首页> 外文会议>The Third International Conference of the Kolloid-Gesellschaft (Germany) Sep 25-28, 2000 Budapest >Adsorption from aqueous phenol and 2,3,4-trichlorophenol solutions on nanoporous carbon prepared from poly(ethylene terephthalate)
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Adsorption from aqueous phenol and 2,3,4-trichlorophenol solutions on nanoporous carbon prepared from poly(ethylene terephthalate)

机译:聚对苯二甲酸乙二醇酯制得的纳米孔碳上苯酚和2,3,4-三氯苯酚水溶液的吸附

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Highly microporous poly(ethylene terephthalate) based activated carbon exhibits a Bru-nauer-Emmett-Teller surface area of 1170 m~2/g and a total pore volume of 0.625 cm~3/g. It contains mesopores in a sufficient proportion of 42% of the total pore volume, which promotes the diffusion availability of the micropore region. The surface possesses an amphoteric nature owing to the oxygen functionalities present; however, the majority of the groups are basic. The adsorption properties from aqueous solution of weak acids, such as phenol and 2,3,4-trichlorophenol, depend both on the pH of the solutions and on the pK_a of the phenols, as the pH influences both the surface chemistry of the carbon and the dissociation of the weak acids used. In the case of phenol, a competitive adsorption takes place, as the interactions are weak in the three media investigated (pH 3, unbuffered and pH 11). The triple chlorine substitution in 2,3,4-trichlorophenol significantly enhances the surface interactions. Owing to the smaller pK_a value of trichloro-phenol in an unbuffered medium, ionic interaction occurs as has been concluded from the outstandingly high value of the adsorption equilibrium constant. At pH 11 the adsorption of the phenols is hindered by electrostatic repulsion.
机译:高度微孔的聚对苯二甲酸乙二醇酯基活性炭的Bru-nauer-Emmett-Teller表面积为1170 m2 / g,总孔体积为0.625 cm-3 / g。它包含的中孔占总孔体积的42%,足以促进微孔区域的扩散。由于存在氧官能团,该表面具有两性性质。但是,大多数组是基本的。弱酸(例如苯酚和2,3,4-三氯苯酚)在水溶液中的吸附特性既取决于溶液的pH值,也取决于酚的pK_a,因为pH值会影响碳和碳的表面化学性质。所用弱酸的离解。在苯酚的情况下,发生竞争性吸附,因为在所研究的三种介质(pH 3,无缓冲液和pH 11)中相互作用较弱。 2,3,4-三氯苯酚中的三氯取代明显增强了表面相互作用。由于在未缓冲的介质中三氯苯酚的pK_a值较小,因此发生了离子相互作用,这是由吸附平衡常数的极高值得出的结论。在pH 11时,静电排斥会阻止酚类的吸附。

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