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采用快速冻结支撑法制备氮自掺杂分级多孔碳用于过硫酸盐协同污染物吸附与催化氧化。

Preparation of nitrogen self-doped hierarchical porous carbon with rapid-freezing support for cooperative pollutant adsorption and catalytic oxidation of persulfate.

机构信息

Shanghai Key Laboratory of Materials Protection and Advanced Materials in Electric Power, Shanghai University of Electric Power, Shanghai 200090, PR China.

Shanghai Key Laboratory of Materials Protection and Advanced Materials in Electric Power, Shanghai University of Electric Power, Shanghai 200090, PR China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200090, PR China..

出版信息

Sci Total Environ. 2021 Jan 15;752:142282. doi: 10.1016/j.scitotenv.2020.142282. Epub 2020 Sep 8.

Abstract

Herein, we report a method to synthesize nitrogen self-doped hierarchical porous carbon materials derived from chitosan. This method uses potassium hydroxide (KOH) activation and rapid-freezing technology. The catalyst (CA-900Q 1-1) obtained after rapid-freezing and KOH activation treatment show excellent persulfate activation ability. It can remove 20 mg bisphenol A (BPA) within 10 min better than traditional metal oxidate and nanomaterials. In the aquatic environment, CA-900Q 1-1 has a high resistance to inorganic anions. CA-900Q 1-1, possessing a high proportion of graphitic nitrogen, provides a sufficient number of active sites for persulfate activation. In addition, the catalyst yielded sizeable specific surface areas (SSAs) (1756.1 m/g) and a hierarchical pore structure, which helps to improve the mass transfer in the carbon framework. The efficient adsorption of pollutants by the catalyst shortens the time required for target organic molecules to migrate to the catalyst surface and hierarchical pore structure. Furthermore, the catalyst has excellent electrical conductivity (R = 1.73 Ω), which enables pollutants adsorbed on the catalyst surface to transfer electrons to the persulfate through the N-doped sp-hybrid carbon network faster.

摘要

本文报道了一种由壳聚糖衍生的氮自掺杂分级多孔碳材料的合成方法。该方法采用了氢氧化钾(KOH)活化和快速冷冻技术。快速冷冻和 KOH 活化处理后得到的催化剂(CA-900Q 1-1)表现出优异的过硫酸盐活化能力,在 10 分钟内可以更好地去除 20mg 双酚 A(BPA),优于传统的金属氧化物和纳米材料。在水相环境中,CA-900Q 1-1 对无机阴离子具有较高的抵抗力。CA-900Q 1-1 具有较高比例的石墨型氮,为过硫酸盐的活化提供了足够数量的活性位点。此外,催化剂具有较大的比表面积(SSAs)(1756.1 m/g)和分级孔结构,有助于提高碳骨架中的传质。催化剂对污染物的高效吸附缩短了目标有机分子迁移到催化剂表面和分级孔结构的时间。此外,催化剂具有优异的导电性(R = 1.73 Ω),使吸附在催化剂表面的污染物通过 N 掺杂的 sp 杂化碳网络更快地将电子转移到过硫酸盐。

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