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合理设计且具有分级结构的功能化铝有机框架结合壳聚糖杂化珠用于水的除氟。

Rationally designed and hierarchically structured functionalized aluminium organic frameworks incorporated chitosan hybrid beads for defluoridation of water.

作者信息

Jeyaseelan Antonysamy, Kumar Ilango Aswin, Viswanathan Natrayasamy, Naushad Mu

机构信息

Department of Chemistry, Anna University, University College of Engineering - Dindigul, Dindigul 624 622, Tamilnadu, India.

Faculty of Civil Engineering, Department of Landscape and Water Conservation, Czech Technical University in Prague, Thakurova 7, 166 29 Prague 6, Czech Republic.

出版信息

Int J Biol Macromol. 2022 May 15;207:941-951. doi: 10.1016/j.ijbiomac.2022.03.129. Epub 2022 Mar 25.

Abstract

In this present investigation, aluminium (Al) fabricated 2-aminobenzene-1,4-dicarboxylic acid (ABDC) namely Al@ABDC metal organic frameworks (MOFs) was developed for defluoridation studies. The unique advantages of developed MOFs possess high selectivity, high porosity and enhanced surface area but the developed powder form of Al@ABDC MOFs has several limitations in field applications like slow filtration and column blockage. To prevail over these troubles, biopolymer namely chitosan (CS) supported Al@ABDC MOFs namely Al@ABDC-CS beads were developed for effective fluoride adsorption from water. The synthesized Al@ABDC-CS beads were employed for the retention of fluoride in batch level. The defluoridation capacities (DCs) of Al@ABDC MOFs and Al@ABDC-CS beads were found to be 4880 and 4900 mgF kg respectively. The influencing parameters of adsorption method namely agitation time, adsorbent dosage, initial fluoride concentration, pH, co-existing anions and temperature were exploit to get utmost defluoridation capacity (DC) of Al@ABDC-CS beads. The experimental data of Al@ABDC-CS beads have been evaluated utilizing Langmuir, Fruendlich and Dubinin-Radushkevich (D-R) isotherms. The defluoridation nature of Al@ABDC-CS beads was determined by the thermodynamic parameters. The order of reaction of Al@ABDC-CS beads was studied using various kinetic models. The regeneration and field water studies of Al@ABDC-CS beads were also carried out to check their reusability and suitability at field conditions.

摘要

在本研究中,制备了铝(Al)负载的2-氨基苯-1,4-二羧酸(ABDC),即Al@ABDC金属有机框架(MOF)用于除氟研究。所制备的MOF具有高选择性、高孔隙率和增大的表面积等独特优势,但所制备的Al@ABDC MOF粉末形式在实际应用中存在一些局限性,如过滤速度慢和柱堵塞等问题。为克服这些问题,开发了生物聚合物壳聚糖(CS)负载的Al@ABDC MOF,即Al@ABDC-CS珠粒,用于从水中有效吸附氟化物。合成的Al@ABDC-CS珠粒用于批量吸附氟化物。发现Al@ABDC MOF和Al@ABDC-CS珠粒的除氟能力(DC)分别为4880和4900mgF/kg。研究了吸附方法的影响参数,即搅拌时间、吸附剂用量、初始氟化物浓度、pH值、共存阴离子和温度,以获得Al@ABDC-CS珠粒的最大除氟能力(DC)。利用朗缪尔、弗伦德利希和杜宾宁-拉杜舍维奇(D-R)等温线对Al@ABDC-CS珠粒的实验数据进行了评估。通过热力学参数确定了Al@ABDC-CS珠粒的除氟性质。使用各种动力学模型研究了Al@ABDC-CS珠粒的反应级数。还进行了Al@ABDC-CS珠粒的再生和现场水研究,以检查它们在现场条件下的可重复使用性和适用性。

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