零价铁
介孔材料
反应性(心理学)
化学工程
碳纤维
材料科学
水溶液
纳米材料
纳米颗粒
纳米技术
多孔性
镍
化学
催化作用
吸附
有机化学
复合数
冶金
复合材料
病理
工程类
替代医学
医学
作者
Junming Shi,Jing Wang,Wei Wang,Wei Teng,Wei‐xian Zhang
标识
DOI:10.1016/j.jes.2019.02.010
摘要
Two challenges persist in the applications of nanoscale zero-valent iron (nZVI) for environmental remediation and waste treatment: limited mobility due to rapid aggregation and short lifespan in water due to quick oxidation. Herein, we report the nZVI incorporated into mesoporous carbon (MC) to enhance stability in aqueous solution and mobility in porous media. Meanwhile, the reactivity of nZVI is preserved thanks to high temperature treatment and confinement of carbon framework. Small-sized (~ 16 nm) nZVI nanoparticles are uniformly dispersed in the whole carbon frameworks. Importantly, the nanoparticles are partially trapped across the carbon walls with a portion exposed to the mesopore channels. This unique structure not only is conductive to hold the nZVI tightly to avoid aggregation during mobility but also provides accessible active sites for reactivity. This new type of nanomaterial contains ~ 10 wt% of iron. The [email protected] possesses a high surface area (~ 500 m2/g) and uniform mesopores (~ 4.2 nm) for efficient pollutant diffusion and reactions. Also, high porosity of [email protected] contributes to the stability and mobility of nZVI. Laboratory column experiments further demonstrate that [email protected] suspension (~ 4 g Fe/L) can pass through sand columns much more efficiently than bare nZVI while the high reactivity of [email protected] is confirmed from reactions with Ni(II). It exhibits remarkably better performance in nickel (20 mg/L) extraction than mesoporous carbon, with 88.0% and 33.0% uptake in 5 min, respectively.
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