Adly Esraa R, Shaban Mohamed S, El-Sherbeeny Ahmed M, Al Zoubi Wail, Abukhadra Mostafa R
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.
ACS Omega. 2022 Aug 25;7(35):31218-31232. doi: 10.1021/acsomega.2c03365. eCollection 2022 Sep 6.
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.
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。