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首页> 外文期刊>Progress in Artificial Intelligence >Pechini synthesis using propylene glycol and various acid as stabilizing agents and characterization of Gd2NiMnO6 ceramic nanostructures with good photocatalytic properties for removal of organic dyes in water
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Pechini synthesis using propylene glycol and various acid as stabilizing agents and characterization of Gd2NiMnO6 ceramic nanostructures with good photocatalytic properties for removal of organic dyes in water

机译:Pechini合成使用丙二醇和各种酸作为稳定剂,以及Gd2NimnO6陶瓷纳米结构的表征,具有良好的光催化性能,用于去除水中有机染料

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摘要

Gd2NiMnO6 (GNMO NSs) nanostructures were synthesized via a Pechini method using propylene glycol (PG) as alkaline agent and various acid solutions as stabilizing agents. Effect of temperature, time and stabilizing agent was investigated in order to reach the finest nanostructures. The morphology, structure and magnetic property of nanostructures examined by XRD, SEM, HRTEM, FTIR, BET and VSM techniques. The photocatalytic degradation ability of GNMO NSs for the removal of different dyes from wastewater was reported. The obtained adsorbent with porous structure not only displayed fast rate adsorption, greater capacity adsorption, and promising selectivity adsorption to various dyes but also presented convenient magnetic separation characteristic. Rapid decomposition of dye observed with a rate of degradation, more than 90 % within the initial 105 min, which is qualified to the porous structure, great surface area (6.1735 m(2) g(-1)), narrow of pore size (106.09 nm) assessed from adsorption-desorption isotherms analysis of N-2 as well as outstanding electron accepting structures of the planned porous nanop articles. Consequently, prepared nanocomposite indicated the great potential to be considered as an active and rapid magnetic adsorbent for the dye removal from wastewater. (C) 2019 Published by Elsevier B.V.
机译:通过使用丙二醇(PG)作为碱性药剂和各种酸溶液作为稳定剂,通过Pechini方法合成Gd2NimnO6(Gnmo NSS)纳米结构。研究了温度,时间和稳定剂的影响,以达到最优质的纳米结构。 XRD,SEM,HRTEM,FTIR,BET和VSM技术检测的纳米结构的形态,结构和磁性。报道了GNMO NSS用于从废水中除去不同染料的光催化降解能力。具有多孔结构的获得的吸附剂不仅显示出快速吸附,更大的容量吸附,并且对各种染料的有希望的选择性吸附,而且还呈现了方便的磁分离特性。通过降解速率观察染料的快速分解,初始105分钟内的90%以上,其符合多孔结构,表面积大(6.1735M(2)G(-1)),孔径窄( 106.09nm)评估N-2的吸附 - 解吸等温度分析以及计划多孔纳米型制品的突出电子接受结构。因此,制备的纳米复合材料表明了较大的潜力被认为是从废水中去除染料的活性和快速的磁性吸附剂。 (c)2019年由elestvier b.v发布。

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