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CaO对汞的选择性吸附及SO_2毒化特性 被引量:4
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作者 李春峰 段钰锋 +3 位作者 汤红健 朱纯 郑逸武 韦红旗 《化工学报》 EI CAS CSCD 北大核心 2017年第9期3565-3572,共8页
利用Ca(NO_3)_2作为前体,SiO_2为载体,制备了一种担载型CaO吸附剂,在固定床实验装置上分别研究了该吸附剂对元素汞(Hg0)和氯化汞(HgCl_2)等不同形态汞的选择性吸附性能,以及SiO_2对CaO吸附剂汞形态吸附过程的影响,同时结合程序升温脱附... 利用Ca(NO_3)_2作为前体,SiO_2为载体,制备了一种担载型CaO吸附剂,在固定床实验装置上分别研究了该吸附剂对元素汞(Hg0)和氯化汞(HgCl_2)等不同形态汞的选择性吸附性能,以及SiO_2对CaO吸附剂汞形态吸附过程的影响,同时结合程序升温脱附和原位红外漫反射表征技术,深入探究了CaO的选择性吸附机理及SiO_2毒化机制。汞形态吸附实验结果表明,在纯N2气氛和掺杂SiO_2气氛下,CaO对Hg0均保持了接近100%的穿透率,而对HgCl_2在两种气氛下则分别表现出66.0%和60.3%的吸附效率,说明SiO_2与HgCl_2在CaO表面存在竞争吸附关系;吸附实验前后CaO的表征结果显示,与Hg0相比,HgCl_2更易与CaO表面各碱性位形成单配位、双配位等多种吸附构型,SiO_2与HgCl_2在易形成单配位的活性位上形成竞争吸附关系,进而在一定程度上降低了CaO对HgCl_2的吸附效率。 展开更多
关键词 CaO吸附剂 HG HgCl2 选择性吸附 so2毒化
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Effects of different methods of introducing Mo on denitration performance and anti‐SO_(2)poisoning performance of CeO_(2) 被引量:2
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作者 Lulu Li Chengyan Ge +6 位作者 Jiawei Ji Wei Tan Xin Wang Xiaoqian Wei Kai Guo Changjin Tang Lin Dong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第9期1488-1499,共12页
Cerium‐based catalysts are very attractive for the catalytic abatement of nitrogen oxides(NOx)emitted from stationary sources.However,the main challenge is still achieving satisfactory catalytic activity in the low‐... Cerium‐based catalysts are very attractive for the catalytic abatement of nitrogen oxides(NOx)emitted from stationary sources.However,the main challenge is still achieving satisfactory catalytic activity in the low‐temperature range and tolerance to SO2 poisoning.In the present work,two series of Mo‐modified CeO_(2)catalysts were respectively obtained through a wet impregnation method(Mo‐CeO_(2))and a co‐precipitation method(MoCe‐cp),and the roles of the Mo species were systematically investigated.Activity tests showed that the Mo‐CeO_(2)catalyst displayed much higher NO conversion at low temperature and anti‐SO2 ability than MoCe‐cp.The optimal Mo‐CeO_(2)catalyst displayed over 80%NO elimination efficiency even at 150°C and remarkable SO2 resistance at 250°C(nearly no activity loss after 40 h test).The characterization results indicated that the introduced Mo species were highly dispersed on the Mo‐CeO_(2)catalyst surface,thereby providing more Brønsted acid sites and inhibiting the formation of stable adsorbed NOx species.These factors synergistically promote the selective catalytic reduction(SCR)reaction in accordance with the Eley‐Rideal(E‐R)reaction path on the Mo‐CeO_(2)catalyst.Additionally,the molybdenum surface could protect CeO_(2)from SO2 poisoning;thus,the reducibility of the Mo‐CeO_(2)catalyst declined slightly to an adequate level after sulfation.The results in this work indicate that surface modification with Mo species may be a simple method of developing highly efficient cerium‐based SCR catalysts with superior SO2 durability. 展开更多
关键词 Surface modification MoO_(3)‐CeO_(2) NH_(3)‐SCR Brønsted acid sites SO_(2) resistance
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