An innovative SiO2-pyrazole nanocomposite for Zn(II) and Cr(III) ions effective adsorption and anti-sulfate-reducing bacteria from the produced oilfield water

被引:16
作者
El-Saeed, Rasha A. [1 ]
Hosny, R. [2 ]
Mubarak, Mahmoud F. [2 ]
Abdou, Moaz M. [2 ]
Shoueir, Kamel R. [3 ,4 ]
机构
[1] Mansoura Univ, Fac Sci, Dept Chem, ET-35516 Mansoura, Egypt
[2] Egyptian Petr Res Inst, Cairo 11727, Egypt
[3] Kafrelsheikh Univ, Inst Nanosci & Nanotechnol, Kafrelsheikh 33516, Egypt
[4] Univ Strasbourg, Inst Chim & Proc Energie Environm & Sante ICPEES, CNRS UMR 7515, 25 rue Becquerel, F-67087 Strasbourg, France
关键词
Pyrazoles; Mesopores silica; Produced oilfield water; Adsorption; Zn(II) and Cr(III) ions; SRB; ORGANIC SOLAR-CELLS; MESOPOROUS SILICA; TAUTOMERIC STRUCTURE; AQUEOUS-SOLUTION; HEAVY-METALS; REMOVAL; CHROMIUM; SURFACE; OPTIMIZATION; STEEL;
D O I
10.1016/j.arabjc.2022.103949
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Novel SiO2-pyrazole (SiO2-PYZ) nanocomposite was introduced for the elimination of Zn(II) and Cr(III) from oil reservoir water. Characterization analysis of prepared SiO2-PYZ nanocomposite was investigated using SEM, FTIR, TGA, XRD, TEM, and BET. Studying the effects and optimization of the parameters such as retention time, pH, initial Cr(III) and Zn(II) ions concentrations, adsorbent dosage, and temperature were examined. For kinetics investigation, the pseudo-second-order (PSO) model matches the adsorption process effectively under different operating conditions. After applying two other isotherm models (Langmuir and Freundlich), the experimental data was adequately equipped with Langmuir, R-2 = 1. The thermodynamic results pointed that the adsorption of Zn(II) and Cr(III) ions was spontaneous, endothermic, and physisorption reaction. At pH 12, the influence of more than one ion, such as Ca(II) and Na(I), was checked, and the results revealed that this conjugate substance was highly selective to Cr(III). After washing with water in multiple cycles, the adsorbed material was regenerated with 0.1 M HCl and subsequently reused without deterioration in its case cavities. Interestingly, SiO2-PYZ was highly effective against sulfate-reducing bacteria (SRB) in the petroleum field. (C) 2022 Published by Elsevier B.V. on behalf of King Saud University.
引用
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页数:17
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