首页> 外文期刊>ACS applied materials & interfaces >Hierarchical Porous Magnesium Oxide (Hr-MgO) Microspheres for Adsorption of an Organophosphate Pesticide: Kinetics, Isotherm, Thermodynamics, and DFT Studies
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Hierarchical Porous Magnesium Oxide (Hr-MgO) Microspheres for Adsorption of an Organophosphate Pesticide: Kinetics, Isotherm, Thermodynamics, and DFT Studies

机译:用于吸附有机磷农药的分层多孔氧化镁(HR-MgO)微球:动力学,等温线,热力学和DFT研究

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In this study, hierarchical porous magnesium oxide (Hr-MgO) microspheres have been fabricated from a hydromagnesite precursor via a facile precipitation method followed by calcination. The Hr-MgO microspheres consist of several nanosheet building blocks that generate a flowerlike architecture. Chlorpyrifos (CPF), a persistent organic pollutant, has been chosen as a model organophosphate pesticide to determine the adsorptive capacities of the fabricated Hr-MgO. The equilibrium adsorption data fits well with the Langmuir isotherm model, showing a maximum adsorption capacity of 3974 mg g(-1), which is the highest value to date. Both kinetic as well as thermodynamic parameters reveal the spontaneous, exothermic, and pseudo-second-order nature of the adsorption process due to chemisorption between the pesticide and the adsorbent. Density functional theory studies suggest the importance of hydroxylation on the MgO surface for the successful destructive adsorption, which takes place via the cleavage of S=P and Cl-C bonds resulting in the fragmentation of CPF, which is in good agreement with Fourier transform infrared and mass spectrometric studies. The present study shows the potential use of hierarchically structured porous MgO microspheres as an efficient adsorbent for the removal of CPF pollutant.
机译:在该研究中,通过煅烧然后进行煅烧,通过容纳沉淀法制造分层多孔氧化镁(HR-MgO)微球。 HR-MgO微球由几个纳米片构建块组成,产生花卉架构。已选择紫外(CPF),持续有机污染物作为有机磷酸酯杀虫剂,以确定制造的HR-MgO的吸附容量。平衡吸附数据与Langmuir等温模型很合适,显示最大吸附容量为3974 mg g(-1),这是迄今为止最高值。由于杀虫剂和吸附剂之间的化学吸附,动力学和热力学参数都揭示了吸附过程的自发性,放热和伪二阶性质。密度函数理论研究表明,通过S = P和CL-C键的裂解导致CPF的破碎,与傅里叶变换红外线的裂缝发生,羟基化对MgO表面的羟基表面对MgO表面的重要性。和质谱研究。本研究表明,潜在使用分层结构化多孔MgO微球作为用于去除CPF污染物的有效吸附剂。

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