Stable cellulose-based porous binary metal-organic gels as highly efficient adsorbents and their application in an adsorption bed for chlortetracycline hydrochloride decontamination

被引:23
|
作者
Liu, Meijun [1 ]
Zou, Donglei [1 ]
Ma, Taigang [1 ]
Liu, Zhi [3 ]
Yu, Haiyang [1 ]
Li, Yangxue [1 ,2 ]
Qiao, Zhen-An [4 ]
机构
[1] Jilin Univ, Key Lab Groundwater Resources & Environm, Minist Educ, 2519 Jiefang Rd, Changchun 130021, Peoples R China
[2] Jilin Univ, State Key Lab Superhard Mat, 2699 Qianjin St, Changchun 130012, Peoples R China
[3] Jilin Jianzhu Univ, Sch Municipal & Environm Engn, 5088 Xincheng St, Changchun 130118, Peoples R China
[4] Jilin Univ, State Key Lab Inorgan Synth & Preparat Chem, 2699 Qianjin St, Changchun 130012, Peoples R China
基金
中国国家自然科学基金;
关键词
ACCELERATED PHOTOCATALYTIC DEGRADATION; PHARMACEUTICAL WASTE-WATER; EQUILIBRIA. WRONG USE; ONE-STEP SYNTHESIS; GRAPHENE OXIDE; AQUEOUS-SOLUTIONS; MICROCRYSTALLINE CELLULOSE; THERMODYNAMIC PARAMETERS; ANTIBIOTICS REMOVAL; CARBON NANOTUBES;
D O I
10.1039/c9ta13818h
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
To exploit adsorbents for removing refractory pollutants from aquatic environments, three novel bimetallic MOGs, JLUE-MOG-3, JLUE-MOG-4 and JLUE-MOG-5, with diverse large surface areas that could be controlled by varying the content of Fe or Al ions, were synthesized by a solvothermal method for chlortetracycline hydrochloride (CTC) capture. The obtained JLUE-MOG aerogels, with strong chemical and mechanical stability, showed strong CTC adsorption capacities as high as 1841.62, 1600.00 and 1396.65 mg g(-1) at 25 degrees C, respectively, according to the Langmuir model. Beyond the porousness and electrostatic interactions, hydrogen-bonding interactions, water affinity and pi-pi interactions may also combine to contribute to the superb CTC removal. Furthermore, the interactions between influencing factors and the optimized experimental conditions were simulated by response surface methodology (RSM). Moreover, in order to enhance the practicability, cellulose aerogels were introduced as 3D porous support skeletons for the in situ growth of JLUE-MOG-4. As immobilized adsorbents, JLUE-MOG-4@cellulose composite aerogels exhibited a CTC removal efficiency of >95.00% during sustained 24 h operation in a custom-made adsorption bed. This work provides an in situ growth strategy for bringing MOGs into practical water remediation applications, with stable, efficient, processable and environmentally friendly features.
引用
收藏
页码:6670 / 6681
页数:12
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