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Separation of Eu^3+ Using a Novel Dispersion Combined Liquid Membrane with P507 in Kerosene as the Carrier 被引量:4
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作者 裴亮 王理明 付兴隆 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第1期33-39,共7页
The separation of Eu^3 +is studied with a dispersion combined liquid membrane(DCLM),in which polyvinylidene fluoride membrane(PVDF)is used as the liquid membrane support,dispersion solution containing HCl solutio... The separation of Eu^3 +is studied with a dispersion combined liquid membrane(DCLM),in which polyvinylidene fluoride membrane(PVDF)is used as the liquid membrane support,dispersion solution containing HCl solution as the stripping solution,and 2-ethyl hexyl phosphonic acid-mono-2-ethyl hexyl ester(P507)dissolved in kerosene as the membrane solution.The effects of pH value,initial concentration of Eu3 +and different ionic strength in the feed phase,volume ratio of membrane solution to stripping solution,concentration of HCl solution, concentration of carrier,different stripping agents in the dispersion phase on the separation are investigated.The optimum condition for separation of Eu3 +is that concentration of HCl solution is 4.0 mol·L 1,concentration of carrier is 0.16 mol·L 1,and volume ratio of membrane solution to stripping solution is 30︰30 in the dispersion phase, and pH value is 4.2 in the feed phase.The ionic strength has no significant effect on separation of Eu3 +.Under the optimum condition,when the initial concentration of Eu3 +is 0.8×10 4mol·L 1,the separation percentage of Eu 3+is 95.3%during the separation time of 130 min.The kinetic equation is developed in terms of the law of mass diffusion and the theory of interface chemistry.The diffusion coefficient of Eu3 +in the membrane and the thickness of diffusion layer between feed phase and membrane phase are obtained and their values are 1.48×10 7m 2·s 1and 36.6μm,respectively.The results obtained are in good agreement with literature data. 展开更多
关键词 dispersion combined liquid membrane 2-ethyl hexyl phosphonic acid-mono-2-ethyl hexyl ester SEPARATION europium3
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Eu ^(3+) Improving Drought Tolerance But Decreasing ODAP Level in Grass Pea (Lathyrus Sativus L.) Seedlings 被引量:1
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作者 熊友才 邢更妹 +3 位作者 郑峥 王亚馥 李志孝 李凤民 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第S1期502-507,共6页
Drought tolerance and toxicity variation of grass pea (Lathyrus Sativus L.) were studied in the presence and absence of earth element Eu 3+ under the pot-culture condition. The addition of exogenous Eu 3+ increases th... Drought tolerance and toxicity variation of grass pea (Lathyrus Sativus L.) were studied in the presence and absence of earth element Eu 3+ under the pot-culture condition. The addition of exogenous Eu 3+ increases the survival days (SD) and lowered the stomatal sensitivity of grass pea seedlings under the decreasing soil moisture from -0.2 MPa to -1 MPa, suggesting that Eu 3+ can improve the ability of grass pea seedlings to tolerate drought. But in this case, Eu 3+ is found to significantly inhibit the increase in contents of plant toxicity β-N-oxalyl-L-a, β-diaminopropionic acid (ODAP) level in leaves. Therefore, the results demonstrate that Eu 3+ application is a potential agronomic approach to improve drought tolerance while lowering the toxicity level in grass pea productivity. 展开更多
关键词 grass pea β-N-oxalyl-L-a β-diaminopropionic acid (ODAP) europium ion (Eu 3+) survival days stomatal sensitivity drought tolerance rare earths
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Encapsulation of Eu(TTA)_3 into MCM-41 Mesoporous Molecular Sieve by Sol Gel Method 被引量:2
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作者 姚云峰 张迈生 +3 位作者 石建新 龚孟濂 张洪杰 杨燕生 《Journal of Rare Earths》 SCIE EI CAS CSCD 2000年第3期186-189,共4页
The rare earth complex Eu(TTA) 3 was successfully encapsulated into MCM 41 mesoporous molecular sieve by the addition of the complex into the sol gel mixture for the synthesis of MCM 41 mesoporous material under m... The rare earth complex Eu(TTA) 3 was successfully encapsulated into MCM 41 mesoporous molecular sieve by the addition of the complex into the sol gel mixture for the synthesis of MCM 41 mesoporous material under microwave radiation. The as synthesized MCM 41 hosted Eu(TTA) 3 mesophase was confirmed to possess hexagonally ordered mesostructure and a uniform crystal size of about 30 nm with XRD and HRTEM techniques. Moreover, the IR spectrum, photoluminescence effect and fluorescence lifetime of the Eu(TTA) 3/MCM 41 hybrid were also studied. An increase in Stokes' shift and no change in luminescence lifetime were observed to the resultant mesophase in comparison with Eu(TTA) 3 in ethanol solution. 展开更多
关键词 rare earths europium Eu(TTA) 3/MCM 41 hybrid sol gel method
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STUDIES ON LANGMUIR-BLODGETT FILM OF METAL COMPLEXES(Ⅰ)-PREPARATION AND CHARACTERIZATION OF THE LB FILM OF N-HEXADECYL PYRIDINIUM TETRAKIS(1-PHENYL-3-METHYL-4-BENZOYL-PYRAZOL-5-ONE)EUROPIUM,C_5H_5NC_(16)H_(33)Eu(PMBP)_4
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作者 Chun Hui HUANG Xiao Yan ZHU Ke Zhi WANG Guang Xian XU (Research Center of Rare Earth Chemistry,Peking University,Beijing 100871) Yu XU Yuan Qi LIU (Institute of Chemistry,Academia Sinica,Beijing 100082) Pei ZHANG Xu Peng WANG (Physics Department of Peking University,Beijing 100871) 《Chinese Chemical Letters》 SCIE CAS CSCD 1991年第9期741-744,共4页
