Laboratoire de Génie Chimique et de Catalyse Hétérogène, département de Génie Chimique, Université de Sciences et de la Technologie -Mohamed Boudiaf, USTO-MB, BP 1505, EL-M'NAOUAR, 31000, Oran, Algeria.
Laboratoire de Génie Chimique et de Catalyse Hétérogène, département de Génie Chimique, Université de Sciences et de la Technologie -Mohamed Boudiaf, USTO-MB, BP 1505, EL-M'NAOUAR, 31000, Oran, Algeria.
Chemosphere. 2024 Jun;357:142051. doi: 10.1016/j.chemosphere.2024.142051. Epub 2024 Apr 20.
Water purification using adsorption is a crucial process for maintaining human life and preserving the environment. Batch and dynamic adsorption modes are two types of water purification processes that are commonly used in various countries due to their simplicity and feasibility on an industrial scale. However, it is important to understand the advantages and limitations of these two adsorption modes in industrial applications. Also, the possibility of using batch mode in industrial scale was scrutinized, along with the necessity of using dynamic mode in such applications. In addition, the reasons for the necessity of performing batch adsorption studies before starting the treatment on an industrial scale were mentioned and discussed. In fact, this review article attempts to throw light on these subjects by comparing the biosorption efficiency of some metals on utilized biosorbents, using both batch and fixed-bed (column) adsorption modes. The comparison is based on the effectiveness of the two processes and the mechanisms involved in the treatment. Parameters such as biosorption capacity, percentage removal, and isotherm models for both batch and column (fixed bed) studies are compared. The article also explains thermodynamic and kinetic models for batch adsorption and discusses breakthrough evaluations in adsorptive column systems. The review highlights the benefits of using convenient batch-wise biosorption in lab-scale studies and the key advantages of column biosorption in industrial applications.
利用吸附进行水净化是维持人类生命和保护环境的关键过程。批式和动态吸附模式是两种常见的水净化工艺,由于其在工业规模上的简单性和可行性,在各国得到广泛应用。然而,了解这两种吸附模式在工业应用中的优缺点非常重要。此外,还研究了在工业规模上使用批式模式的可能性,以及在这些应用中使用动态模式的必要性。此外,还提到并讨论了在工业规模处理之前进行批式吸附研究的必要性的原因。事实上,本文通过比较一些金属在使用的生物吸附剂上的生物吸附效率,使用批式和固定床(柱)吸附模式,来试图阐明这些主题。比较的依据是两种工艺的效果以及处理中涉及的机制。比较了批式和柱(固定床)研究的吸附容量、去除百分比和等温线模型等参数。本文还解释了批式吸附的热力学和动力学模型,并讨论了吸附柱系统中的穿透评估。本文综述强调了在实验室规模研究中使用方便的批式生物吸附的好处,以及在工业应用中柱式生物吸附的关键优势。