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通过含铁高岭土制备的铁阻碍地质聚合物增强刚果红吸附及光芬顿氧化:空间、能量、氧化及协同研究

Enhanced Congo Red Adsorption and Photo-Fenton Oxidation over an Iron-Impeded Geopolymer from Ferruginous Kaolinite: Steric, Energetic, Oxidation, and Synergetic Studies.

作者信息

Adly Esraa R, Shaban Mohamed S, El-Sherbeeny Ahmed M, Al Zoubi Wail, Abukhadra Mostafa R

机构信息

Materials Technologies and Their Applications Lab, Geology Department, Faculty of Science, Beni-Suef University, Beni-Suef 65211, Egypt.

Geology Department, Faculty of Science, Beni-Suef University, Beni-Suef 65211, Egypt.

出版信息

ACS Omega. 2022 Aug 25;7(35):31218-31232. doi: 10.1021/acsomega.2c03365. eCollection 2022 Sep 6.

Abstract

An iron-impeded geopolymer (Fe/GP) was synthesized from natural ferruginous kaolinite and optical waste for enhanced decontamination of Congo red (CR) dye. The adsorption properties of Fe/GP were assessed using an advanced monolayer equilibrium model of one energy ( > 0.99). Fe/GP possessed an active site density of 391.3 mg/g, which induced an adsorption capacity of 634 mg/g at the saturation state. The number of adsorbed CR molecules per site ( = 1.56-1.62) reflected the possible uptake of two molecules per site via a multimolecular mechanism. The adsorption energy (5.12-5.7 kJ/mol) reflected the physical adsorption of the CR molecules via hydrogen bonding and/or van der Waals forces. As a catalyst, notable activity toward photo-Fenton oxidation was achieved even at high CR concentrations. Complete oxidation was observed after 30 (CR concentration: 10 mg/L), 50 (20 mg/L), 80 (30 mg/L), 120 (40 mg/L), and 140 min (50 mg/L). High oxidation efficiency was achieved using 0.1 g/L Fe/GP, 0.1 mL of hydrogen peroxide (HO), and a visible light source. Increasing the Fe/GP dosage to 0.3 g/L resulted in complete oxidation of CR (100 mg/L) after 220 min. Therefore, synthetic Fe/GP can be used as a low-cost and superior catalyst and adsorbent for the removal of CR-based contaminants via adsorption or advanced oxidation processes.

摘要

采用天然含铁高岭土和光学废料合成了一种铁阻碍地质聚合物(Fe/GP),用于增强对刚果红(CR)染料的净化效果。使用一种能量的先进单层平衡模型(>0.99)评估了Fe/GP的吸附性能。Fe/GP的活性位点密度为391.3 mg/g,在饱和状态下诱导的吸附容量为634 mg/g。每个位点吸附的CR分子数(=1.56 - 1.62)反映了通过多分子机制每个位点可能摄取两个分子。吸附能(5.12 - 5.7 kJ/mol)反映了CR分子通过氢键和/或范德华力的物理吸附。作为催化剂,即使在高CR浓度下,对光芬顿氧化也具有显著活性。在30分钟(CR浓度:10 mg/L)、50分钟(20 mg/L)、80分钟(30 mg/L)、120分钟(40 mg/L)和140分钟(50 mg/L)后观察到完全氧化。使用0.1 g/L Fe/GP、0.1 mL过氧化氢(HO)和可见光源实现了高氧化效率。将Fe/GP剂量增加到0.3 g/L导致220分钟后CR(100 mg/L)完全氧化。因此,合成的Fe/GP可作为一种低成本且优异的催化剂和吸附剂,通过吸附或高级氧化过程去除基于CR的污染物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e50f/9453960/aac36f08cd75/ao2c03365_0002.jpg

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