991 resultados para Rare Earths


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本文对1-辛基-3-甲基咪唑六氟磷酸盐离子液体([C8mim]PF6)在包头稀土矿分离钍以及攀西矿分离铈工艺中的应用作了初步探索。论文首先研究了伯胺N1923溶于离子液体对硫酸体系钍的萃取分离行为,考察了酸度、盐析剂浓度、萃取剂浓度等对N1923/IL萃取钍的影响,并与庚烷体系的萃取规律作了对比。在此基础上对萃取机理进行了探讨,提出了不同于分子溶剂体系的萃取机理,认为N1923/IL在水相有硫酸钠作为盐析剂时对钍的萃取为“胶束增溶”萃取机理。此外,钍对稀土的分离考察结果认为,虽然N1923/IL对钍的萃取效率降低,但在一定条件下钍对稀土仍能保持较高的分离系数。由此本文对N1923/IL应用于钍的分离实践作了初步评估。 论文的另外一部分工作研究了纯[C8mim]PF6及其与2-乙基己基膦酸二(2-乙基己基)酯(DEHEHP)的混合体系对硝酸铈(IV)的萃取性能。研究发现纯[C8mim]PF6本身对硝酸铈(IV)有良好的萃取选择性,机理考察结果认为铈(IV)的萃取是由于Ce4+离子在富硝酸根溶液中形成络阴离子Ce(NO3)62-并与离子液体的阴离子PF6—发生交换的结果。一种新型含铈离子液体[C8mim]2Ce(NO3)6的合成进一步证实了这一机理。反萃考察发现被萃入离子液相的铈(IV)用水可完全反萃,且萃取和反萃过程中因离子交换机理导致的离子液体流失可以通过添加适量离子液体组分的方法予以抑制。此外,本文考察了DEHEHP溶于[C8mim]PF6对于含氟硝酸体系铈(IV)的萃取行为,发现在一定条件下DEHEHP对铈(IV)的萃取能获得与分子溶剂中等同的萃取机理。在此基础上,采用DEHEHP/IL从氟碳铈矿分解液中进行分离铈和氟的研究,获得纯度为99.9%以上的纳米CeF3产品。由此我们提出一个将离子液体应用于攀西氟碳铈矿铈钍稀土分离流程的模型,为离子液体在稀土清洁分离流程中实现溶剂绿色化的目标提供了一个范例。

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该论文围绕金属元素的溶剂萃取和树脂吸附进行了一系列研究.考察了几种萃取剂的混合体系对稀土元素及过渡金属元素的萃取效应,同时,研究了酸性有机磷(瞬)类萃淋树脂对二价过渡金属元素的吸附性能,并讨论了它们用于分离金属元素的可能性.1.研究了盐酸和硝酸介质中β-二酮类萃取剂HPMBP与硫代中性有机磷(膦)类萃取剂Cyanex471X单独及混合体系对稀土元素La(Ⅲ)的萃取机理.2.研究了Cyanex272与伯胺N1923的混合物对Zn(Ⅱ)的协同萃取效应,得出了协萃反应方程式和平衡常数.3.考察了伯胺N1923与中性有机磷(膦)类萃取剂DEH/EHP的混合体系在盐酸介质中对Zn(Ⅱ)和Cd(Ⅱ)的萃取效应,研究了萃取机理,并研究了此混合体系对Zn(Ⅱ)和Cd(Ⅱ)的分离.4.揭示了Cyanex923萃取硝酸过程中出现第三相的机理和三相的相行为,讨论了第三相形成的影响因素.5.考察了盐酸介质中HEOPPA萃淋树脂对二价过渡金属元素的吸附平衡,得出了吸附反应方程式.

