首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Engineered nano-magnetic iron oxide-urea-activated carbon nanolayer sorbent for potential removal of uranium (VI) from aqueous solution
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Engineered nano-magnetic iron oxide-urea-activated carbon nanolayer sorbent for potential removal of uranium (VI) from aqueous solution

机译:用于从水溶液中潜在去除铀(VI)的工程化纳米磁性氧化物 - 脲活性炭吸附剂

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A novel magnetic nanosorbent was designed using chemical grafting of nano-magnetite (Nano-Fe3O4) with nanolayer of activated carbon (AC) via urea intermediate for the formation of Nano-Fe3O4-Urea-AC. Characterizing was carried out using FT-IR, SEM, HR-TEM, TGA, point of zero charge (Pzc) and surface area analysis. The designed sorbent maintained its magnetic properties and nanosized structure in the range of 8.7-14.1 nm. The surface area was identified as 389 m(2)/g based on the BET method. Sorption of uranyl ions from aqueous solutions was studied and evaluated in different experimental conditions. Removal of uranyl ions increased with increasing in pH value and the maximum percentage removal was established at pH 5.0. The removal and sorption processes of uranyl ions by Nano-Fe3O4-Urea-AC sorbent were studied and optimized using the batch technique. The key variables affecting removal of uranyl ions were studied including the effect of the contact time, dosage of Nano-Fe3O4-Urea-AC sorbent, reaction temperature, initial uranyl ions concentration and interfering anions and cations. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用纳米 - 磁铁矿(Nano-Fe3O4)的化学接枝设计了一种新型磁性纳米吸船剂,通过尿素中间体通过尿素中间体进行纳米半透层的纳米 - Fe3O4-脲-AC。使用FT-IR,SEM,HR-TEM,TGA,零电荷点(PZC)和表面积分析进行表征。设计的吸附剂在8.7-14.1nm的范围内保持其磁性和纳米结构。基于BET方法将表面积鉴定为389m(2)/ g。研究并在不同的实验条件下研究并评价来自水溶液的铀酰离子的吸附。除去铀酰离子随着pH值的增加而增加,并在pH5.0处建立最大百分比去除。使用批量技术研究并优化纳米-FE3O4-脲吸附剂的铀酰离子的去除和吸附过程。研究了影响铀离子除去的关键变量,包括接触时间,纳米-FE3O4-尿素-AC-AC吸附剂,反应温度,初始铀酰离子浓度和干扰阴离子和阳离子的效果。 (c)2017年Elsevier B.V.保留所有权利。

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