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首页> 外文期刊>Journal of the Chilean Chemical Society >STUDY OF THE CATALYTIC CONVERSION AND ADSORPTION OF ABIETIC ACID ON ACTIVATED CARBON: EFFECT OF SURFACE ACIDITY
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STUDY OF THE CATALYTIC CONVERSION AND ADSORPTION OF ABIETIC ACID ON ACTIVATED CARBON: EFFECT OF SURFACE ACIDITY

机译:脂肪酸对活性炭的催化转化和吸附研究:表面酸的影响

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摘要

This study reports the adsorption and catalytic conversion of abietic acid as representative compound of tall oil, using activated carbons. Acid functional groups present on CGRAN activated carbons favored the adsorption of abietic acid, probably through a physical adsorption mechanism. In contrast, the conversion of abietic acid was not favored in DARCO activated carbon by increase of acid sites thought HNO3 treatment. The detection of neoabietic, palustric and/or levopimaric acids as reaction products indicate that the transformation of abietic acid was by dehydrogenation and/or isomerization routes. The negative influence of acid sites on the catalytic activity, in addition to the non-detection of volatile products, suggests that the cracking pathway for the conversion of abietic acid over these catalysts can be ruled out. Contrasting effects of the surface groups on the adsorption capacity and the conversion was observed: strong acid sites of CGRAN activated carbon favor the adsorption of abietic acid and decrease competitive adsorption between substrate and solvent, while conversion is not favored by these acid sites.
机译:这项研究报告了使用活性炭对松香酸作为妥尔油的代表性化合物的吸附和催化转化。 CGRAN活性炭上存在的酸官能团可能通过物理吸附机制促进松香酸的吸附。相反,通过HNO3处理增加酸位,在DARCO活性炭中不支持松香酸的转化。新松香酸,palustric和/或左旋海松酸作为反应产物的检测表明松香酸的转化是通过脱氢和/或异构化途径进行的。除未检测到挥发性产物外,酸位点对催化活性的负面影响还表明,可以排除在这些催化剂上松香酸转化的裂解途径。观察到了表面基团对吸附容量和转化率的对比影响:CGRAN活性炭的强酸位有利于松香酸的吸附,并降低了底物和溶剂之间的竞争性吸附,而这些酸位不利于转化。

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