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近年来,随着高场傅里叶变换核磁共振波谱仪灵敏度的提高、分辨率的增加、化学位移的扩展、多脉冲实验技术的发展以及计算机技术的不断进步,使NMR技术在生物和医学领域的应用有了飞速的发展。而基于NMR技术结合模式识别方法的代谢组学方法更是在医学临床诊断、化合物生物效应、环境毒物学等领域得到广泛应用。稀土由于其特殊的电子层结构在光学、磁学领域应用非常广泛,同时因为其对农作物生长具有明显的促进作用,因此也被大量使用于农业中。本论文工作围绕农用稀土微肥常乐中两种主要成分斓、饰以及重稀土噜的急性生物效应,采用基于核磁共振技术的代谢组学方法,结合生化指标和组织切片显微照片,对给药稀土大鼠的体液(尿液、血清)和组织(肝、肾)进行了系统的研究。运用高分辨IHNMR技术,检测分析了大鼠腹腔注射不同剂量硝酸悯(2.0,10,50mg/kg体重)、硝酸饰(2.0,10,50mg瓜g体重)和灌胃给药硝酸噜(0.01,0.05,0.2,2,10,100mg/kg体重)48小时内尿液及48小时后血清及肝肾组织中的代谢物如柠檬酸、酮体、肌酸配、二甲胺、二甲基甘氨酸、TMAO、氨基酸、乳酸、唬拍酸、牛磺酸、甘油三脂、糖元等的浓度、物种的变化。结合模式识别方法,并根据血中生化指标和组织光镜图,对稀土在体内与细胞、组织和器官的作用机理及急性毒性进行了有意义的探讨。结果表明,各剂量硝酸悯主要导致大鼠肝脏受损,且损害程度与剂量成正比关系;而高剂量硝酸饰(10,50mg/kg体重)不仅在48小时内造成大鼠肝脏的能量代谢(糖代谢、脂肪代谢)紊乱,并导致肾小管炎症和肾乳头坏疽;重稀土噜在低剂量(0.2,2.0mg/kg体重)时主要导致肾小管重吸收能力下降,而高剂量(10,100mg众g体重)时主要表型为肝毒。该方法可用于其它药物的毒理研究。

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本文研究了稀土在多元氨基酸小分子生物配体体系存在形态及其作用特点,探索了稀土元素在生物体内的分布、代谢及其生物效应的机理,同时研究了稀土与复杂的生物大分子作用及稀土氨基酸固体配合物。

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Nanoparticles of BaLiF3:Er3+ were prepared from the quaternary microemulsions of Cetyltrim-Enthyl Ammonium Bromide (CTAB), n-butanol, n-octane, and water, using the hydrothermal-microemulsion technique. The complex fluorides were characterized by means of X-ray power diffraction, Environmental Scanning Electron Microscopy (ESEM), and fluorescence spectra.

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Y2O3: Er3+, Yb3+ nanoparticles were synthesized by a homogeneous precipitation method without and with different concentrations of EDTA 2Na. Upconversion luminescence spectra of the samples were studied under 980 nm laser excitation. The results of XRD showed that the obtained Y2O3:Er3+,Yb3+ nanoparticles were of a cubic structure. The average crystallite sizes calculated were in the range of 28-40 nm. Green and red upconversion emission were observed, and attributed to H-2(11/2), S-4(3/2) -> I-4(15/2) and F-4(9/2) -> I-4(15/2) transitions of the Er3+ ion, respectively.

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Synergistic extraction and recovery of Cerium(IV) (Ce(IV)) and Fluorin (F) from sulfuric solutions using mixture of Cyanex 923 and di-2-ethylhexyl phosphoric acid (D2EHPA) in n-heptane have been carried out. in order to investigate the synergistic extraction of Cyanex 923 + D2EHPA, extraction Ce(IV), F, Ce(III) and Ce-F mixture solution using D2EHPA or Cyanex 923 as extractant alone were studied firstly, and then Synergistic extraction of Ce(IV), F and Ce(IV)-F mixture solution with D2EHPA + Cyanex 923 were carried out. The largest synergistic coefficient of Ce(IV) is obtained at the mole fraction X-Cyanex (923) = 0.8. The synergistic enhancement coefficients (R-max) obtained for Ce(IV) are 23.12 in Ce(IV) solution, and in Ce-F mixed solution R-max for Ce(IV) and F are 2.24 and 3.25 respectively.

