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首页> 外文期刊>Environmental Progress & Sustainable Energy >Simultaneous catalytic reduction of N2O and NOx for tertiary N2O abatement technology: A field study in a nitric acid production plant
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Simultaneous catalytic reduction of N2O and NOx for tertiary N2O abatement technology: A field study in a nitric acid production plant

机译:同时催化还原的一氧化二氮和氮氧化物叔一氧化二氮减排技术:一个字段研究硝酸生产工厂

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摘要

To investigate the feasibility of the simultaneous abatement of N2O and NOx in a single reactor, this field study was performed in a nitric acid production plant. An Fe/BEA powder catalyst prepared by Fe ion-exchange with steam-treated BEA zeolite was extruded in pellets and honeycombs. In the simultaneous reduction of N2O and NOx, the pellet- and honeycomb-type catalysts showed more than a 90% and 95% conversion of N2O and NOx, respectively, at a reaction temperature between 350 degrees C and 380 degrees C which is typical for the DeNO(x) process. The catalytic performance of the pellets and honeycombs was also stable during the reactor operation period. With higher N2O and NOx conversions of over 90%, NH3 concentration in exhaust gas streams can be reduced to satisfy domestic regulations for air pollutant emissions. Accordingly, it is suggested that the simultaneous reduction of N2O and NOx in a single reactor with the Fe/BEA catalyst may be a reasonable option for a tertiary abatement technology for nitric acid production plants.
机译:同步的可行性进行调查一氧化二氮和氮氧化物的减排在一个反应堆,这一领域的研究是在硝酸中执行生产工厂。由铁离子交换与蒸馏处理BEA沸石颗粒和挤压蜂窝。和颗粒和氮氧化物honeycomb-type催化剂显示,超过90%和95%转换的一氧化二氮在反应温度和氮氧化合物,分别350摄氏度和380摄氏度之间典型的DeNO (x)的过程。球团矿和蜂窝的性能在反应堆运行期间也稳定。更高的一氧化二氮和氮氧化物转换超过90%,NH3浓度废气流降低来满足国内法规的空气污染物排放。同时减少一氧化二氮和氮氧化物一个反应堆与Fe / BEA催化剂一个合理的选择一个叔减排技术对硝酸生产工厂。

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