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一锅溶液燃烧合成多孔球形镁锌二元氧化物用于高效除氟和光催化降解亚甲基蓝和刚果红染料。

One-pot solution combustion synthesis of porous spherical-shaped magnesium zinc binary oxide for efficient fluoride removal and photocatalytic degradation of methylene blue and Congo red dye.

机构信息

Department of Chemistry, Sidho-Kanho-Birsha University, Purulia, West Bengal, 732104, India.

出版信息

Environ Sci Pollut Res Int. 2023 Jul;30(34):81386-81402. doi: 10.1007/s11356-022-22551-6. Epub 2022 Aug 23.

Abstract

A novel porous spherical-shaped magnesium zinc binary oxide (MZO) was successfully prepared for the first time using a chemical process for fluoride removal and photocatalytic methylene blue (MB) and Congo red (CR) dye degradation. XRD, FESEM, and TEM were studied for phase formation, topographic, crystallographic, and detailed structural information. The surface charge and optical properties of the adsorbent were studied by zeta potential and photoluminescence spectra. The synthesized nano-adsorbents showed high fluoride removal capacity (43.10 mg/g) and photocatalytic activity with a degradation efficiency of 97.83% and 78.40% for MB and CR, respectively. The adsorption was strongly pH-dependent and worked well in the range 6-9. The kinetic studies were performed for both fluoride removal and dye degradation and were found to follow pseudo-second-order and first-order rate law, respectively. The samples were found to be extremely reusable and selective for fluoride removal in presence of co-ions such as NO, SO, and Cl. The basic fluoride adsorption process of the samples can be related to ion exchange and electrostatic interactions, according to XPS and FTIR data. The detailed mechanistic study of photocatalytic dye degradation showed that the reaction occurred via OH radicals. Thus, MZO could be considered an effective and quick adsorbent for water purification in fluoride-containing groundwater and industrial dye wastewater.

摘要

首次采用化学法成功制备了一种新颖的多孔球形镁锌二元氧化物(MZO),用于去除氟化物以及光催化降解亚甲基蓝(MB)和刚果红(CR)染料。通过 XRD、FESEM 和 TEM 研究了相形成、形貌、结晶和详细的结构信息。通过动电位和光致发光光谱研究了吸附剂的表面电荷和光学性质。所合成的纳米吸附剂表现出高的氟去除能力(43.10mg/g)和光催化活性,对 MB 和 CR 的降解效率分别达到 97.83%和 78.40%。吸附强烈依赖 pH 值,在 6-9 范围内效果良好。对氟去除和染料降解均进行了动力学研究,发现分别遵循准二级和一级速率定律。在存在共存离子(如 NO、SO 和 Cl)的情况下,样品对氟的去除具有极好的可重复使用性和选择性。根据 XPS 和 FTIR 数据,样品的基本氟吸附过程可以与离子交换和静电相互作用相关联。光催化染料降解的详细机理研究表明,反应是通过 OH 自由基发生的。因此,MZO 可以被认为是一种有效且快速的含氟地下水和工业染料废水净化用吸附剂。

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