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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic decomposition of 4-phenoxyphenol to aromatics over Pd/XCs_(2.5)H_(0.5)PW_(12)O_(40)/ACA (X= 10, 20,30,40, and 50 wt%) catalysts
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Catalytic decomposition of 4-phenoxyphenol to aromatics over Pd/XCs_(2.5)H_(0.5)PW_(12)O_(40)/ACA (X= 10, 20,30,40, and 50 wt%) catalysts

机译:在Pd / XCs_(2.5)H_(0.5)PW_(12)O_(40)/ ACA(X = 10、20、30、40和50 wt%)催化剂上将4-苯氧基苯酚催化分解为芳烃

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摘要

Activated carbon aerogel (ACA) was prepared by a chemical activation of carbon aerogel using phosphioric acid (H3PO4). A series of Cs_(2.5)H_(0.5)PW_(12)O_(40)-impregnated activated carbon aerogels (XCS2.5H0.5PW12O40/ACA) were prepared with a variation of CS2.5H0.5PW12O40 content (X) in order to provide acid sites to ACA. Palladium catalysts were then supported on Cs_(2.5)H_(0.5)PW_(12)O_(40)-impregnated activated carbon aerogel (Pd/X_(2.5)H_(0.5)PW_(12)O_(40)/ACA, X=10, 20, 30, 40, and 50wt%) by an incipient wetness impregnation method for use in the decomposition of 4-phenoxyphenol to aromatics. 4-Phenoxyphenol was used as a lignin model compound for representing 4-0-5 linkage of lignin. Cyclohexanol, benzene, and phenol were mainly produced by the decomposition of 4-phenoxyphenol. Conversion of 4-phenoxyphenol and total yield for main products (cyclohexanol, benzene, and phenol) were closely related to the acidity of Pd/XCs_(2.5)H_(0.5)PW_(12)O_(40)/ACA. Conversion of 4-phenoxyphenol and total yield for main products increased with increasing acidity of Pd/XCs_(2.5)H_(0.5)PW_(12)O_(40)/ACA. Among the catalysts tested, Pd/20Cs_(2.5)H_(0.5)PW_(12)O_(40)/ACA with the largest acidity showed the highest conversion of 4-phenoxyphenol and total yield for main products. Conversion of 4-phenoxyphenol and total yield for main products over Pd/20Cs_(2.5)H_(0.5)PW_(12)O_(40)/ACA were much higher than those over palladium catalyst supported on commercial activated carbon (Pd/AC) and palladium catalyst supported on activated carbon aerogel (Pd/ACA).
机译:活性炭气凝胶(ACA)是通过使用磷酸(H3PO4)对碳气凝胶进行化学活化而制备的。制备了一系列Cs_(2.5)H_(0.5)PW_(12)O_(40)浸渍的活性炭气凝胶(XCS2.5H0.5PW12O40 / ACA),其CS2.5H0.5PW12O40含量(X)依次变化为ACA提供酸性位点。然后将钯催化剂负载在Cs_(2.5)H_(0.5)PW_(12)O_(40)浸渍的活性炭气凝胶上(Pd / X_(2.5)H_(0.5)PW_(12)O_(40)/ ACA,X通过初始湿润浸渍法,可将其在10重量%,10重量%,20重量%,30重量%,40重量%和50重量%之间进行分解,以用于将4-苯氧基苯酚分解为芳族化合物。 4-苯氧基苯酚用作木质素模型化合物,代表木质素的4-0-5键合。环己醇,苯和苯酚主要是由4-苯氧基苯酚分解产生的。 4-苯氧基苯酚的转化率和主要产物(环己醇,苯和苯酚)的总产率与Pd / XCs_(2.5)H_(0.5)PW_(12)O_(40)/ ACA的酸度密切相关。随着Pd / XCs_(2.5)H_(0.5)PW_(12)O_(40)/ ACA酸度的增加,4-苯氧基苯酚的转化率和主要产物的总产率增加。在所测试的催化剂中,酸度最大的Pd / 20Cs_(2.5)H_(0.5)PW_(12)O_(40)/ ACA显示出4-苯氧基苯酚的最高转化率和主要产品的总收率。 Pd / 20Cs_(2.5)H_(0.5)PW_(12)O_(40)/ ACA上4-苯氧基苯酚的转化率和主要产品的总收率远高于市售活性炭(Pd / AC)上负载的钯催化剂负载在活性炭气凝胶(Pd / ACA)上的钯催化剂。

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