Natural deep eutectic solvent (fructose-glycine) functionalized-celite/ polyethylene glycol hydrogel nanocomposite for phosphate adsorption: Statistical analysis

被引:12
作者
Abbasi, Neha [1 ]
Khan, Suhail Ayoub [1 ]
Liu, Zhongchuang [2 ,3 ]
Khan, Tabrez Alam [1 ]
机构
[1] Jamia Millia Islamia, Dept Chem, New Delhi 110025, India
[2] Yangtze Normal Univ, Green Intelligence Environm Sch, 16 Juxian Ave,6 Fuling Dist, Chongqing, Peoples R China
[3] Yangtze Normal Univ, Chongqing Multiple source Technol Engn Res Ctr Eco, 16 Juxian Ave, Chongqing, Peoples R China
关键词
Adsorption; NADES-Cel; PEG hydrogel Nanocomposite; Phosphate; Response surface methodology; Isotherm and kinetics; AQUEOUS-SOLUTIONS; CARBON NANOTUBES; REMOVAL; WATER; THERMODYNAMICS; PERFORMANCE; ADSORBENT; KINETICS; NITRATE; OPTIMIZATION;
D O I
10.1016/j.jenvman.2022.117206
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The increasing usage of phosphate fertilizers for agricultural purposes has led to an augmented level of phos-phorus in watercourses negatively impacting the ecosystems and water quality warranting its amputation from polluted water. This article describes the preparation of a novel natural deep eutectic solvent (NADES) functionalized-celite/polyethylene glycol hydrogel nanocomposite (NADES-Cel/PEG HNC) for adsorptive phos-phate removal from water. The XRD, FTIR, SEM coupled with EDX spectroscopy, TEM, BET analysis, and pHpzc measurement were used to characterise the prepared material. Central composite design (CCD) in response surface methodology (RSM) was used for experimental design to analyse the individual and combined impact of five operational parameters on equilibrium adsorption capacity (Qe), and evaluate the optimal operating con-ditions by numerical optimization, which were obtained as: contact time (60 min), adsorbent dosage (1.0 g/L), initial [PO43-] (80 mg/L), initial solution pH (3.5), and temperature (304 K). The adsorption process was best explicated via Langmuir adsorption isotherm with a noteworthy saturation capacity, Qm of 111.80 mg PO43-/g at 298 K, and was favourable (S* = 0.99), feasible (Delta G degrees =-7.02 kJ/mol), exothermic (Delta H degrees =-8.39 kJ/mol) and physical in nature. The uptake mechanism largely involved H-bonding, electrostatic interaction, n-pi interaction and pore-filling. Uptake kinetics of PO43-was best explicated by pseudo-second order model, and the rate -determining step involved both intraparticle and liquid film diffusion mechanisms. The admirable perfor-mance of NADES-Cel/PEG HNC was signified by its competent adsorption efficacy and effectual reusability. The pertinence of the hydrogel nanocomposite for treatment of real wastewater was tested. Hence, NADES-Cel/PEG HNC might prove to be a pragmatic adsorbent for decontamination of PO43-from an aqueous environment.
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页数:13
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