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采用两步水热诱导组装法制备 N 掺杂纤维素基水热碳,用于从废水中高效去除 Cr(VI)。

Preparation of N-doped cellulose-based hydrothermal carbon using a two-step hydrothermal induction assembly method for the efficient removal of Cr(VI) from wastewater.

机构信息

College of Geography and Environment, Shandong Normal University, Jinan, 250014, China.

College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, China.

出版信息

Environ Res. 2023 Feb 15;219:115015. doi: 10.1016/j.envres.2022.115015. Epub 2022 Dec 17.

Abstract

Cr(VI) pollution is a growing problem that causes the deterioration of the environment and human health. We report the development of an effective adsorbent for the removal of Cr(VI) from wastewater. N-doped cellulose-based hydrothermal carbon (N-CHC) was prepared via a two-step hydrothermal method. The morphology and structural properties of N-CHC were investigated by various techniques. N-CHC has many O and N groups, which are suitable for Cr(VI) adsorption and reduction. Intermittent adsorption experiments showed that N-CHC had an adsorption capacity of 151.05 mg/g for Cr(VI) at pH 2, indicating excellent adsorption performance. Kinetic and thermodynamic analyses indicates that the adsorption of Cr(VI) on N-CHC follows a monolayer uniform adsorption process, which is a spontaneous endothermic process dominated by chemical interaction and limited by diffusion within particles. In a multi-ion system (Pb, Cd, Mn, Cl, and SO), the selectivity of N-CHC toward Cr(VI) was 82.62%. In addition, N-CHC demonstrated excellent reuse performance over seven adsorption-desorption cycles; the Cr(VI) removal rate of N-CHC in 5-20 mg/L wastewater was >99.87%, confirming the potential of N-CHC for large-scale applications. CN/C-OR, pyridinic-N, and pyrrolic-N were found to play a critical role in the adsorption process. This study provides a new technology for Cr(VI) pollution control that could be utilized in large-scale production and other environmental applications.

摘要

六价铬污染是一个日益严重的问题,它导致了环境和人类健康的恶化。我们报告了一种从废水中去除六价铬的有效吸附剂的开发。通过两步水热法制备了氮掺杂纤维素基水热碳(N-CHC)。通过各种技术研究了 N-CHC 的形貌和结构特性。N-CHC 具有许多 O 和 N 基团,非常适合 Cr(VI) 的吸附和还原。间歇吸附实验表明,N-CHC 在 pH 2 下对 Cr(VI)的吸附容量为 151.05mg/g,表明具有优异的吸附性能。动力学和热力学分析表明,Cr(VI)在 N-CHC 上的吸附遵循单层均匀吸附过程,是一个自发的吸热过程,主要受化学相互作用和颗粒内扩散的限制。在多离子体系(Pb、Cd、Mn、Cl 和 SO)中,N-CHC 对 Cr(VI)的选择性为 82.62%。此外,N-CHC 在七个吸附-解吸循环中表现出优异的可重复使用性能;N-CHC 在 5-20mg/L 废水中对 Cr(VI)的去除率>99.87%,证实了 N-CHC 具有大规模应用的潜力。CN/C-OR、吡啶-N 和吡咯-N 被发现对吸附过程起着关键作用。本研究为六价铬污染控制提供了一种新技术,可用于大规模生产和其他环境应用。

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