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铌铁合金生产中铌实收率规律性的研究
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作者 何万年 王乃宾 何思郏 《稀有金属》 EI CAS CSCD 北大核心 1996年第2期96-99,共4页
用数理统计法研究了工业上生产铌铁合金时工业Nb_2O_5用量(x)和铌实收率(y)之间的关系,研究了铌实收率的规律性,建立了Nb_2O_5用量为1~42kg时y与x之间的回收方程:y=x/(0.01012278x+0.0... 用数理统计法研究了工业上生产铌铁合金时工业Nb_2O_5用量(x)和铌实收率(y)之间的关系,研究了铌实收率的规律性,建立了Nb_2O_5用量为1~42kg时y与x之间的回收方程:y=x/(0.01012278x+0.00193992),其相关系数为0.994,剩余标准差为0.5619,相对偏差1.12%,置信度可在95%的区域内断定。 展开更多
关键词 铌铁合金 实收率
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Mathematical Simulation of Nd and Sm Extract Separation in (Nd,Sm)Cl_3-HCL-HEHEHP-Kerosene System
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作者 黄文梅 应娓娟 王乃宾 《Rare Metals》 SCIE EI CAS CSCD 1995年第1期1-7,共7页
A number of epuilibrium data of single stage in the system (Nd-SM)Cl_3-HCl-H_2O-1mol/L HEHEHP-kerosence was determined On the basis of epuilibrium data, two mathematical describing extract epui-librium of Nd and Sm... A number of epuilibrium data of single stage in the system (Nd-SM)Cl_3-HCl-H_2O-1mol/L HEHEHP-kerosence was determined On the basis of epuilibrium data, two mathematical describing extract epui-librium of Nd and Sm were developed.The models cover wide available ranges (the total RE concentration inepuilibrated apueous phase is 0. 07~0. 77 mol/L and the acidity is 0. 11~0. 48 mol/L; the mole fraction ofMd or Sm is 0. 020~0. 998) with small average relative errors(The model of Nd is 6. 11 % and the model ofSm is 3. 07 %, respectively ) With the developed models, the extract behaviors of Nd and sM, such as thedistribution of rare earth concentrations in both phase, the effects of acidity, RE concentration, mole fractionof RE in aqueous phase on the RE concentration in organic phase, were researched The separation circuits be-tween Nd and Sm simulated and performed by the experiments in laboratory. The purities obtained prod-uct of Nd_2O_3O_3 as well as Sm_2O_3 were higher than 99%.Two calculation programs were written in BASIC language. One of them is used for publishing epuilibri-um model and another is used for simulation of fractional solvent extraction. The amulation results obtainedmay serve as a reference for designing solvent extraction process. 展开更多
关键词 Mathematical simulation Extract separation of Nd and Sm
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