modified ultraviolet (UV) spectrometer. Challenges to Hg measurement were the spectral interferences from other flue gas components and that UV measures only elemental Hg. To eliminate interference from flue gas components, a cartridge filled with gold-coated sand removed elemental Hg from a flue gas sample. The Hg-free flue gas was the reference gas, eliminating the spectral interferences. To measure total Hg by UV, oxidized Hg underwent a gas-phase, thermal-reduction in a quartz cell heated to 750 degrees C. Simultaneously, hydrogen was added to flash react with the oxygen present forming water vapor and preventing Hg re-oxidation as it exits the cell. Hg concentration results are in parts per billion by volume Hg at the flue gas oxygen concentration. The modified Hg analyzer and the Ontario Hydro method concurrently measured Hg at a field test site. Measurements were made at a 700-MW steam turbine plant with scrubber units and selective catalytic reduction. The flue gas sampled downstream of the selective catalytic reduction contained 2100 ppm SO2 and 75 ppm NOx. Total Hg measured by the Hg analyzer was within 20% of the Ontario Hydro results.

摘要

采用改良型紫外光谱仪对燃煤锅炉烟气中的气态元素汞和总汞(元素汞+氧化汞)进行了测量。汞测量面临的挑战包括来自其他烟气成分的光谱干扰以及紫外光谱仅能测量元素汞。为消除烟气成分的干扰,一个装有镀金砂的滤筒从烟气样品中去除了元素汞。不含汞的烟气作为参比气体,消除了光谱干扰。为通过紫外光谱测量总汞,氧化汞在加热至750摄氏度的石英池中进行气相热还原。同时,加入氢气与存在的氧气快速反应生成水蒸气,防止汞在离开反应池时再次氧化。汞浓度结果以烟气氧气浓度下的体积十亿分比表示汞含量。在一个现场测试点,改良型汞分析仪和安大略水电法同时对汞进行了测量。测量在一个配备洗涤器单元和选择性催化还原装置的700兆瓦蒸汽轮机发电厂进行。在选择性催化还原装置下游采集的烟气中含有2100 ppm的二氧化硫和75 ppm的氮氧化物。汞分析仪测量的总汞与安大略水电法的测量结果误差在20%以内。

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