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使用活性炭对汞进行气流床吸附。

Entrained-flow adsorption of mercury using activated carbon.

作者信息

Serre S D, Gullett B K, Ghorishi S B

机构信息

U.S. Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, North Carolina, USA.

出版信息

J Air Waste Manag Assoc. 2001 May;51(5):733-41. doi: 10.1080/10473289.2001.10464302.

Abstract

Bench-scale experiments were conducted in a flow reactor to simulate entrained-flow capture of elemental mercury (Hg0) by activated carbon. Adsorption of Hg0 by several commercial activated carbons was examined at different C:Hg ratios (by weight) (350:1-29,000:1), particle sizes (4-44 microns), Hg0 concentrations (44, 86, and 124 ppb), and temperatures (23-250 degrees C). Increasing the C:Hg ratio from 2100:1 to 11,000:1 resulted in an increase in removal from 11 to 30% for particle sizes of 4-8 microns and a residence time of 6.5 sec. Mercury capture increased with a decrease in particle size. At 100 degrees C and an Hg0 concentration of 86 ppb, a 20% Hg0 reduction was obtained with 4- to 8-micron particles, compared with only a 7% reduction for 24- to 44-micron particles. Mercury uptake decreased with an increase in temperature over a range of 21-150 degrees C. Only a small amount of the Hg0 uptake capacity is being utilized (less than 1%) at such short residence times. Increasing the residence time over a range of 3.8-13 sec did not increase adsorption for a lignite-based carbon; however, increasing the time from 3.6 to 12 sec resulted in higher Hg0 removal for a bituminous-based carbon.

摘要

在流动反应器中进行了实验室规模的实验,以模拟活性炭对元素汞(Hg0)的携带流捕集。研究了几种商业活性炭在不同的碳汞比(重量比)(350:1 - 29000:1)、粒径(4 - 44微米)、Hg0浓度(44、86和124 ppb)以及温度(23 - 250摄氏度)下对Hg0的吸附情况。对于粒径为4 - 8微米且停留时间为6.5秒的情况,将碳汞比从2100:1增加到11000:1会使汞去除率从11%提高到30%。汞捕集量随粒径减小而增加。在100摄氏度和Hg0浓度为86 ppb时,4 - 8微米粒径的颗粒可使Hg0减少20%,而24 - 44微米粒径的颗粒仅使Hg0减少7%。在21 - 150摄氏度范围内,汞的吸附量随温度升高而降低。在如此短的停留时间内,仅利用了少量的Hg0吸附容量(小于1%)。将停留时间在3.8 - 13秒范围内增加,对于褐煤基活性炭,汞的吸附量并未增加;然而,将时间从3.6秒增加到12秒,对于烟煤基活性炭,Hg0的去除率更高。

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