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Preparation of magnetic metal-organic frameworks with high binding capacity for removal of two fungicides from aqueous environments 期刊论文
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2020, 卷号: 90, 页码: 178-189
作者:  Ma, Jiping;  Li, Shuang;  Wu, Gege;  Arabi, Maryam;  Tan, Feng;  Guan, Yafeng;  Li, Jinhua;  Chen, Lingxin
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Fungicide  Metal-organic frameworks (MOFs)  Magnetic separation  Adsorptive removal  Water treatment  
Possible effect of submarine groundwater discharge on the pollution of coastal water: Occurrence, source, and risks of endocrine disrupting chemicals in coastal groundwater and adjacent seawater influenced by reclaimed water irrigation 期刊论文
CHEMOSPHERE, 2020, 卷号: 250, 页码: 126323
作者:  Lu, Jian;  Wu, Jun;  Zhang, Cui;  Zhang, Yuxuan
Adobe PDF(2105Kb)  |  收藏  |  浏览/下载:722/313  |  提交时间:2020/07/08
PERSONAL CARE PRODUCTS  WASTE-WATER  NONYLPHENOL POLYETHOXYLATES  ESTROGENIC POTENCY  NUTRIENT FLUXES  TREATMENT-PLANT  COMPOUNDS EDCS  BISPHENOL-A  IN-VITRO  SEDIMENT  
Spatial and temporal variations of antibiotics in a tidal river 期刊论文
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2020, 卷号: 192, 期号: 6, 页码: 336
作者:  Li, Jia;  Cui, Min;  Zhang, Hua
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WATER TREATMENT PLANTS  WASTE-WATER  RESISTANCE GENES  CHINA IMPACTS  LAIZHOU BAY  SEASONAL-VARIATION  YANGTZE ESTUARY  RISK-ASSESSMENT  SURFACE WATERS  XIAOQING RIVER  
Enhanced ozonation of antibiotics using magnetic Mg(OH)(2) nanoparticles made through magnesium recovery from discarded bischofite 期刊论文
CHEMOSPHERE, 2020, 卷号: 238, 页码: UNSP 124694
作者:  Lu, J;  Sun, Q;  Wu, J;  Zhu, GC
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Fe3O4@Mg(OH)(2) magnetic nanoparticles  Water treatment  Antibiotics  Catalytic ozonation  Core-shell structure  Antibacterial activity  
近海环境中抗生素分析样品前处理技术的研究进展 期刊论文
色谱, 2020, 卷号: 38, 期号: 1, 页码: 95-103
作者:  吕敏;  陈令新
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抗生素  近海  前处理技术  综述  antibiotics  coastal  pretreatment techniques  review  The widespread and massive usage of antibiotics for the prevention and treatment of diseases in human and animals have resulted in their continuous discharge into the environment, and finally, into the coastal environment through various pathways. Accumulation of antibiotics in aquatic organisms poses a great threat to ecological and human health, especially because it facilitates the generation and spread of bacterial resistance. Given the diverse range of antibiotics with various features, as well as their presence at low concentrations in the environment, it is imperative to develop pretreatment techniques for antibiotics in various matrices. In this paper, the pretreatment methods proposed in recent decades for antibiotics in coastal water, sediment, and biota are summarized, with emphasis on commonly used methods such as solid-phase extraction, solid-liquid extraction, matrix solid-phase dispersion, and QuEChERS. Additionally, the potential factors influencing the extraction performance and clean-up efficiency are analyzed. The advantages and disadvantages of the methods and their development are finally discussed.