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The impact of carbon surface chemical composition on the adsorption of phenol determined at the real oxic and anoxic conditions

机译:在实际的有氧和无氧条件下测定的碳表面化学组成对苯酚吸附的影响

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The results of phenol adsorption-desorption isotherms (at 310 K) measured on the series of activated carbons (D43/1, NORIT RO 0.8, D55/2) are presented. The effect of carbon surface chemical composition on phenol adsorption determined at real oxic and anoxic conditions is discussed. To obtain the real anoxic conditions the two station controlled atmosphere chamber with two catalyst heater units (Plas Labs, Lansing, MI, USA) was applied. It is shown that the adsorption under oxic conditions is always larger than that determined for anoxic ones for all studied carbons. The analysis of those differences shows that in the range of micropore filling they decrease with the equilibrium phenol mole fraction in solution. Contrary they increase after micropores being filled. The average differences between the adsorption properties are the linear function of the concentration of surface acidic groups (assigned from the Boehm's method as "carboxylic") calculated per the apparent BET surface area of studied carbons.
机译:给出了在一系列活性炭(D43 / 1,NORIT RO 0.8,D55 / 2)上测得的苯酚吸附-解吸等温线的结果。讨论了碳表面化学组成对在实际的有氧和无氧条件下测定的苯酚吸附的影响。为了获得实际的缺氧条件,使用了带有两个催化剂加热器单元(美国密歇根州兰辛市的Plas Labs)的两站受控气氛室。结果表明,对于所有研究的碳,在有氧条件下的吸附总是大于对无氧条件下的吸附。对这些差异的分析表明,在微孔填充范围内,它们随着溶液中的平衡酚摩尔分数而降低。相反,它们在微孔填充后增加。吸附性能之间的平均差异是根据所研究碳的表观BET表面积计算得出的表面酸性基团浓度(从Boehm方法指定为“羧基”)的线性函数。

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