KIT‐6 mesoporous silica aged at 40,100,and 150°C were used as hard templates to prepare different mesoporous MnO2 catalysts,marked as Mn‐40,Mn‐100,and Mn‐150,*** catalytic activities of these catalysts and th...
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KIT‐6 mesoporous silica aged at 40,100,and 150°C were used as hard templates to prepare different mesoporous MnO2 catalysts,marked as Mn‐40,Mn‐100,and Mn‐150,*** catalytic activities of these catalysts and the effect of pore sizes on ethanol catalytic oxidation were ***‐40,Mn‐100,and Mn‐150 have triple,double,and single pore systems,*** decreasing the aging temperature of KIT‐6,the pore sizes of KIT‐6 decrease and that of mesoporous MnO2 catalysts *** pore sizes and catalytic activities increase in the order:Mn‐40>Mn‐100>Mn‐***‐40 catalyst has a higher TOF(0.11 s–1 at 120°C)and the best catalytic activity for ethanol oxidation because of a bigger pore size with three pore systems with maximum distribution at 1.9,3.4,and 6.6 nm,decrease in symmetry and degree of order,more surface lattice oxygen species,oxygen vacancies resulting from more Mn3+ions,and better low‐temperature reducibility.
为满足大气非甲烷烃(NMHCs)时空分布监测需求,开发出一套可用于移动观测的小型在线测量系统.环境空气经Teflon膜去除颗粒物后,以100 m L·min-1流速采样进入多床吸附剂捕集阱,样品气中的NMHCs在-10℃的温度下被捕集,之后,捕集阱经...
详细信息
为满足大气非甲烷烃(NMHCs)时空分布监测需求,开发出一套可用于移动观测的小型在线测量系统.环境空气经Teflon膜去除颗粒物后,以100 m L·min-1流速采样进入多床吸附剂捕集阱,样品气中的NMHCs在-10℃的温度下被捕集,之后,捕集阱经高纯氮气反吹后迅速升温至300℃,载气(高纯氮气)以1.6 m L·min-1将解吸出的样品送入GC-FID进行检测.通过系列条件实验,确定了吸附剂的最佳组合和仪器运行的最优参数,在此条件下,本系统最低检出限为0.01 nmol·mol-1(顺-2-丁烯),标准工作曲线R2为0.9991~0.9998,10次重复实验RSD<3%.本系统与现有商业化设备TH-300B的测量结果具有较好的一致性,在实际外场应用中,运行稳定性高、能准确追踪12种典型NMHCs的大气浓度变化,可为定量分析大气二次污染形成机制提供关键前体物信息.
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