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氧化铈增强对椰壳衍生磁性生物炭吸附铅的影响。

Effect of CeO-Reinforcement on Pb Absorption by Coconut Coir-Derived Magnetic Biochar.

机构信息

Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences (CAS), Guangzhou 510640, China.

CAS Key Laboratory of Renewable Energy, Guangdong Provincial Key Laboratory of New and Renewable Energy Research and Development, Guangzhou 510640, China.

出版信息

Int J Mol Sci. 2023 Jan 19;24(3):1974. doi: 10.3390/ijms24031974.

Abstract

Magnetic separable biochar holds great promise for the treatment of Pb-contaminated wastewater. However, the absorption effect of unmodified magnetic biochar is poor. Considering this gap in knowledge, CeO-doped magnetic coconut coir biochar (Ce-MCB) and magnetic coconut coir biochar (MCB) for Pb absorption were prepared by the impregnation method, and the efficiency of Ce-MCB for Pb absorption was evaluated in comparison with MCB. Conducting the absorption experiments, the study provided theoretical support for the exploration of the absorption mechanism. The quantitative analysis exposed that the enhanced absorption capacity of Ce-MCB was attributed to the increase in oxygen-containing functional groups and mineral precipitation. The Langmuir and Freundlich isotherm model showed that Ce-MCB is a suitable adsorbent for Pb. The absorption characteristics of Ce-MCB was fit well with the pseudo-second-order (PSO) and Langmuir models, which revealed that the absorption of Pb in water was monolayer chemisorption with a maximum theoretical adsorption capacity of 140.83 mg·g. The adsorption capacity of Ce-MCB for Pb(II) was sustained above 70% after four cycles. In addition, the saturation magnetization intensity of Ce-MCB was 7.15 emu·g, which was sufficient to separate out from the solution. Overall, Ce-MCB has wide application prospects in terms of biomass resources recycling and environmental conservation.

摘要

磁性可分离生物炭在处理含 Pb 废水方面具有广阔的前景。然而,未经修饰的磁性生物炭的吸附效果较差。鉴于这一知识差距,本研究采用浸渍法制备了 CeO 掺杂磁性椰壳生物炭(Ce-MCB)和磁性椰壳生物炭(MCB)用于 Pb 吸附,并将 Ce-MCB 的 Pb 吸附效率与 MCB 进行了比较。通过开展吸附实验,为探索吸附机制提供了理论支持。定量分析表明,Ce-MCB 增强的吸附能力归因于含氧官能团的增加和矿物沉淀。Langmuir 和 Freundlich 等温吸附模型表明 Ce-MCB 是一种适合 Pb 吸附的吸附剂。Ce-MCB 的吸附特性与伪二阶(PSO)和 Langmuir 模型拟合良好,表明水中 Pb 的吸附是单层化学吸附,最大理论吸附容量为 140.83mg·g。Ce-MCB 对 Pb(II)的吸附容量在经过四个循环后仍保持在 70%以上。此外,Ce-MCB 的饱和磁化强度为 7.15 emu·g,足以从溶液中分离出来。总的来说,Ce-MCB 在生物质资源回收和环境保护方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d4c/9916585/295dbb08fd46/ijms-24-01974-sch001.jpg

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