王少娜-中国科学院大学-UCAS


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王少娜-中国科学院大学-UCAS
[中文]
[English]
教育背景
工作经历
专利与奖励
出版信息
科研活动
基本信息
王少娜 女 硕导 中国科学院过程工程研究所电子邮件: shnwang@ipe.ac.cn通信地址: 北京市海淀区中关村北二街1号过程大厦邮政编码:
招生信息
招生专业
081702-化学工艺081701-化学工程085700-资源与环境
招生方向
清洁生产工艺高纯材料制备化工分离
教育背景
2004-09--2009-01 中国科学院过程工程研究所 博士2001-09--2004-07 重庆大学 硕士1997-09--2001-07 重庆大学 学士
工作经历
工作简历
2013-10~现在, 中国科学院过程工程研究所, 副研究员2009-04~2013-10,中国科学院过程工程研究所, 助理研究员2004-09~2009-01,中国科学院过程工程研究所, 博士2001-09~2004-07,重庆大学, 硕士1997-09~2001-07,重庆大学, 学士
专利与奖励
奖励信息
(1)&nbsp绿色低碳提钒关键技术及产业化应用,&nbsp一等奖,&nbsp部委级,&nbsp2021(2)&nbsp非均相反应体系中活性氧的原位测定方法研究及应用,&nbsp一等奖,&nbsp部委级,&nbsp2020(3)&nbsp高纯V2O5绿色制造关键技术及产业化,&nbsp二等奖,&nbsp省级,&nbsp2020(4)&nbsp钒铬共提清洁生产关键技术及产业化应用,&nbsp一等奖,&nbsp省级,&nbsp2019(5)&nbsp亚熔盐法钒铬清洁提取技术及产业化应用,&nbsp一等奖,&nbsp其他,&nbsp2018(6)&nbsp亚熔盐中间产品梯级阳离子置换法清洁制备钒氧化物新工艺,&nbsp二等奖,&nbsp其他,&nbsp2018
专利成果
( 1 )&nbsp一种钒渣碱浸液除杂的方法,&nbsp[[[",&nbsp第 3 作者,&nbsp专利号: [[[CN111690826A]]]( 2 )&nbsp一种由钒酸钠溶液制备钒酸铵钠的方法,&nbsp2021,&nbsp第 3 作者,&nbsp专利号: CN108928851B( 3 )&nbsp一种微气泡强化碳化制备碳酸钙的方法,&nbsp2021,&nbsp第 3 作者,&nbsp专利号: CN113149056A( 4 )&nbsp从氢氧化钠废液中分离钒、钨和砷的方法及应用,&nbsp2021,&nbsp第 4 作者,&nbsp专利号: CN112553469A( 5 )&nbsp一种从碱性含钒铬溶液中萃取分离铬的方法,&nbsp2021,&nbsp第 1 作者,&nbsp专利号: CN110629051B( 6 )&nbsp一种从含钒溶液中结晶分离大颗粒偏钒酸铵的方法,&nbsp2021,&nbsp第 1 作者,&nbsp专利号: CN110282659B( 7 )&nbsp一种从废旧催化剂中回收钒铝钼的方法,&nbsp2020,&nbsp第 1 作者,&nbsp专利号: CN112048622A( 8 )&nbsp一种高钙含钒原料清洁提钒的方法,&nbsp2020,&nbsp第 3 作者,&nbsp专利号: CN109402401B( 9 )&nbsp一种从含铬偏钒酸铵溶液中萃取分离铬的方法,&nbsp2020,&nbsp第 1 作者,&nbsp专利号: CN110629049B( 10 )&nbsp一种从含钒钼的废弃催化剂中回收钒钼的方法,&nbsp2020,&nbsp第 1 作者,&nbsp专利号: CN111945007A( 11 )&nbsp一种钒渣提钒协同控制尾渣中钠含量的方法,&nbsp2020,&nbsp第 2 作者,&nbsp专利号: CN111663054A( 12 )&nbsp一种利用钒酸钠溶液电解制备多钒酸铵的方法,&nbsp2020,&nbsp第 4 作者,&nbsp专利号: CN109385641B( 13 )&nbsp一种从钒渣中提取钒和铬的方法,&nbsp2020,&nbsp第 3 作者,&nbsp专利号: CN111575495A( 14 )&nbsp一种从铬泥中提取钒和铬的方法,&nbsp2020,&nbsp第 3 作者,&nbsp专利号: CN111575490A( 15 )&nbsp一种抑制钒渣钒铬共提过程的循环液中铬酸钠还原的方法,&nbsp2020,&nbsp第 1 作者,&nbsp专利号: CN111560524A( 16 )&nbsp一种高温焙烧法从含铬钒渣中提取铬和钒的方法,&nbsp2020,&nbsp第 2 作者,&nbsp专利号: CN109207728B( 17 )&nbsp一种由钒钛磁铁矿制取五氧化二钒的方法,&nbsp2020,&nbsp第 3 作者,&nbsp专利号: CN111484078A( 18 )&nbsp一种含钒钢渣离子置换法提钒的方法,&nbsp2020,&nbsp第 5 作者,&nbsp专利号: CN107287453B( 19 )&nbsp一种混合钒渣和含钒钢渣加压提钒的方法,&nbsp2020,&nbsp第 5 作者,&nbsp专利号: CN107236871B( 20 )&nbsp一种含钒钢渣加压强化提钒的方法,&nbsp2020,&nbsp第 6 作者,&nbsp专利号: CN107236866B( 21 )&nbsp一种从碱性含钒铬溶液中萃取分离铬的方法,&nbsp2019,&nbsp第 1 作者,&nbsp专利号: CN110629050A( 22 )&nbsp一种含钒钢渣碳化提钒的方法,&nbsp2019,&nbsp第 5 作者,&nbsp专利号: CN107236870B( 23 )&nbsp一种加压浸出含钒钢渣制取钒产品的方法,&nbsp2019,&nbsp第 3 作者,&nbsp专利号: CN110408790A( 24 )&nbsp一种钒渣焙烧清洁提钒的方法,&nbsp2019,&nbsp第 3 作者,&nbsp专利号: CN110408772A( 25 )&nbsp一种全自动过滤钒酸钠晶体的装置,&nbsp2019,&nbsp第 9 作者,&nbsp专利号: CN209423089U( 26 )&nbsp一种钒渣空白焙烧铵化提钒的方法,&nbsp2019,&nbsp第 3 作者,&nbsp专利号: CN108149022B( 27 )&nbsp一种提高NaOH介质中铬酸钠分离效率的方法,&nbsp2019,&nbsp第 1 作者,&nbsp专利号: CN107973345B( 28 )&nbsp一种铁基纳米阵列电催化电极、其制备方法和碱性燃料电池,&nbsp2019,&nbsp第 5 作者,&nbsp专利号: CN106328957B( 29 )&nbsp一种原位观测矿物微反应器及其处理方法和用途,&nbsp2019,&nbsp第 5 作者,&nbsp专利号: CN106732244B( 30 )&nbsp一种电化学检测装置及其处理方法和用途,&nbsp2019,&nbsp第 5 作者,&nbsp专利号: CN106706744B( 31 )&nbsp一种全自动过滤钒酸钠晶体的装置和方法,&nbsp2019,&nbsp第 9 作者,&nbsp专利号: CN109331521A( 32 )&nbsp一种钒钛磁铁矿的直接提钒的方法,&nbsp2019,&nbsp第 4 作者,&nbsp专利号: CN107090551B( 33 )&nbsp一种草酸铵浸出含钒原料熟料提钒的方法,&nbsp2018,&nbsp第 5 作者,&nbsp专利号: CN105779758B( 34 )&nbsp一种磷酸铵浸出含钒原料焙烧熟料提钒的方法,&nbsp2018,&nbsp第 1 作者,&nbsp专利号: CN105714102B( 35 )&nbsp一种低液固比铵化提钒的方法,&nbsp2018,&nbsp第 4 作者,&nbsp专利号: CN106676273B( 36 )&nbsp一种低温常压提取钒渣中钒和铬的方法,&nbsp2018,&nbsp第 4 作者,&nbsp专利号: CN105400967B( 37 )&nbsp一种回收含钒钢渣中钒元素的方法,&nbsp2017,&nbsp第 6 作者,&nbsp专利号: CN107287431A( 38 )&nbsp一种利用碳酸氢钠分解含钒钢渣回收钒的方法,&nbsp2017,&nbsp第 6 作者,&nbsp专利号: CN107254587A( 39 )&nbsp一种氢氧化钾溶液中电化学分解钒渣同步提取钒铬的方法,&nbsp2017,&nbsp第 4 作者,&nbsp专利号: CN103060843B( 40 )&nbsp一种膜电解从高镁锂比盐湖卤水中分离镁和富集锂的方法,&nbsp2017,&nbsp第 