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首页> 外文期刊>Journal of Colloid and Interface Science >Studies on Indian Ocean manganese nodules - XI. Physiochemical characterization and catalytic activity of silver oxide mixed manganese nodules
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Studies on Indian Ocean manganese nodules - XI. Physiochemical characterization and catalytic activity of silver oxide mixed manganese nodules

机译:印度洋锰结核的研究-十一。氧化银混合锰结核的理化特性和催化活性

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The promoting effect of Ag2O on the physicochemical properties and catalytic activity of manganese nodules has been investigated. The surface area and surface oxygen increased with addition of Ag2O, reaching a maximum at 1 mol% of Ag, and then decreased with further addition of Ag2O. The catalytic activity of manganese nodules substantially increased with addition of Ag2O over a wide range (0.25-25 mol% Ag). Addition of only 0.25 mol% of Ag to the nodule decreased the temperature of complete CO oxidation from 350 degrees C to as low as 100 degrees C. This enhanced activity was explained by the concerted action of Ag and Mn, where CO was preferentially adsorbed on Ag2O and oxidized. The reduced Ag was then reoxidized rapidly by oxygen transferred from Mn. The promoting effect of Ag2O on H2O2 decomposition and ketonization of acetic acid, however, was less pronounced, (C) 1998 Academic Press. [References: 22]
机译:研究了Ag2O对锰结核的理化性质和催化活性的促进作用。表面积和表面氧随着Ag 2 O的添加而增加,在1mol%的Ag处达到最大值,然后随着Ag 2 O的进一步添加而减小。在较大范围内(0.25-25 mol%Ag)添加Ag2O,锰结核的催化活性大大提高。仅向结节中添加0.25 mol%的Ag即可将一氧化碳完全氧化的温度从350摄氏度降低至低至100摄氏度。这种增强的活性可以通过Ag和Mn的协同作用来解释,其中CO优先吸附在被Ag2O氧化。然后,还原的Ag被从Mn转移过来的氧气迅速重新氧化。然而,Ag 2 O对H 2 O 2分解和乙酸的酮化的促进作用不太明显,(C)1998 Academic Press。 [参考:22]

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