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首页> 外文期刊>Journal of Chemical Engineering of Japan >Evaluation of the Selectivity for Methanol Decomposition over Anodized Aluminum Plate Catalyst Coated with Silica
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Evaluation of the Selectivity for Methanol Decomposition over Anodized Aluminum Plate Catalyst Coated with Silica

机译:二氧化硅包覆的阳极氧化铝板催化剂上甲醇分解选择性的评价

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References(14) Cited-By(3) A plate type methanol decomposition catalyst which has higher heat conductivity was prepared based on anodic oxidation of aluminum. In order to reduce the formation of dimethyl ether as a by-product at the acid site of alumina, silica was coated on the anodized alumina plate. By the measurement of ammonia TPD, it was found that the acidity of the silica coated catalyst was lower than that of the plate without coating. As for the silica coated plate, the profile of methanol TPD also showed that the formation of dimethyl ether was smaller and peak temperature was higher, although those without silica coating indicated a large amount of dimethyl ether formation. After Pd was loaded on the plate, the catalytic activity of methanol decomposition to hydrogen and carbon monoxide and the formation of dimethyl ether as a by-product were evaluated at 200 and 250°C by a continuous fixed bed reactor. The content and dispersion of Pd of silica coated catalysts were smaller than that of the hydrated catalyst without silica coating and the formation rate of carbon monoxide was increased with increasing metal surface area of Pd. The formation rate of dimethyl ether over the silica coated catalyst was approximately 1/20 of that of the catalyst without silica coating and it was independent of silica contents.
机译:参考文献(14)Cyd-By(3)基于铝的阳极氧化,制备了具有较高导热率的板型甲醇分解催化剂。为了减少作为副产物的二甲醚在氧化铝的酸性部位的形成,将二氧化硅涂覆在阳极氧化铝板上。通过测量氨TPD,发现二氧化硅涂覆的催化剂的酸度低于没有涂覆的板的酸度。对于二氧化硅涂层板,甲醇TPD的分布图也表明,二甲醚的形成较小,峰温度较高,尽管没有二氧化硅涂层的板表明形成了大量的二甲醚。将Pd装载到板上后,通过连续固定床反应器在200和250℃下评估甲醇分解为氢和一氧化碳的催化活性以及副产物二甲醚的形成。二氧化硅包覆的催化剂中Pd的含量和分散度小于没有二氧化硅包覆的水合催化剂,随着Pd金属表面积的增加,一氧化碳的形成速率增加。在二氧化硅涂覆的催化剂上二甲醚的形成速率约为没有二氧化硅涂覆的催化剂的形成速率的1/20,并且它与二氧化硅含量无关。

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