Molecular imprinting functionalization of magnetic biochar to adsorb sulfamethoxazole: Mechanism, regeneration and targeted adsorption

被引:20
|
作者
Li, Ziyang [1 ]
Tian, Weijun [1 ,2 ,3 ]
Chu, Meile [1 ]
Zou, Mengyuan [1 ]
Zhao, Jing [1 ]
机构
[1] Ocean Univ China, Minist Educ, Key Lab Marine Environm & Ecol, Qingdao 266100, Peoples R China
[2] Laoshan Lab, Qingdao 266234, Peoples R China
[3] Ocean Univ China, Coll Environm Sci & Engn, Qingdao 266100, Peoples R China
关键词
Sulfamethoxazole; Molecularly imprinted; Biochar; Adsorption; SELECTIVE EXTRACTION; BIOSORPTIVE UPTAKE; REMOVAL; SORPTION; POLYMER; SULFAMETHAZINE; DEGRADATION; PERFORMANCE; COMPOSITE; KINETICS;
D O I
10.1016/j.psep.2023.01.024
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Sulfamethoxazole (SMX), a typical medical antibiotic, is regarded as a major risk in the surface hydrosphere because of its harmful biological reaction and potential to trigger bacterial resistance. Ameliorating the hydro-sphere will become more convenient if the challenging adsorption and separation of SMX in hydrosphere are achieved. To reveal the mechanism, regeneration and targeted adsorption of SMX on a novel surface-imprinted polymer (MIP-MBC) and batch experiments were carried out in this study. MIP-MBC was prepared in organic solution using a Fe-Mn-modified biochar to selectively adsorb SMX in a water solution. Owing to the mesopores and oxygen-containing functional groups of MIP-MBC, imprinted cavities in pores are found to lead to a remarkable adsorption efficiency for SMX. The maximum adsorption capacity for SMX reaches up to 25.65 mg g-1 process matches well with the second-order kinetics and Freundlich thermodynamic model, which indicates that hydrogen bonds and electrostatic interactions are simultaneously involved in the adsorption process. After five cycles, the adsorption rate for MIP-MBC reaches 88.34%. Furthermore, MIP-MBC is applied to the binary system to remove SMX, and it can be used to accurately identify and adsorb SMX due to K`> 1 and being independent of the ion concentration. The high affinity site plays a major role in the imprinting process for SMX. This study furnishes a novel perspective for promoting the practical application and economic benefits of targeted biochar material to capture SMX in sewage purification. , which is 1.34 times that of the non-molecularly imprinted magnetic biochar (NIP-MBC). The adsorption
引用
收藏
页码:238 / 249
页数:12
相关论文
共 50 条
  • [1] Competitive adsorption of sulfamethoxazole and bisphenol A on magnetic biochar: Mechanism and site energy distribution
    Jin, Ruotong
    Zhao, Cailian
    Song, Yanxing
    Qiu, Xiaojie
    Li, Chenxi
    Zhao, Yingxin
    ENVIRONMENTAL POLLUTION, 2023, 329
  • [2] Influence of biochar thermal regeneration on sulfamethoxazole and dissolved organic matter adsorption
    Greiner, Benjamin G.
    Shimabuku, Kyle K.
    Summers, R. Scott
    ENVIRONMENTAL SCIENCE-WATER RESEARCH & TECHNOLOGY, 2018, 4 (02) : 169 - 174
  • [3] Adsorption Characteristics and Mechanism of Bisphenol A by Magnetic Biochar
    Wang, Jinpeng
    Zhang, Ming
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2020, 17 (03)
  • [4] Mechanism of adsorption and targeted degradation of antimicrobial micropollutant sulfamethoxazole in aquatic environments
    Zhang, Huiqin
    Zhang, Juan
    Ma, Chao
    Dai, Weiwen
    Ding, Yucheng
    Pi, Kewu
    Chemosphere, 2024, 365
  • [5] Adsorption Properties of Magnetic Phosphorous Camellia Oleifera Shells Biochar to Sulfamethoxazole in Water
    Han S.-P.
    Tang L.-W.
    Liu Q.
    Lin J.-L.
    Li X.-M.
    Cheng J.-H.
    Hu Y.-Y.
    Huanjing Kexue/Environmental Science, 2024, 45 (02): : 898 - 908
  • [6] Iron-activated bermudagrass-derived biochar for adsorption of aqueous sulfamethoxazole: Effects of iron impregnation ratio on biochar properties, adsorption, and regeneration
    Zeng, Shengquan
    Choi, Yong-Keun
    Kan, Eunsung
    SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 750
  • [7] Enhanced mechanism of copper doping in magnetic biochar for peroxymonosulfate activation and sulfamethoxazole degradation
    Wang, Chuanbin
    Dai, Haoxi
    Liang, Lan
    Li, Ning
    Cui, Xiaoqiang
    Yan, Beibei
    Chen, Guanyi
    JOURNAL OF HAZARDOUS MATERIALS, 2023, 458
  • [8] Adsorptive removal of imidacloprid by potassium hydroxide activated magnetic sugarcane bagasse biochar: Adsorption efficiency, mechanism and regeneration
    Ma, Yongfei
    Qi, Yong
    Yang, Lie
    Wu, Li
    Li, Ping
    Gao, Feng
    Qi, Xuebin
    Zhang, Zulin
    JOURNAL OF CLEANER PRODUCTION, 2021, 292
  • [9] Mechanism of sulfamethoxazole adsorption on wastewater-sludge-based biochar: Sludge type and modification improvement
    Yongkui Yang
    Yifeng Ling
    Longfei Wang
    Peizhe Sun
    Lin Zhao
    Hongyang Wang
    Korean Journal of Chemical Engineering, 2023, 40 : 1094 - 1102
  • [10] Physicochemical and adsorptive properties of biochar derived from municipal sludge: sulfamethoxazole adsorption and underlying mechanism
    Qiu, Xiaojie
    Zhao, Yingxin
    Zhao, Cailian
    Jin, Ruotong
    Li, Chenxi
    Mutabazi, Emmanuel
    FRONTIERS IN ENVIRONMENTAL SCIENCE, 2023, 11