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首页> 外文期刊>The Korean journal of chemical engineering >Oxidation of formaldehyde, carbon monoxide and methanol over manganese-cerium-aluminum oxides supported on cordierite monoliths
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Oxidation of formaldehyde, carbon monoxide and methanol over manganese-cerium-aluminum oxides supported on cordierite monoliths

机译:堇青石整体载体上负载的锰-铈-铝氧化物对甲醛,一氧化碳和甲醇的氧化

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Catalytic oxidation of formaldehyde, carbon monoxide, and methanol over cordierite-supported manganese-cerium-aluminum mixed oxides was investigated in a laboratory reactor. The activities of base metal oxides (BMO) comprising 27% MnO2, 21% CeO2, and 52% Al2O3 supported on cordierite monoliths calcined at 1,000 A degrees C for 3 h in air dropped very rapidly due to the migration of mobile silicon dioxide (SiO2) from the cordierite to the base metal oxides to react with or physically block the active catalysts. To immobilize migrating SiO2, barrier coats composed of alkali metal (Ba, Sr, Ca, Mg) oxides and alumina were applied to the cordierite prior to coating with active base metal oxides. The base metal oxides supported on cordierite monoliths pretreated with BaO-Al2O3 barrier coats and calcined at 1,000 oC for 3 h in air, initiated the oxidation of HCHO, CO, and CH3OH at 150, 220, and 170 A degrees C, respectively. These catalysts turned out to be more effective for the formaldehyde oxidation than 0.5% Pt/Al2O3 precious metal catalysts. Carbon monoxide and methanol oxidation conversions were comparable. The incorporation of small amount of palladium (0.147 wt%) to base metal oxides supported on cordierite monoliths pretreated with BaO-Al2O3 barrier coats, showed the superiority for HCHO, CO, and CH3OH oxidation to 0.5% Pt/Al2O3 precious metal catalysts. The temperatures of 50% conversion of formaldehyde, carbon monoxide and methanol were 70 A degrees C lower over base metal oxides catalysts than over precious metal catalysts.
机译:在实验室反应器中研究了堇青石负载的锰-铈-铝混合氧化物上甲醛,一氧化碳和甲醇的催化氧化。在空气中于1,000 A煅烧3 h的堇青石整料上负载的27%MnO2、21%CeO2和52%Al2O3的贱金属氧化物(BMO)的活动由于移动二氧化硅(SiO2)的迁移而迅速下降)从堇青石到贱金属氧化物与活性催化剂反应或在物理上阻止了活性催化剂。为了固定迁移的SiO2,在用活性贱金属氧化物涂覆之前,将由碱金属(Ba,Sr,Ca,Mg)氧化物和氧化铝组成的阻挡层涂覆到堇青石上。负载在堇青石整料上的贱金属氧化物用BaO-Al2O3隔离涂层进行预处理,然后在空气中于1,000 oC煅烧3 h,分别在150、220和170 A的温度下引发HCHO,CO和CH3OH的氧化。事实证明,这些催化剂比0.5%Pt / Al2O3贵金属催化剂对甲醛氧化更有效。一氧化碳和甲醇的氧化转化率相当。在用BaO-Al2O3隔离涂层预处理的堇青石整料上负载的贱金属氧化物中掺入少量钯(0.147 wt%),显示出HCHO,CO和CH3OH氧化对0.5%Pt / Al2O3贵金属催化剂的优越性。甲醛,一氧化碳和甲醇的50%转化温度在贱金属氧化物催化剂上比在贵金属催化剂上低70℃。

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