Cu-ZSM-5催化分解燃煤烟气中NO的试验研究

Experiment of Cu-ZSM-5 catalytic decomposition of NO in coal-fired flue gas

  • 摘要: NO直接催化分解的脱硝方法避免了选择性催化还原(SCR)使用NH3带来的空预器堵塞和催化剂中毒等缺点,是一种值得研究的脱硝新方法。Cu离子交换的ZSM-5分子筛体现了较高的NO分解活性。利用离子交换法制备了系列Cu-ZSM-5催化剂并用于直接催化分解烟气中NO。对比了ZSM-5分子筛硅铝比、交换液Cu离子浓度、交换温度等制备条件和反应温度、反应空速、O2体积分数等反应条件对Cu-ZSM-5催化分解NO性能的影响。考虑催化效率和催化剂处理能力及实际燃煤电厂烟气环境,催化剂最佳制备条件是硅铝比为25、Cu2+浓度为0.01 mol/L、交换温度为40℃,最佳反应条件是温度为550℃、空速为1 200 h-1、O2体积分数为5%。最佳条件下Cu-ZSM-5的NO分解转化率接近50%。利用ICP-OES,XRD,BET,SEM,TEM,O2-TPD等表征手段对催化剂进行表征分析,获得了反应条件和制备条件对Cu-ZSM-5催化分解NO性能的影响机理。分子筛硅铝比决定了可交换的Cu物种含量,较低的硅铝比可提供更多的交换位点,Cu2+浓度通过影响水解产物Cu(OH)+的含量间接改变Cu-ZSM-5的交换度,较低的交换温度不利于Cu2+水解形成活性中心前驱体Cu(OH)+,而较高的交换温度会导致水解过程向2步水解方向移动,形成非活性CuO。升高反应温度可以提高反应速率并加速O2从活性中心脱离,空速越低催化剂与反应物的接触时间越长,O2体积分数越低活性中心Cu2+-O2--Cu2+2+的脱氧循环再生性能越强,催化活性越高。

     

    Abstract: The denitration method of direct catalytic decomposition of NO avoids the disadvantages of air preheater blockage and catalyst poisoning caused by the use of NH3 in SCR.It is a new denitrification method worth studying.The Cu ion-exchanged ZSM-5 zeolite exhibits high NO decomposition activity.A series of Cu-ZSM-5 catalysts was prepared by ion exchange method and used for the direct catalytic decomposition of NO in flue gas.The effects of preparation conditions such as the silicon-aluminum ratio of ZSM-5 zeolite, Cu ion concentration of exchange liquid, exchange temperature and reaction conditions such as reaction temperature, space velocity, O2 concentration on the catalytic performance of Cu-ZSM-5 catalytic decomposition NO were compared.Considering the catalytic efficiency, catalyst processing capacity, and the actual flue gas environment of coal-fired power plants, the optimum preparation conditions of the catalyst were obtained as follows: the silicon-aluminum ratio is 25,Cu ion concentration is 0.01 mol/L,and exchange temperature is 40 ℃.The optimal reaction conditions were reaction temperature 550 ℃,space velocity 1 200 h-1,and O2 concentration 5%.The result showed that the decomposing conversion rate of NO was close to 50% under the optimum conditions.ICP-OES,XRD,BET,SEM,TEM,O2-TPD were applied to the characterization and analysis of these catalysts, and the effect mechanisms of reaction conditions and preparation conditions on the performance of Cu-ZSM-5 in catalytic decomposition NO were obtained.The zeolite silicon-aluminum ratio determines the exchangeable copper species content, and a lower silicon-aluminum ratio can provide more exchange sites.The Cu2+ concentration indirectly changes the exchange degree of Cu-ZSM-5 by affecting the content of the hydrolyzed product Cu(OH)+.The lower exchange temperature is not conducive to the hydrolysis of Cu2+ to form the active center precursor Cu(OH)+.Higher exchange temperature will cause the hydrolysis process to move to the two-step hydrolysis direction, forming inactive CuO.Increasing the reaction temperature can increase the reaction rate and accelerate the separation of O2 from the active center.The lower the space velocity, the longer the contact time between the catalyst and the reactant.The lower the O2 concentration, the stronger the deoxygenation cycle regeneration performance of the active center Cu2+-O2--Cu2+2+,and the higher the catalytic activity.

     

/

返回文章
返回