首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Adsorption and oxidation of mercury in tail-end SCR-DeNOx plants-Bench scale investigations and speciation experiments
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Adsorption and oxidation of mercury in tail-end SCR-DeNOx plants-Bench scale investigations and speciation experiments

机译:尾部SCR-DeNOx植物中汞的吸附和氧化-实验研究和物种形成实验

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摘要

The results of a bench scale investigation on mercury adsorption and oxidation under the conditions of tail-end DeNOx plants are reported.It was shown that HC1 has a strong influence on mercury adsorption as well as mercury oxidation.Adsorption of elemental,mercury and HgCl2 on a DeNOx catalyst with 2.5 wt.% V2O5 is appreciably in flue gases that contain HC1 in concentrations below 0.5 mg/m3.Mercury adsorption increases linearly with the mercury concentration in the flue gas.The amount of HgCl2 adsorbed on the catalysts is higher than of elemental mercury,under otherwise comparable conditions.Mercury adsorption depends on the V2O5 content of the DeNOx catalyst.The nature of the adsorbed mercury species was investigated by sequential chemical extraction and X-ray absorption fine structure spectroscopy.According to these methods mercury does form a Hg-O bond on the surface of the catalysts.In terms of regeneration of mercury loaded catalysts it is of interest,that more than two-third of the adsorbed mercury can be removed by washing the DeNOx catalyst at room temperature with a dilute solution containing acetic and hydrochloric acid.In the presence of higher concentrations of HC1 in the flue gas elemental mercury is no longer adsorbed but oxidized by DeNOx catalysts.The rate of oxidation decreases with increasing temperature.NO has compared to HC1 only a slightly accelerating influence,whereas NH3 shows a small detrimental effect.The simultaneous presence of NO and NH3 inhibits the HC1 assisted oxidation of elemental mercury strongly.
机译:报道了在尾部DeNOx装置条件下进行汞吸附和氧化的台式研究结果,结果表明HC1对汞的吸附以及汞的氧化都有很强的影响。元素,汞和HgCl2的吸附在HC1浓度低于0.5 mg / m3的烟道气中,V2O5含量为2.5 wt%的DeNOx催化剂相当明显。汞的吸附量随烟道气中的汞浓度线性增加,吸附在催化剂上的HgCl2的含量高于汞的吸附取决于DeNOx催化剂中V2O5的含量。通过顺序化学萃取和X射线吸收精细结构光谱法研究了吸附汞的性质。催化剂表面上的Hg-O键。就汞负载型催化剂的再生而言,令人感兴趣的是,超过三分之二的汞通过在室温下用含乙酸和盐酸的稀溶液洗涤DeNOx催化剂可以除去吸附的汞。在烟气中存在较高浓度的HCl的情况下,单质汞不再被吸附,而是被DeNOx催化剂氧化。随着温度的升高,NO的含量降低。NO与HC1相比仅具有轻微的加速作用,而NH3的有害作用很小。NO和NH3同时存在会强烈抑制HC1辅助元素汞的氧化。

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