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Adsorption heats of phenol on activated carbon using adapted method of immersion calorimetry

机译:采用浸没量热法测苯酚在活性炭上的吸附热。

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Simple adaptation of the technique of immersion calorimetry enables determining both integral and differential adsorption heats as well as the course of the adsorption isotherm of phenol on activated carbon. The innovative aspect of the applied procedure consists in bringing the phenol aqueous solution to contact with the suspension of carbon with water. Thus, the “interfering” heat effect of carbon interaction with water is eliminated, and only the net adsorption heat of phenol is monitored. The value of −52.5 kJ mol−1 was ascertained as the molar differential adsorption heat at the low surface coverage (cca 0.2 mmol g−1) of the sample of microporous carbon. As the adsorption process continues, for adsorption uptakes exceeding the value of about 1 mmol g−1, molar differential adsorption heats appear to be established at a level of about −20 + 5 kJ mol−1.
机译:对浸没量热法技术的简单调整,即可确定积分吸附热和差分吸附热,以及酚在活性炭上的吸附等温线。应用程序的创新之处在于使苯酚水溶液与水的碳悬浮液接触。因此,消除了碳与水相互作用的“干扰”热效应,仅监测了苯酚的净吸附热。确定为-52.5 kJ mol -1 的值,作为微孔碳样品低表面覆盖率(cca 0.2 mmol g -1 )的摩尔差异吸附热。 。随着吸附过程的继续,对于超过约1 mmol g -1 的吸收值,摩尔差分吸附热似乎建立在大约-20 + 5 kJ mol - 1

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