The LB film of the title complex was prepared by dropping a benzene solution of the title complex on the surfaceof water subphase at 25±1℃.The film was deposited in Z type on various hydrophilic pretreated subst... The LB film of the title complex was prepared by dropping a benzene solution of the title complex on the surfaceof water subphase at 25±1℃.The film was deposited in Z type on various hydrophilic pretreated substrates ofquartz,CaF;and electronic conductive glass for different purposes.The π-A curve of the film shows that thecross section per molecule is 125;,which indicates that the alkyl chain of the molecule is basically perpendiculalto the surface of the substrate.UV,IR spectra and transmission electronic microscopy of the film were also obtained. 展开更多
关键词 PMBP PHENYL-3-METHYL-4-BENZOYL-PYRAZOL-5-ONE)EUROPIUM C5H5NC PREPARATION AND CHARACTERIZATION OF THE LB FILM OF N-HEXADECYL PYRIDINIUM TETRAKIS STUDIES ON LANGMUIR-BLODGETT FILM OF METAL COMPLEXES Eu LB
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Enhanced low-field magnetocaloric effect in Nb and Al co-substituted EuTiO_(3)compounds 被引量:2
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作者 Huicai Xie Wenxia Su +7 位作者 Haiming Lu Zhaojun Mo Dunhui Wang Hao Sun Lu tian Xinqiang Gao Zhenxing Li Jun Shen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第23期137-144,共8页
The magnetic ground state switching between antiferromagnetic(AFM)and ferromagnetic(FM)states in EuTiO_(3)provides the feasibility of regulating its magnetic properties and magnetocaloric effect.First-principles calcu... The magnetic ground state switching between antiferromagnetic(AFM)and ferromagnetic(FM)states in EuTiO_(3)provides the feasibility of regulating its magnetic properties and magnetocaloric effect.First-principles calculations demonstrate that the magnetic ground states for EuTi_(0.875)Nb_(0.0625)Al_(0.0625)O_(3),EuTi_(0.8125)Nb_(0.125)Al_(0.)0_(625)O_(3),and EuTi_(0.75)Nb_(0.125)Al_(0.125)O_(3)are FM coupling.Experimental results also exhibit the FM coupling domination in these compounds,accompanied by a significantly enhanced low magnetic field magnetocaloric effect.The maximum magnetic entropy change of all the samples surpasses15 J kg^(-1)K^(-1)with a field change of 1 T.which is 1.4 times as large as that of bulk EuTiO_(3).Especially,the maximum refrigerating capacity for EuTi_(0.8125)Nb_(0.125)Al_(0.0625)O_(3)compound is evaluated to be 88.1 J kg^(-1),more than three times of that of EuTiO_(3).The remarkable magnetocaloric performances prove Nb and Al co-substituted EuTiO_(3)compounds to be competitive candidates for magnetic refrigeration in the liquid helium temperature regime. 展开更多
关键词 Magnetocaloric effect Europium titanate(EuTiO_(3)) FERROMAGNETIC Magnetic refrigeration
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Neurotoxicity and brain localization of europium doped Gd2O3 nanotubes in rats after intranasal instillation 被引量:1
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作者 Huifang Liu Wencong Zhao +5 位作者 Xiaochun Wang Guang Jia Yi Jin Kun Ge Huanyun Ma Jinchao Zhang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2017年第11期1126-1132,共7页
Europium doped Gd2O3nanotubes(Gd2O3:Eu3+NTs) were synthesized and characterized. Then,the neurotoxicity and brain localization of Gd2O3:Eu3+NTs were evaluated. All experimental rats were administered by intranasal ins... Europium doped Gd2O3nanotubes(Gd2O3:Eu3+NTs) were synthesized and characterized. Then,the neurotoxicity and brain localization of Gd2O3:Eu3+NTs were evaluated. All experimental rats were administered by intranasal instillation with 30 μL Gd2O3:Eu3+NTs suspension 3.0 and 15.0 mg/mL respectively every other day for 35 consecutive days, and the rats of control group were administered with an equal volume of physiological saline. The Morris water maze was used to assess the rats’ spatial learning and memory ability. The oxidative stress-related biomarkers and the activity of AChE in striatum and hippocampus were analyzed, and the histopathology of hippocampus and striatum was observed.The brain localization of gadolinium(Gd) was measured. The results showed that the escape latency of the rats in high-dose group prolonged significantly compared with that of control group after treatment of six weeks(p < 0.05), and the swimming time in D quadrant of high-dose group shortened significantly compared with the control group(p < 0.01). In addition, high-dose Gd2O3:Eu3+NTs could decrease the activity of GSH-Px and CAT in hippocampus and the activity of SOD in striatum(p < 0.05). MDA content in hippocampus and striatum of high-dose group increased(p < 0.05). High dose Gd2O3:Eu3+NTs could increase the activity of AChE in hippocampus(p < 0.05) and in striatum(p < 0.001). But there were no significant differences between the low-dose group and control group(p > 0.05). The results of Gd localization in brain showed that the ranking of Gd levels was olfactory bulb > striatum > hippocampus> cerebellum > brain stem > frontal cortex. The pathology results indicated that high dose Gd2O3:Eu3+NTs resulted in degeneration necrosis, nucleus pycnosis, and axons disappearance of the nerve cells at CA1, CA3 and DG area of hippocampus. Therefore, the results implied that Gd2O3:Eu3+NTs have the potential neurotoxicity and a possible danger in causing neurodegenerative disorders after intranasal instillation. 展开更多
关键词 NEUROTOXICITY Europium doped Gd_2O_3 nanotubes Distribution Intranasal instillation Rat
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