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通过活性炭预处理从采出水中回收锂的基于锂铝水滑石的杂质屏蔽

Impurity Shielding in Li/Al-LDH-Based Lithium Recovery from Produced Water via Activated Carbon Pretreatment.

作者信息

Pan Yanan, Zhang Wencai

机构信息

Department of Mining and Minerals Engineering, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, United States.

出版信息

ACS Sustain Chem Eng. 2025 Aug 25;13(35):14527-14539. doi: 10.1021/acssuschemeng.5c05254. eCollection 2025 Sep 8.

Abstract

Produced water (PW), a complex industrial wastewater byproduct, contains diverse organic contaminants and competing ions that hinder lithium recovery via lithium/aluminum-layered double hydroxide (Li/Al-LDH) adsorption. In this study, an activated carbon (AC)-based pretreatment strategy was developed to improve Li adsorption efficiency by mitigating impurity-induced interference. Two commercial ACs were screened across three PW sources, with optimal dosage and contact time determined for each. AC pretreatment effectively removed key organic compounds and divalent cations, enhancing the aqueous environment for lithium uptake. More importantly, it preserved the structural integrity of Li/Al-LDH, reducing degradation associated with coadsorbed organics. Adsorption experiments confirmed increased Li capacity following AC treatment, while adsorption kinetics remained unchanged. Li selectivity was also modestly improved, particularly over Ca and Mg. Rather than directly enhancing Li adsorption, AC served as a protective pretreatment, indirectly enabling more efficient and stable lithium recovery. This impurity-shielding approach offers a scalable and environmentally benign pathway for critical mineral recovery from PW, aligning with sustainable water treatment and circular economy principles.

摘要

采出水(PW)是一种复杂的工业废水副产物,含有多种有机污染物和竞争性离子,这些物质会阻碍通过锂/铝层状双氢氧化物(Li/Al-LDH)吸附来回收锂。在本研究中,开发了一种基于活性炭(AC)的预处理策略,以通过减轻杂质引起的干扰来提高锂的吸附效率。在三种采出水来源中筛选了两种商用活性炭,并确定了每种活性炭的最佳用量和接触时间。AC预处理有效地去除了关键有机化合物和二价阳离子,改善了锂吸收的水环境。更重要的是,它保持了Li/Al-LDH的结构完整性,减少了与共吸附有机物相关的降解。吸附实验证实,AC处理后锂容量增加,而吸附动力学保持不变。锂的选择性也略有提高,特别是对钙和镁的选择性。AC并非直接增强锂的吸附,而是作为一种保护性预处理,间接地实现了更高效、稳定的锂回收。这种杂质屏蔽方法为从采出水中回收关键矿物质提供了一种可扩展且环境友好的途径,符合可持续水处理和循环经济原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef53/12421675/81cb14accc59/sc5c05254_0001.jpg

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