首页> 外国专利> METHOD FOR REMOVING NITROGEN OXIDES AND DIOXIN FROM FLUE GAS USING VANADIUM/TITANIA CATALYST COMPRISING NATURAL MANGANESE ORE .

METHOD FOR REMOVING NITROGEN OXIDES AND DIOXIN FROM FLUE GAS USING VANADIUM/TITANIA CATALYST COMPRISING NATURAL MANGANESE ORE .

机译:作者:肖。,冶金丛刊METALLURGICAL COLLECTIONS含天然锰矿的钒/二氧化钛催化剂脱除烟气中氮氧化物和二恶英的方法。

摘要

Disclosed is a vanadium/titania-based catalyst including natural manganese ore for removing nitrogen oxides and dioxin in a wide operating temperature range and a method of using the same. Specifically, this invention pertains to a vanadium/titania (V/TiO2)-based catalyst including natural manganese ore for removing nitrogen oxides and dioxin in a wide operating temperature range, in which the WTiO2 catalyst for selective catalytic reduction of nitrogen oxides and removal of dioxin contained in flue gas includes 5-30 wt% of natural manganese ore, thus exhibiting excellent activity of removing nitrogen oxides even in the low temperature range and of removing dioxin at the same time, and to a method of using the same. The catalyst of this invention has good thermal stability and thus can simultaneously manifest nitrogen oxides removal performance and dioxin removal performance superior to conventional vanadium/titania catalysts in a wide temperature range (150~450°C) including not only a high temperature range but also a low temperature range. As well, since unreacted ammonia emissions can be reduced, the formation of an ammonium salt is prevented and ammonium nitrate is decomposed at low temperatures, thus solving the problems of inactivation of the catalyst due to catalytic poisoning and of a shortened lifetime thereof, leading to economic benefits.
机译:本发明公开了一种钒/二氧化钛基催化剂及其使用方法,该催化剂包括用于在宽的工作温度范围内除去氮氧化物和二恶英的天然锰矿石。具体地,本发明涉及基于钒/二氧化钛(V / TiO 2)的催化剂,其包括在宽的工作温度范围内用于除去氮氧化物和二恶英的天然锰矿石,其中用于选择性催化还原氮氧化物和除去二氧化钛的WTiO 2催化剂。烟道气中包含的二恶英包括5-30wt%的天然锰矿石,因此即使在低温范围内,也显示出优异的脱除氮氧化物的活性,并且同时具有脱除二恶英的活性,以及​​使用该方法的活性。本发明的催化剂具有良好的热稳定性,因此不仅在高温范围内,而且在宽温度范围(150〜450℃)下,可以同时表现出优于常规钒/二氧化钛催化剂的氮氧化物去除性能和二恶英去除性能。低温范围。同样,由于可以减少未反应的氨排放,因此防止了铵盐的形成并且在低温下分解了硝酸铵,从而解决了由于催化中毒而导致催化剂失活以及催化剂寿命缩短的问题。经济效益。

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