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- W2966045767 endingPage "133701" @default.
- W2966045767 startingPage "133701" @default.
- W2966045767 abstract "In our previous study, biochar (BC) supported sulfidated nano zerovalent iron ([email protected]) was prepared for nitrobenzene (NB) reduction. In this study, in order to further improve the reduction performance of [email protected], BC was modified before the loading of S-nZVI through three methods: oxidant (H2O2) pretreatment, alkali (NaOH) pretreatment and acid (HCl) pretreatment. The results indicated that S-nZVI could be evenly distributed onto HCl-BC due to increased surface area, negative surface charge and increased acidic functional groups on HCl-BC. At an initial concentration of 200 mg L−1, NB could be completely removed by [email protected] within a reaction time as short as 60 min, indicating rather excellent performance of [email protected] NB reduction performance followed the order: [email protected] > [email protected] > [email protected] > [email protected]2O2-BC. The mass ratio of S-nZVI and HCl-BC was optimized in terms of NB removal efficiency, with 3:1 being identified as the best mass ratio. Furthermore, the mechanism involved in the enhanced NB reduction by [email protected] was proposed. This study demonstrated that [email protected] is a promising alternative for efficient NB removal from wastewater." @default.
- W2966045767 created "2019-08-13" @default.
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- W2966045767 date "2019-12-01" @default.
- W2966045767 modified "2023-10-16" @default.
- W2966045767 title "Enhanced nitrobenzene reduction by modified biochar supported sulfidated nano zerovalent iron: Comparison of surface modification methods" @default.
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- W2966045767 doi "https://doi.org/10.1016/j.scitotenv.2019.133701" @default.
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