Experimental study of gas adsorption using high-performance activated carbon: Propane adsorption isotherm

T. Aprianti, Harrini Mutiara Hapsari, Debby Yulinar Permata, Selvia Aprilyanti, Justin Sobey, Kallan Pham, Srinivasan Kandadai, Hui Tong Chua
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Abstract

Activated carbon is widely used for its diverse adsorptive abilities, with a vast range of current and emerging uses. This study developed a data set for high-performing activated carbon, its adsorption abilities with differing adsorbents, and an understanding of what deviations are present compared to the widely used adsorption models. This study included the construction of Tóth isotherms in varying conditions. Building a strong isotherm correlation is desired, with an understanding of the relationship between the pores of the activated carbon sample, operating parameters, and the adsorbent. The present data could complement efforts in designing adsorbed natural gas storage systems. Experimental data was collected using a Constant Volume Variable Pressure (CVVP) apparatus, consisting of a temperature-regulated vessel containing the activated carbon sample dosed with varying adsorbents through a controlled dosing vessel. Analysis of the derived data gave a well-fitted Tóth adsorption isotherm, giving the maximum specific adsorption capacity of the activated carbon to be 2.28 g of propane per gram of activated carbon with a standard error of regression
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使用高性能活性炭进行气体吸附的实验研究:丙烷吸附等温线
活性炭因其多种多样的吸附能力而被广泛使用,并具有多种现有和新兴用途。这项研究为高性能活性炭、其与不同吸附剂的吸附能力以及与广泛使用的吸附模型相比存在的偏差建立了数据集。这项研究包括在不同条件下构建托斯等温线。通过了解活性炭样品的孔隙、操作参数和吸附剂之间的关系,我们希望建立一个强大的等温线相关性。目前的数据可以补充设计吸附天然气储存系统的工作。实验数据是使用恒容变压(CVVP)装置收集的,该装置由一个温度可调的容器组成,容器中装有活性炭样品,并通过一个可控定量容器加入不同的吸附剂。对所得数据的分析得出了拟合良好的托特吸附等温线,活性碳的最大比吸附容量为每克活性碳 2.28 克丙烷,回归标准误差为 0.5%。
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