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强化铜—锌矿石矿浆制备和优先浮选方法的研究 被引量:1
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作者 v.a.bocharov 高世章 《矿产综合利用》 CAS 北大核心 1989年第3期5-10,共6页
铜-锌矿石质量不断下降,因此必须强化矿浆的制备和进行优先浮选。根据研究结果,提出了几种有效的技术方案。即,1.用硫化矿的氧化来制备矿浆的技术;2.充气和加热调浆;3.采用改良的捕收剂和活化剂,增加活性表面较低的细粒矿物的回收率;4.... 铜-锌矿石质量不断下降,因此必须强化矿浆的制备和进行优先浮选。根据研究结果,提出了几种有效的技术方案。即,1.用硫化矿的氧化来制备矿浆的技术;2.充气和加热调浆;3.采用改良的捕收剂和活化剂,增加活性表面较低的细粒矿物的回收率;4.采用三产品水力旋流器,增强分级效果,减少泥化和金属、硫在尾矿中的损失。综合运用以上研究的几种方案,使有色金属、贵金属和硫的回收率得到提高,精矿的质量也有了改善。 展开更多
关键词 铜-锌矿石 矿浆 制备方法 优先浮选 技术方案 原矿性质
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Isomeric pair 95m,g Nb in the photonuclear reactions on natMo at the bremsstrahlung end-point energy of 38–93 MeV 被引量:1
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作者 I.S.Timchenko O.S.Deiev +5 位作者 S.M.Olejnik S.M.Potin V.A.Kushnir V.V.Mytrochenko S.A.Perezhogin v.a.bocharov 《Chinese Physics C》 SCIE CAS CSCD 2023年第12期64-72,共9页
The ^(nat)Mo(γ,xnp)^(95m,g)Nb photonuclear reaction was studied using the electron beam from the NSC KIPT linear accelerator LUE-40.The experiment was performed using the activation and off-line γ-ray spectrometric ... The ^(nat)Mo(γ,xnp)^(95m,g)Nb photonuclear reaction was studied using the electron beam from the NSC KIPT linear accelerator LUE-40.The experiment was performed using the activation and off-line γ-ray spectrometric technique.The experimental isomeric yield ratio(IR) was determined for the reaction products ^(95m,g)Nb at the bremsstrahlung end-point energy E_(γmax) range of 38-93 MeV.The obtained values of IR are in satisfactory agreement with the results of other studies and extend the range of previously known data.The theoretical values of the yields Y_(m,g)(E_(γmax)) and the IR for the isomeric pair ^(95m,g)Nb from the ^(nat)Mo(γ,xnp) reaction were calculated using the partial cross-sections σ(E) from the TALYS1.95 code for six different level density models.For the investigated range of E_(γmax),the theoretical dependence of IR on energy was confirmed-the IR smoothly increases with increasing energy.The comparison showed a noticeable difference(more than 3.85 times) in the experimental IR relative to all theoretical estimates. 展开更多
关键词 photonuclear reactions natMo isomeric pair 95m gNb isomeric yield ratio reaction yield bremsstrahlung end-point energy of 38–93 MeV activation and off-lineγ-ray spectrometric technique TALYS1.95 level density model GEANT4.9.2.
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