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基于纤维素的固体胺吸附剂的结构设计用于完全去除和比色检测 Cr(VI)。

Structural Design of a Cellulose-Based Solid Amine Adsorbent for the Complete Removal and Colorimetric Detection of Cr(VI).

机构信息

College of Light Industry and Food Engineering , Guangxi University , Nanning 530004 , PR China.

Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control , Nanning 530004 , PR China.

出版信息

Langmuir. 2019 Oct 1;35(39):12636-12646. doi: 10.1021/acs.langmuir.9b01788. Epub 2019 Sep 18.

Abstract

A cellulose-based solid amine adsorbent (MCC/TEPAA) with high amino density for the detection and removal of Cr(VI) was designed and prepared through using epichlorohydrin cross-linking with MCC (microcrystalline cellulose) and tetraethylenepentamine (TEPA). The structure and amino density of the cellulose-based solid amine adsorbents could be tailored by adjusting the structure of the amines (triethylenetetramine or diethylenetriamine). The as-prepared cellulose-based solid amine adsorbents could detect and completely remove Cr(VI) from water, and the concentration of Cr(VI) solution after adsorption met the standard concentration of Cr(VI) solution for drinking water (0.05 mg/L). In particular, the MCC/TEPAA, supported by MCC with porosity as a framework, promoted the adsorption rate (adsorption equilibrium within only 10 min), removal rate (100%) of Cr(VI), and adsorption capacity (327.72 mg/g). In addition, the limit of colorimetric detection of Cr(VI) by MCC/TEPAA was 0.5 mg/L at 20 min when other interfering heavy metal ions exist. The adsorption and colorimetric detection mechanism of Cr(VI) on MCC/TEPAA was proposed to include electrostatic interactions, chelating reactions, and oxidation-reduction reactions, all of which contributed to the excellent adsorption and detection performance.

摘要

一种基于纤维素的固体胺吸附剂(MCC/TEPAA),具有高氨基密度,可用于检测和去除 Cr(VI),通过使用环氧氯丙烷与 MCC(微晶纤维素)和四乙烯五胺(TEPA)交联制备而成。通过调整胺的结构(三乙烯四胺或二乙烯三胺),可以调整基于纤维素的固体胺吸附剂的结构和氨基密度。所制备的基于纤维素的固体胺吸附剂可以从水中检测和完全去除 Cr(VI),吸附后 Cr(VI)溶液的浓度符合饮用水中 Cr(VI)溶液的标准浓度(0.05mg/L)。特别是,MCC/TEPAA 以具有多孔性的 MCC 作为框架,促进了 Cr(VI)的吸附速率(仅 10 分钟即可达到吸附平衡)、去除率(100%)和吸附容量(327.72mg/g)。此外,当存在其他干扰重金属离子时,MCC/TEPAA 对 Cr(VI)的比色检测限在 20 分钟时为 0.5mg/L。提出了 MCC/TEPAA 对 Cr(VI)的吸附和比色检测机制,包括静电相互作用、螯合反应和氧化还原反应,所有这些都有助于其具有优异的吸附和检测性能。

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