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无酸条件下合成的水稳定 MIL-100(Fe)高效去除受污染水中的微囊藻毒素-LR。

Efficient removal of microcystin-LR from contaminated water using water-stable MIL-100(Fe) synthesized under HF-free conditions.

机构信息

Natural Resources and Environmental Studies Institute, University of Northern British Columbia, Prince George, BC, Canada.

Northern Analytical Lab Services (Northern BC's Environment & Climate Solutions Innovation Hub), University of Northern British Columbia, Prince George, BC, Canada.

出版信息

Environ Sci Pollut Res Int. 2024 Apr;31(16):24512-24524. doi: 10.1007/s11356-024-32675-6. Epub 2024 Mar 5.

Abstract

Cyanobacterial algal hepatotoxins, called microcystins (MCs), are a global health concern, necessitating research on effective removal methods from contaminated water bodies. In this study, we synthesized non-fluorine MIL-100(Fe) using an environmentally friendly room-temperature method and utilized it as an adsorbent to effectively remove microcystin-LR (MC-LR), which is the most toxic MC congener. MIL-100(Fe) was thoroughly characterized, and its adsorption process was investigated under various conditions. Results revealed rapid MC-LR adsorption, achieving 93% removal in just 5 min, with the pseudo-second-order kinetic model indicating chemisorption as the primary mechanism. The Langmuir isotherm model demonstrated a monolayer sorption capacity of 232.6 µg g at room temperature, showing favorable adsorption. Furthermore, the adsorption capacity increased from 183 µg g at 20 °C to 311 µg g at 40 °C, indicating an endothermic process. Thermodynamic parameters supported MC-LR adsorption's spontaneous and feasible nature onto MIL-100(Fe). This study highlights MIL-100(Fe) as a promising method for effectively removing harmful biological pollutants, such as MC-LR, from contaminated water bodies in an environmentally friendly manner.

摘要

蓝藻藻毒素,称为微囊藻毒素(MCs),是一个全球性的健康问题,需要研究从受污染水体中去除的有效方法。在这项研究中,我们使用环保的室温方法合成了非氟 MIL-100(Fe),并将其用作吸附剂,以有效去除最毒的 MC 同系物微囊藻毒素-LR(MC-LR)。对 MIL-100(Fe) 进行了彻底的表征,并在各种条件下研究了其吸附过程。结果表明,MC-LR 的吸附速度很快,仅需 5 分钟即可达到 93%的去除率,准二级动力学模型表明化学吸附是主要机制。Langmuir 等温模型表明,在室温下的单层吸附容量为 232.6µg/g,表明吸附效果良好。此外,吸附容量从 20°C 时的 183µg/g 增加到 40°C 时的 311µg/g,表明这是一个吸热过程。热力学参数支持 MC-LR 吸附到 MIL-100(Fe) 上是自发和可行的。这项研究强调了 MIL-100(Fe) 作为一种有前途的方法,可以以环保的方式有效去除受污染水体中的有害生物污染物,如 MC-LR。

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