Kerman Momtazan Cement Company, 32(nd) km Kerman-Tehran Highway, 7637158135, Kerman, Iran.
Department of Chemical Engineering, Iran University of Science and Technology, Narmak, Tehran 16846-13114, Iran.
Sci Total Environ. 2022 Mar 15;812:151334. doi: 10.1016/j.scitotenv.2021.151334. Epub 2021 Nov 6.
Among numerous methods developed in purification and separation industries, the adsorption process has received considerable attention due to its inexpensive, facile, and eco-friendly nature. The importance of the adsorption process causes extraordinary endeavors for modeling the adsorption isotherms during the years; thus, myriads of research have been conducted and many reviews have been published. In this paper, we have attempted to gather the most widely used adsorption isotherms and their related definitions, along with examples of correlated work of the recent decade. In the present review, 37 adsorption isotherms with about 400 references have been collected from the research published in the period of 2010-2020. The adsorption isotherms utilized are alphabetically organized for ease of access. The parameters of each isotherm, as well as the applicable definitions, are presented in the table, in addition to being discussed in the text. Another table is provided for the practical use of researchers, featuring the usage of the related isotherms in peer-reviewed studies.
在众多的净化和分离工业中开发的方法中,由于吸附过程具有成本低、简便和环保的特点,因此受到了相当大的关注。吸附过程的重要性使得多年来对吸附等温线的建模进行了非凡的努力;因此,进行了大量的研究并发表了许多评论。在本文中,我们试图收集最广泛使用的吸附等温线及其相关定义,并结合最近十年相关工作的实例。在本综述中,从 2010 年至 2020 年期间发表的研究中收集了 37 种吸附等温线,约有 400 个参考文献。为便于查阅,使用的吸附等温线按字母顺序排列。每个等温线的参数以及适用的定义都列在表中,并在文本中进行了讨论。另一个表格为研究人员提供了实际用途,其中列出了在同行评议的研究中使用相关等温线的情况。