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改性累托石吸附溶液中铀U(Ⅵ)的研究 被引量:6
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作者 郭亚丹 梁平 +1 位作者 李效萌 刘明清 《中国陶瓷》 CAS CSCD 北大核心 2014年第7期24-27,36,共5页
研究了改性累托石吸附去除溶液中的铀U(VI)。考察pH值、吸附剂投加量、吸附时间、初始U(VI)质量浓度对铀U(VI)去除效果的影响。实验结果表明,溶液中U(VI)质量浓度为10 mg/L;改性累托石投加量为10 g/L;溶液pH为5.0;吸附时间为360 min是... 研究了改性累托石吸附去除溶液中的铀U(VI)。考察pH值、吸附剂投加量、吸附时间、初始U(VI)质量浓度对铀U(VI)去除效果的影响。实验结果表明,溶液中U(VI)质量浓度为10 mg/L;改性累托石投加量为10 g/L;溶液pH为5.0;吸附时间为360 min是实验最佳处理工艺条件。改性累托石对U(VI)的吸附量可达到35.5 mg/g,U(VI)去除率可达到98%。改性累托石吸附溶液中铀U(VI)的吸附规律较好的符合Freundlich吸附等温方程式,并且吸附动力学可用准二级动力学方程来描述。 展开更多
关键词 改性累托石 吸附 u(vi) 动力学
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聚苯胺改性Mxene复合材料对U(VI)的高效富集及机理研究 被引量:18
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作者 顾鹏程 宋爽 +3 位作者 张塞 韦犇犇 文涛 王祥科 《化学学报》 SCIE CAS CSCD 北大核心 2018年第9期701-708,共8页
采用原位聚合法合成新型PANI/Ti_3C_2T_x有机无机复合纳米材料,并应用于对U(VI)的吸附去除研究.实验结果表明:整个吸附过程受溶液pH和离子强度影响较大,在pH=5.0,室温条件下PANI/Ti_3C_2T_x对U(VI)表现出较高的吸附容量(102.8 mg/g),这... 采用原位聚合法合成新型PANI/Ti_3C_2T_x有机无机复合纳米材料,并应用于对U(VI)的吸附去除研究.实验结果表明:整个吸附过程受溶液pH和离子强度影响较大,在pH=5.0,室温条件下PANI/Ti_3C_2T_x对U(VI)表现出较高的吸附容量(102.8 mg/g),这一数值远远高于原始Ti_3C_2T_x对U(VI)的饱和吸附量(36.6 mg/g).此外,结合傅立叶变换红外光谱(Fourier transform infrared spectrometry,FTIR)和X射线光电子能谱(X-ray photoelectron spectroscopy,XPS)的分析结果表明PANI/Ti_3C_2T_x中含氧官能团和氨基基团与U(VI)发生络合作用,从而大大提高了其吸附性能.基于此研究,PANI/Ti_3C_2T_x可作为具有前景的复合材料应用于含U(VI)废水的净化中. 展开更多
关键词 PANI/Ti3C2Tx u(vi) 吸附 作用机制
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Solvent extraction of U(VI) by trioctylphosphine oxide using a room-temperature ionic liquid 被引量:4
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作者 YUAN LiYong SUN Man +3 位作者 LIAO XiangHong ZHAO YuLiang CHAI ZhiFang SHI WeiQun 《Science China Chemistry》 SCIE EI CAS 2014年第11期1432-1438,共7页
The unique physical and chemical properties of room-temperature ionic liquids(RTILs) have recently received increasing attention as solvent alternatives for possible application in the field of nuclear industry, parti... The unique physical and chemical properties of room-temperature ionic liquids(RTILs) have recently received increasing attention as solvent alternatives for possible application in the field of nuclear industry, particularly in liquid-liquid separations of radioactive nuclides. We investigated solvent extraction of U(VI) from aqueous solutions into a commonly used ionic liquid 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide([C4mim][NTf2]) using trioctylphosphine oxide(TOPO) as an extractant. The effects of contact time, TOPO concentration, acidity, and nitrate ions on the U(VI) extraction are discussed in detail. The extraction mechanism was proposed based on slope analysis and UV-Vis measurement. The results clearly show that TOPO/[C4mim][NTf2] provides a highly efficient extraction of U(VI) from aqueous solution under near-neutral conditions. When the TOPO concentration was 10 mmol/L, the extraction of 1 mmol/L U(VI) was almost complete(> 97%). Both the extraction efficiency and distribution coefficient were much larger than in conventional organic solvents such as dichloromethane. Slope analysis confirmed that three TOPO molecules in [C4mim][NTf2] bound with one U(VI) ion and one nitrate ion was also involved in the complexation and formed the final extracted species of [UO2(NO3)(TOPO)3]+. Such a complex suggests that extraction occurs by a cation-exchange mode, which was subsequently evidenced by the fact that the concentration of C4mim+ in the aqueous phase increased linearly with the extraction percent of U(VI) recorded by UV-Vis measurement. 展开更多
关键词 uRANIuM solvent extraction ionic liquid trioctylphosphine oxide
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锰铝二元水滑石和锰铁铝三元水滑石对U(Ⅵ)的高效去除及其机理研究 被引量:11
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作者 张晨璐 冷然 +3 位作者 张一阚 姜志豪 李星 文涛 《中国科学:化学》 CAS CSCD 北大核心 2019年第1期133-144,共12页
本文采用一步水热法制备了新型低成本的二元水滑石(MnAl-LDHs)和三元水滑石(MnFeAl-LDHs)吸附剂,并利用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X射线粉末衍射仪(XRD)和X射线光电子能谱(XPS)等微观表征技术分析了材料的物理化... 本文采用一步水热法制备了新型低成本的二元水滑石(MnAl-LDHs)和三元水滑石(MnFeAl-LDHs)吸附剂,并利用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X射线粉末衍射仪(XRD)和X射线光电子能谱(XPS)等微观表征技术分析了材料的物理化学性质,通过静态批示实验和光谱分析研究了U(Ⅵ)在MnAl-LDHs和MnFeAl-LDHs上的吸附行为和相互作用机理.宏观实验结果表明, MnAl-LDHs和MnFeAl-LDHs对U(Ⅵ)的吸附在60 min内都达到了平衡,且在pH=5.0条件下三元MnFeAl-LDHs对U(Ⅵ)呈现出较高的吸附量(157.73 mg/g),是U(Ⅵ)在二元MnAl-LDHs上饱和吸附量(70.72 mg/g)的两倍.此外, MnFeAl-LDHs在高盐度、复杂共存离子环境下和不同水体系中依然表现出优越的吸附性能. FTIR和XPS光谱分析结果表明, U(Ⅵ)不仅可以与材料表面的–OH和层间CO32-形成较强的络合,还能与水滑石中的部分Mn^(2+)发生取代反应.本文的研究揭示了含锰水滑石材料在高效修复放射性废水中的吸附机理和潜在的应用前景. 展开更多
关键词 二元/三元水滑石 u(vi) 吸附 作用机理
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