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- W3174043787 startingPage "130943" @default.
- W3174043787 abstract "Flumequine (FLU) is a kind of fluoroquinolone antibiotics and has become a concerned pollutant as following widespread use of antibiotics and abuse to some extends. In this study, a microporous carbon derived from hydroxyl functionalized organic network (MON-OH-C) was prepared via the carbonization of a new member of MON-OH under nitrogen atmosphere at 500 °C. The adsorption kinetics, isotherm, thermodynamics and influence factors of pH, ionic strength, and humic acid on MON-OH-C for FLU adsorption were investigated in detail. The regeneration, reusability, application potentials and adsorption mechanism were further discussed. The adsorption of FLU on MON-OH-C accorded with the pseudo-second-order kinetic and Sips adsorption models. Rely on the interaction of π - π and hydrogen bonding between FLU and MON-OH-C, the maximum adsorption capacity for FLU under the static and solid phase extraction (SPE) dynamic conditions were 279.8 and 180.1 mg·g−1, which were higher than many other reported adsorbents. MON-OH-C can be anticipated as a powerful adsorbent owing to its large surface area, physical and chemical stability, good water dispersibility, high adsorption and regeneration capability. It has great application potentials in adsorption removal, SPE sample pretreatment, and fix bed column. This work promoted the development of new synthesis strategy and the extensive application of pollutant removals by MON-OH-C in environmental science." @default.
- W3174043787 created "2021-07-05" @default.
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- W3174043787 date "2022-01-01" @default.
- W3174043787 modified "2023-10-12" @default.
- W3174043787 title "Microporous carbon derived from hydroxyl functionalized organic network for efficient adsorption of flumequine: Adsorption mechanism and application potentials" @default.
- W3174043787 cites W1726232296 @default.
- W3174043787 cites W1779621291 @default.
- W3174043787 cites W1973227246 @default.
- W3174043787 cites W1974693375 @default.
- W3174043787 cites W1976528026 @default.
- W3174043787 cites W1979955392 @default.
- W3174043787 cites W1981795398 @default.
- W3174043787 cites W1984282361 @default.
- W3174043787 cites W1988255760 @default.
- W3174043787 cites W2004518493 @default.
- W3174043787 cites W2014226326 @default.
- W3174043787 cites W2018006788 @default.
- W3174043787 cites W2044116983 @default.
- W3174043787 cites W2052741283 @default.
- W3174043787 cites W2058236705 @default.
- W3174043787 cites W2062695331 @default.
- W3174043787 cites W2073408443 @default.
- W3174043787 cites W2080140391 @default.
- W3174043787 cites W2121905225 @default.
- W3174043787 cites W2155096351 @default.
- W3174043787 cites W2158704151 @default.
- W3174043787 cites W2163290634 @default.
- W3174043787 cites W2179245971 @default.
- W3174043787 cites W2188481320 @default.
- W3174043787 cites W2313247634 @default.
- W3174043787 cites W2314467578 @default.
- W3174043787 cites W2319334897 @default.
- W3174043787 cites W2321814442 @default.
- W3174043787 cites W2322543234 @default.
- W3174043787 cites W2333002903 @default.
- W3174043787 cites W2344570904 @default.
- W3174043787 cites W2345248840 @default.
- W3174043787 cites W2434591907 @default.
- W3174043787 cites W2519894723 @default.
- W3174043787 cites W2585614666 @default.
- W3174043787 cites W2598562267 @default.
- W3174043787 cites W2623281493 @default.
- W3174043787 cites W2735864365 @default.
- W3174043787 cites W2740237600 @default.
- W3174043787 cites W2743374337 @default.
- W3174043787 cites W2761939738 @default.
- W3174043787 cites W2791901574 @default.
- W3174043787 cites W2797708344 @default.
- W3174043787 cites W2891514746 @default.
- W3174043787 cites W2906102436 @default.
- W3174043787 cites W2916634053 @default.
- W3174043787 cites W2923239475 @default.
- W3174043787 cites W2936206570 @default.
- W3174043787 cites W2945518314 @default.
- W3174043787 cites W2952311218 @default.
- W3174043787 cites W2962929309 @default.
- W3174043787 cites W2973792844 @default.
- W3174043787 cites W2979506880 @default.
- W3174043787 cites W2981488324 @default.
- W3174043787 cites W2984180504 @default.
- W3174043787 cites W2987727461 @default.
- W3174043787 cites W2990140331 @default.
- W3174043787 cites W2991956814 @default.
- W3174043787 cites W2994096546 @default.
- W3174043787 cites W2995424767 @default.
- W3174043787 cites W2997337199 @default.
- W3174043787 cites W2998529906 @default.
- W3174043787 cites W3008338595 @default.
- W3174043787 cites W3012557581 @default.
- W3174043787 cites W3013791394 @default.
- W3174043787 cites W3016978053 @default.
- W3174043787 cites W3022067577 @default.
- W3174043787 cites W3026180400 @default.
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- W3174043787 cites W3047113425 @default.
- W3174043787 cites W3081014629 @default.
- W3174043787 cites W3122858560 @default.
- W3174043787 cites W3129573038 @default.
- W3174043787 cites W3129735081 @default.
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- W3174043787 doi "https://doi.org/10.1016/j.cej.2021.130943" @default.
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