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The extraction behavior of Ce(IV) along with Th(IV) and Ln(III) (Ln = Ce, Gd, Yb) nitrate by pure ionic liquid, [C(8)mim]PF6, was investigated. [C(8)mim]PF6 alone showed good extraction ability for Ce(IV), while it was slight for Th(IV) and negligible for Ln(III). The extraction behavior of Ce(IV) by [C(8)mim]PF6 was particularly studied, and the most probable extraction mechanism proposed was the anion exchange mechanism. Moreover, the stripping of Ce(IV) from IL phase was also investigated. The Ce(IV) in IL phase can be quantitatively recovered by water.

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Two new silica-based organic-inorganic hybrid materials (B104SGs and O104SGs) doped with a binary mixture of imidazolium and phosphonium ionic liquids have been synthesized and used as sorbents in batch system for rare earths (RE) separation. Imidazolium ionic liquids 1-butyl-3-methylimidazolium hexafluorophosphate (C(4)mim(+)PF(6)(-)) or 1-octyl-3-methylimidazolium hexafluorophosphate (C(8)mim(+)PF(6)(-)) acted as porogens to prepare porous materials and additives to stabilize extractant within silica gel.

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The europium-doped LaF3 nanoparticles were prepared by refluxing method in glycerol/water mixture and characterized with X-ray diffraction(XRD), field emission scanning electron microscopy(FE-SEM), UV-vis diffuse reflectance spectrum, and photoluminescence spectra. The results of XRD indicated that the obtained LaF3: Eu3+ nanoparticles were well crystallized with a hexagonal structure. ne FE-SEM image illustrated that the LaF3: Eu3+ nanoparticles were spherical with an average size around 30 nm. Under irradiation of UV light, the emission spectrum of LaF3: Eu3+ nanoparticles exhibited the characteristic line emissions arising front the D-5(0)-> F-7(J), (J=1, 2, 3, 4) transitions of the Eu3+ ions, with the dominating emission centered at 590 nm. In addition, the emissions from the 51), level could be clearly observed due to the low phonon energies (-350 cm(-1)) of LaF3 matrix. The optimum doping concentration for LaF3: Eu3+ nanoparticles was determined to be 20mol.%.

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The thermoluminescence (TL) properties of Ce3+ doped NaSr4(BO3)(3) phosphor under the beta-ray irradiation were reported. The polycrystalline sample was synthesized by high temperature solid-state reaction. The TL glow curve of NaSr4(BO3)(3):Ce3+ phosphor was composed of only one peak. TL kinetic parameters of NaSr4(BO3)(3):Ce3+ were deduced by the peak shape method, the activation energy (E) was 0.590 eV and the frequency factor was 1.008x10(6) s(-1). TL dose response was linear in the range of measurement. The 3-dimensional (3D) TL emission spectrum was also recorded, the emission spectrum consisted of two bands located at 441 and 479 nm respectively, corresponding to the characteristic 4f(0)5d(1)-> F-2((5/2,7/2)) transitions of the Ce3+ ion. The fading behavior of the NaSr4(BO3)(3):Ce3+ phosphor over a period of 15 d was also studied.

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BACKGROUND: Ionic liquids (ILs) as environmentally benign solvents have been widely studied in the application of solvent extraction. However, few applications have been successfully industrialized because of the difficult stripping of metal ions or the loss of components of the ILs. More work needs to be done to investigate the extraction behaviour of IL-based extraction systems. In this work, the extraction behaviour of Ce(IV), Th(IV) and some trivalent rare earth (RE) nitrates by di(2-ethylhexyl) 2-ethylhexylphosphonate (DEHEHP) in the IL, 1-methyl-3-octylimidazolium hexafluorophosphate ([C(8)mim]PF6), was investigated and compared with that in the n-heptane system. In particular, the effect of F(I) on the extraction mechanism for Ce(IV) and its separation from Th(IV) was investigated. Otherwise, the recovery efficiency of Ce(IV) and F(I) from a practical bastnasite leach liquor was examined using IL based extraction.