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钙功能化磁性生物炭增强孔雀石绿的去除。

Enhanced Removal of Malachite Green Using Calcium-Functionalized Magnetic Biochar.

机构信息

Heilongjiang Ecological Environment Monitoring Center, Harbin 150000, China.

出版信息

Int J Environ Res Public Health. 2022 Mar 10;19(6):3247. doi: 10.3390/ijerph19063247.

Abstract

To efficiently remove malachite green (MG), a novel calcium-functionalized magnetic biochar (Ca/MBC) was fabricated via a two-step pyrolysis method. Iron-containing oxides endowed the target complexes with magnetic properties, especially the chemotactic binding ability with MG, and the addition of calcium significantly changed the morphology of the material and improved its adsorption performance, especially the chemotactic binding ability with MG, which could be confirmed through FTIR, XPS, and adsorption experiments. Electrostatic adsorption, ligand exchange, and hydrogen bonding acted as essential drivers for an enhanced adsorption process, and the maximum theoretical adsorption capacity was up to 12,187.57 mg/g. Ca/MBC maintained a higher adsorption capacity at pH = 4-12, and after five adsorption-desorption cycles, the adsorption capacity and adsorption rate of MG remained at 1424.2 mg/g and 71.21%, highlighting the advantages of Ca/MBC on adsorbing MG. This study suggests that biochar can be modified by a green synthesis approach to produce calcium-functionalized magnetic biochar with excellent MG removal capacity. The synthetic material can not only remove pollutants from water but also provide an efficient way for soil remediation.

摘要

为了高效去除孔雀石绿(MG),我们通过两步热解法制备了一种新型的钙功能化磁性生物炭(Ca/MBC)。含铁氧化物赋予目标复合物磁性,特别是与 MG 的趋化结合能力,而钙的添加显著改变了材料的形态并提高了其吸附性能,特别是与 MG 的趋化结合能力,这可以通过 FTIR、XPS 和吸附实验得到证实。静电吸附、配体交换和氢键是增强吸附过程的重要驱动力,最大理论吸附容量高达 12187.57mg/g。Ca/MBC 在 pH=4-12 时保持较高的吸附容量,经过五次吸附-解吸循环后,MG 的吸附容量和吸附率仍保持在 1424.2mg/g 和 71.21%,突出了 Ca/MBC 对 MG 的吸附优势。本研究表明,生物炭可以通过绿色合成方法进行修饰,制备出具有优异 MG 去除能力的钙功能化磁性生物炭。这种合成材料不仅可以去除水中的污染物,还可以为土壤修复提供一种高效的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e180/8954663/fefcdeb35f61/ijerph-19-03247-sch001.jpg

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