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密度泛函理论-扩展X射线吸收精细结构(DFT-XAFS)确定机制与工程考量在P吸附剂演变中的交织作用。

Intertwined role of mechanism identification by DFT-XAFS and engineering considerations in the evolution of P adsorbents.

作者信息

Zhao Ruining, Li Benhang, Chen Siyuan, Zhang Boxuan, Chen Jiale, Sun Jiahe, Ma Xiaodong

机构信息

School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, China.

School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, China.

出版信息

Sci Total Environ. 2024 Oct 10;946:174159. doi: 10.1016/j.scitotenv.2024.174159. Epub 2024 Jun 21.

Abstract

Adsorption method exhibits promising potential in effectively removal of phosphate from wastewater, yet it faces tremendous challenges in practical application. Limited comprehension of adsorption mechanisms and the lack of evaluation method for scaling up application are the two main obstacles. To fully realize the practical application of P adsorbents, we reviewed advanced tools, including density functional theory (DFT) and/or X-ray absorption fine structure (XAFS) to elucidate mechanisms, underscored the significance of thermodynamics and kinetics in engineering design, and proposed strategies for regenerating and reusing P adsorbents. Specifically, we delved into the utilization of DFT and XAFS to gain insights into adsorption mechanisms, focusing on active site verification and molecular interaction configurations. Additionally, we explored precise calculation methods for adsorption thermodynamics and adsorption kinetics, encompassing thermodynamic equilibrium constants, reactor selection, and the regeneration, recovery, and disposal of P adsorbents. Our comprehensive review aims to serve as a guiding light in advancing the development of highly efficient P adsorbents for engineering applications.

摘要

吸附法在有效去除废水中的磷酸盐方面展现出了巨大潜力,但在实际应用中面临着巨大挑战。对吸附机制的理解有限以及缺乏放大应用的评估方法是两个主要障碍。为了充分实现磷吸附剂的实际应用,我们综述了包括密度泛函理论(DFT)和/或X射线吸收精细结构(XAFS)在内的先进工具以阐明机制,强调了热力学和动力学在工程设计中的重要性,并提出了磷吸附剂再生和再利用的策略。具体而言,我们深入研究了DFT和XAFS的利用以深入了解吸附机制,重点是活性位点验证和分子相互作用构型。此外,我们探索了吸附热力学和吸附动力学的精确计算方法,包括热力学平衡常数、反应器选择以及磷吸附剂的再生、回收和处置。我们的全面综述旨在为推进高效磷吸附剂在工程应用中的发展提供指导。

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