数字农科院2.0

Efficient recovery of rare metal lanthanum from water by MOF-modified biochar: DFT calculation and dynamic adsorption

文献类型: 外文期刊

作者: Huang, Qilan;Zhang, Qianru;Zhao, Shuwen;Zhang, Chuchen;Guan, Huixin;Liu, Jianqiao

作者机构:

关键词: Biochar;Fe-MOF;Adsorption;Rare earth element;Density functional theory

期刊名称: BIOCHAR

ISSN: 2524-7972

年卷期: 2025 年 7 卷 1 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 农林核心(2024版)

摘要: In this research, a novel metal-organic framework-modified biochar composite (MIL-88b@BC) was created for the first time by modifying rice husk biochar using the excellent adsorption properties of metal-organic framework (MOF), as well as reducing the solubility of MOF using biochar as a substrate, aiming to improve the understanding of the adsorption characteristics of rare-earth metal recycling and to predict its adsorption mechanism. Density functional theory (DFT) computations allowed for rationally constructing the adsorption model. According to DFT calculations, the primary processes involved in the adsorption of La3+ were pi-pi interaction and ligand exchange, wherein the surface hydroxyl group played a crucial role. MIL-88b@BC interacted better with La3+ than biochar or MOF did. Accompanying batch tests with the theoretical conjecture's verification demonstrated that the pseudo-second-order model and the Langmuir model, respectively, provided a good fit for the adsorption kinetics and isotherms. The maximum La3+ adsorption capacity of MOF@BC (288.89 mg g-1) was achieved at pH 6.0, which was significantly higher than the adsorbents' previously documented adsorption capacities. Confirming the DFT estimations, the adsorption capacity of BC@MIL-88b for La3+ was higher than that of MOF and BC. Additionally, MOF@BC can be recycled at least four times. To mitigate the growing scarcity of rare earth elements (REEs) and lessen their negative environmental effects, this work laid the path for effectively treating substantial volumes of wastewater produced while mining REEs.HighlightsThe novel composite adsorbent was prepared by MOF and biochar in situ growth method.The adsorption mechanism was innovatively investigated based on DFT calculations.Ligand exchange and La-O-Fe formation dominated in lanthanide ion removal.

分类号:

  • 相关文献

[1]B-site metal modulation of phosphate adsorption properties and mechanism of LaBO3 (B=Fe, Al and Mn) perovskites. Guo, Changbin, Li, Mengmeng, Feng, Menghan,Yuan, Mingyao,Qiu, Shangkai, Zhang, Lisheng,Fu, Weilin,Zhou, Jien,Zhang, Keqiang,Luo, Yanli,Wang, Feng. 2023

[2]In-situ stabilization of conjugated microporous polymer on sieve plates for multifunctional applications: Detection and removal of aflatoxins. Fei Ma,Yajie He,Fen Tang,Lina Fu,Liangxiao Zhang,Peiwu Li,Li Yu. 2025

[3]Effects of Biochar Amendment on Chloropicrin Adsorption and Degradation in Soil. Wang, Qiuxia,Yan, Dongdong,Fang, Wensheng,Mao, Liangang,Li, Yuan,Ouyang, Canbin,Guo, Meixia,Cao, Aocheng,Wang, Dong. 2016

[4]Efficiency of Soil Amendments for Copper Removal and Brassica Juncea (L.) Growth in Wastewater Irrigated Agricultural Soil. Bashir, Saqib,Bashir, Safdar,Gulshan, Allah Bakhsh,Iqbal, Javaid,Diao, Zeng-Hui,Hassan, Waseem,Al-Hashimi, Abdulrahman,Elshikh, Mohamed S.,Chen, Zhongbing. 2022

[5]A critical review on the development of lanthanum-engineered biochar for environmental applications. Yang L.,Liang C.,Shen F.,Hu M.,Zhu W.,Dai L.. 2023

[6]COMPARATION AMONG SORPTIVE REDUCTIONS IN AGRICULTURAL CADMIUM DIFFUSE LOSS BY FOUR DIFFERENT MATERIALS DERIVED BIOCHAR AMENDED SOIL. Yang, Hao,Jing, Ming,Bai, Yongquan,Yang, Bo,Zheng, Dan,Jiao, Wei. 2021

