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用于去除水中磷的氧化锌纳米颗粒的生物合成方法:物理化学性质及抗菌活性

Biosynthesis approach of zinc oxide nanoparticles for aqueous phosphorous removal: physicochemical properties and antibacterial activities.

作者信息

Khamis Mona, Gouda Gamal A, Nagiub Adham M

机构信息

Department of Chemistry, Faculty of Science, Al-Azhar University, Assiut, 71524, Egypt.

出版信息

BMC Chem. 2023 Aug 16;17(1):99. doi: 10.1186/s13065-023-01012-2.

Abstract

In this study, phosphorus (PO-P) is removed from water samples using zinc oxide nanoparticles (ZnO NPs). These nanoparticles are produced easily, quickly, and sustainably using Onion extracts (Allium cepa) at an average crystallite size of 8.13 nm using the Debye-Scherrer equation in the hexagonal wurtzite phase. The characterization and investigation of bio-synthesis ZnO NPs were carried out. With an initial concentration of 250 mg/L of P, the effects of the adsorbent dose, pH, contact time, and temperature were examined. At pH = 3 and T = 300 K, ZnO NPs achieved the optimum sorption capacity of 84 mg/g, which was superior to many other adsorbents. The isothermal study was found to fit the Langmuir model at a monolayer capacity of 89.8 mg/g, and the kinetic study was found to follow the pseudo-second-order model. The adsorption process was verified to be endothermic and spontaneous by thermodynamic characteristics. As a result of their low cost as an adsorbent and their high metal absorption, ZnO NPs were found to be the most promising sorbent in this investigation and have the potential to be used as effective sorbents for the removal of P from aqueous solutions. The antimicrobial activity results showed that ZnO NPs concentration had greater antibacterial activity than conventional Cefotaxime, which was utilized as a positive control in the inhibitory zone. However, no inhibitory zone was visible in the controlled wells that had been supplemented with onion extract and DMSO.

摘要

在本研究中,使用氧化锌纳米颗粒(ZnO NPs)从水样中去除磷(PO-P)。这些纳米颗粒使用洋葱提取物(葱属植物)以六方纤锌矿相平均微晶尺寸8.13 nm轻松、快速且可持续地制备。对生物合成的ZnO NPs进行了表征和研究。在磷初始浓度为250 mg/L的情况下,考察了吸附剂剂量、pH值、接触时间和温度的影响。在pH = 3和T = 300 K时,ZnO NPs达到了84 mg/g的最佳吸附容量,优于许多其他吸附剂。等温研究发现符合朗缪尔模型,单层容量为89.8 mg/g,动力学研究发现遵循准二级模型。通过热力学特性验证吸附过程是吸热且自发的。由于ZnO NPs作为吸附剂成本低且金属吸附量高,在本研究中被发现是最有前景的吸附剂,有潜力用作从水溶液中去除磷的有效吸附剂。抗菌活性结果表明,ZnO NPs浓度的抗菌活性高于用作抑菌圈阳性对照的传统头孢噻肟。然而,在补充了洋葱提取物和二甲基亚砜的对照孔中未观察到抑菌圈。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/882a/10428629/f6effe57f11d/13065_2023_1012_Fig1_HTML.jpg

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