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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of pore blockage on adsorption isotherms and dynamics: Anomalous adsorption of iodine on activated carbon
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Effect of pore blockage on adsorption isotherms and dynamics: Anomalous adsorption of iodine on activated carbon

机译:孔堵塞对吸附等温线和动力学的影响:碘在活性炭上的异常吸附

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Isotherm hysteresis and pore-blocking effects of trapped molecules on adsorption dynamics is studied here, using the iodine-carbon system in the 300-343 K temperature range. It is found that a portion of the iodine is strongly adsorbed, and does not desorb, even over very long time scales, while the remainder adsorbs reversibly as a homogeneous monolayer with a Langmuirian isotherm in mesopores. The strongly adsorbed iodine appears to adsorb in micropores and at the mesopore mouths, hindering uptake of the reversible iodine. The uptake data for the adsorption and desorption dynamics of the reversible part is found to be best explained by means of a pore mouth resistance control mechanism. It is concluded that the dynamics of the adsorption and desorption at the pore mouth is important at early stages of the process. [References: 25]
机译:本文使用碘碳系统在300-343 K的温度范围内研究了等温线滞后和被捕分子的孔阻塞对吸附动力学的影响。发现即使在很长的时间尺度上,一部分碘也被强烈吸附,并且不会解吸,而其余的碘则以中空的朗格缪尔等温线可逆地吸附成均匀的单层。强烈吸附的碘似乎吸附在微孔和中孔口中,从而阻碍了可逆碘的吸收。发现可逆部分的吸附和解吸动力学的吸收数据可以通过抗孔口性控制机制得到最好的解释。结论是,在该过程的早期阶段,孔口处的吸附和解吸动力学很重要。 [参考:25]

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