[7]Nano-hydroxyapatite modified biochar: Insights into the dynamic adsorption and performance of lead (II) removal from aqueous solution. Ahmed W.,Xu T.,Mahmood M.,Núñez-Delgado A.,Ali S.,Shakoor A.,Qaswar M.,Zhao H.,Liu W.,Li W.,Mehmood S.. 2022

[8]Tuning oxygenated functional groups on biochar for water pollution control: A critical review. Lichun Dai,Qian Lu,Haiqin Zhou,Fei Shen,Zhengang Liu,Wenkun Zhu,Huagang Huang. 2021

[9]Highly efficient uranium (VI) capture from aqueous solution by means of a hydroxyapatite-biochar nanocomposite: Adsorption behavior and mechanism. Waqas Ahmed,Avelino Núñez-Delgado,Sajid Mehmood,Sehrish Ali,Muhammad Qaswar,Awais Shakoor,Di Yun Chen. 2021

[10]La-activated biochar addition improves phosphorus adsorption performance in soil: Competitive adsorption dominated by organic phosphorus. Zhao, Di,Zhang, Li-sheng,Li, Meng-meng,Qiu, Shang-kai,Zhang, Ke-qiang,Wang, Feng. 2024

[11]Biochar derivation at low temperature: A novel strategy for harmful resource usage of antibiotic mycelial dreg. Jing Yan,Xueqi Guo,Qingjie Li,Xufeng Yuan,Zhenghai Zhang,Louis A. Tremblay,Zhaojun Li. 2024

[12]Preparation, characteristics and mechanisms of Cd(II) adsorption from aqueous solution by mango kernel-derived biochar. Zhang, Yuzhe,Zhang, Liming,Han, Chuan,Ren, Yanfang,Ji, Yu,Ge, Yunjie,Li, Zhaojun,He, Junyu. 2022

[13]Adsorption removal of cyclolinopeptide E from linseed oil using sodium chloride-induced walnut shell biochar: Kinetic and mechanism. Tingting Guo,Chuyun Wan,Tieliang Liu,Jianwu Xi,Qianchun Deng,Fenghong Huang,Rui Liu. 2025

[14]Electronic Structure Comparison between Pyrimorph and Its Phenyl Analog. Feng Zhen-Gao,Li Chang,Qin Zhao-Hai,Yuan Hui-Zhu. 2010

[15]Thermally induced isomerization of linoleic acid in soybean oil. Li, An,Li, Weiming,Wang, Feng,Ha, Yiming,Li, An,Yuan, Binfang.

[16]Antibody-free colorimetric determination of total aflatoxins by mercury(II)-mediated aggregation of lysine-functionalized gold nanoparticles. Du, Bibai,Xiao, Can,Zhou, Ying,Wu, Li,Zhao, Hong,Yang, Jingkui,He, Yujian,Wang, Peilong,Su, Xiaoou,Wu, Li,He, Yujian.

[17]Action of phytosterols on thermally induced trans fatty acids in peanut oil. Qin Guo,Tian Li,Yang Qu,Xinping Wang,Li Liu,Hongzhi Liu,Qiang Wang. 2021

[18]Z-scheme Bi2O3/CuBi2O4 heterojunction enabled sensitive photoelectrochemical detection of aflatoxin B1 for health care, the environment, and food. Xiao Chen,Wenqin Wu,Qi Zhang,Cheng Wang,Yingying Fan,Huimin Wu,Zhaowei Zhang. 2022

[19]Polarity-controlled deep eutectic solvents-based biphasic system for the selective separation of geniposidic acid and aucubin from Eucommia ulmoides male flowers. Yicong Wang,Leilei Liu,Zhijian Tan. 2022

[20]Assembled Reduced Graphene Oxide/Tungsten Diselenide/Pd Heterojunction with Matching Energy Bands for Quick Banana Ripeness Detection. Xian Li,Chengcheng Xu,Xiaosong Du,Zhen Wang,Wenjun Huang,Jie Sun,Yang Wang,Zhemin Li. 2022

作者其他论文 更多>>