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同时去除烟气中的SO₂和痕量As₂O₃:机理、动力学研究及主要气体对砷捕获的影响

Simultaneous removal of SO2 and trace As2O3 from flue gas: mechanism, kinetics study, and effect of main gases on arsenic capture.

作者信息

Li Yuzhong, Tong Huiling, Zhuo Yuqun, Li Yan, Xu Xuchang

机构信息

Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Environ Sci Technol. 2007 Apr 15;41(8):2894-900. doi: 10.1021/es0618494.

Abstract

Sulfur dioxide (SO2) and trace elements are pollutants derived from coal combustion. This study focuses on the simultaneous removal of S02 and trace arsenic oxide (As2O3) from flue gas by calcium oxide (CaO) adsorption in the moderate temperature range. Experiments have been performed on a thermogravimetric analyzer (TGA). The interaction mechanism between As2O3 and CaO is studied via XRD detection. Calcium arsenate [Ca3(AsO4)2] is found to be the reaction product in the range of 600-1000 degrees C. The ability of CaO to absorb As2O3 increases with the increasing temperature over the range of 400-1000 degrees C. Through kinetics analysis, it has been found that the rate constant of arsenate reaction is much higher than that of sulfate reaction. SO2 presence does not affect the trace arsenic capture either in the initial reaction stage when CaO conversion is relatively low or in the later stage when CaO conversion is very high. The product of sulfate reaction, CaS04, is proven to be able to absorb As2O3. The coexisting CO2 does not weaken the trace arsenic capture either.

摘要

二氧化硫(SO₂)和微量元素是煤炭燃烧产生的污染物。本研究聚焦于在中温范围内通过氧化钙(CaO)吸附同时去除烟气中的SO₂和痕量氧化砷(As₂O₃)。实验在热重分析仪(TGA)上进行。通过X射线衍射(XRD)检测研究了As₂O₃与CaO之间的相互作用机理。发现砷酸钙[Ca₃(AsO₄)₂]是600 - 1000摄氏度范围内的反应产物。在400 - 1000摄氏度范围内,CaO吸收As₂O₃的能力随温度升高而增强。通过动力学分析发现,砷酸盐反应的速率常数远高于硫酸盐反应的速率常数。无论是在CaO转化率相对较低的初始反应阶段,还是在CaO转化率非常高的后期阶段,SO₂的存在都不会影响痕量砷的捕获。硫酸盐反应的产物CaSO₄被证明能够吸收As₂O₃。共存的CO₂也不会削弱痕量砷的捕获。

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