4 作者,&nbsp专利号: CN107164777A( 41 )&nbsp一种由钒酸钠制备偏钒酸铵的方法,&nbsp2017,&nbsp第 3 作者,&nbsp专利号: CN107128973A( 42 )&nbsp一种含钒原料低温焙烧提钒的方法,&nbsp2016,&nbsp第 5 作者,&nbsp专利号: CN105671340A( 43 )&nbsp一种草酸铵浸出含钒原料焙烧熟料提钒的方法,&nbsp2016,&nbsp第 4 作者,&nbsp专利号: CN105779757A( 44 )&nbsp一种磷酸铵浸出含钒原料熟料提钒的方法,&nbsp2016,&nbsp第 5 作者,&nbsp专利号: CN105671339A( 45 )&nbsp一种含钒焙烧熟料碳铵溶液低温常压浸出提钒的方法,&nbsp2015,&nbsp第 5 作者,&nbsp专利号: CN104831090A( 46 )&nbsp一种控温式流动薄层和频光谱电化学原位反应池,&nbsp2015,&nbsp第 6 作者,&nbsp专利号: CN204439523U( 47 )&nbsp一种高纯二氧化钛的清洁生产方法,&nbsp2015,&nbsp第 1 作者,&nbsp专利号: CN104477987A( 48 )&nbsp一种铬铁矿加压浸出制备铬酸钾的新工艺,&nbsp2015,&nbsp第 5 作者,&nbsp专利号: CN104341004A( 49 )&nbsp一种从钒渣铵浸溶液中结晶分离偏钒酸铵的方法,&nbsp2015,&nbsp第 4 作者,&nbsp专利号: CN104294047A( 50 )&nbsp一种氢氧化钠溶液中电化学强化钒渣分解同步提取钒铬的方法,&nbsp2015,&nbsp第 4 作者,&nbsp专利号: CN104294040A( 51 )&nbsp一种氢氧化铁吸附脱除铬酸钠浸出液中钒的方法,&nbsp2014,&nbsp第 1 作者,&nbsp专利号: CN104085949A( 52 )&nbsp一种含钒原料焙烧后熟料碳铵溶液浸出提钒的方法,&nbsp2014,&nbsp第 3 作者,&nbsp专利号: CN104003442A( 53 )&nbsp钒钛磁铁矿提钒尾渣脱钠的方法,&nbsp2014,&nbsp第 4 作者,&nbsp专利号: CN103952558A( 54 )&nbsp含硫酸钠废水的除钠方法,&nbsp2014,&nbsp第 4 作者,&nbsp专利号: CN103950999A( 55 )&nbsp一种含钒原料焙烧后熟料氨浸提钒的方法,&nbsp2014,&nbsp第 4 作者,&nbsp专利号: CN103937978A( 56 )&nbsp一种钒渣无钠焙烧清洁高效回收钒的方法,&nbsp2014,&nbsp第 5 作者,&nbsp专利号: CN103572063A( 57 )&nbsp一种低温低浓度氢氧化钾溶液中电化学分解钒渣同步提取钒铬的方法,&nbsp2013,&nbsp第 4 作者,&nbsp专利号: CN103421950A( 58 )&nbsp一种铬渣碳酸化解毒的处理方法,&nbsp2013,&nbsp第 4 作者,&nbsp专利号: CN103159419A( 59 )&nbsp一种三氧化二钒粉体的制备方法,&nbsp2013,&nbsp第 3 作者,&nbsp专利号: CN103101976A( 60 )&nbsp一种氢氧化钾溶液中电化学分解铬铁矿提取铬的方法,&nbsp2013,&nbsp第 4 作者,&nbsp专利号: CN103060838A( 61 )&nbsp一种氢氧化钠溶液分解提钒尾渣回收钒的方法,&nbsp2013,&nbsp第 2 作者,&nbsp专利号: CN102876896A( 62 )&nbsp一种氢氧化钠溶液添加含碳物质常压分解钒渣的方法,&nbsp2012,&nbsp第 3 作者,&nbsp专利号: CN102534232A( 63 )&nbsp一种拜耳法循环碱液中钠铝分离的方法,&nbsp2012,&nbsp第 5 作者,&nbsp专利号: CN102336424A( 64 )&nbsp一种从钒渣分解液中分离钒铬的方法,&nbsp2012,&nbsp第 2 作者,&nbsp专利号: CN102676808A( 65 )&nbsp一种由钒酸盐制备含钙钒氧化物的方法,&nbsp2012,&nbsp第 4 作者,&nbsp专利号: CN102676817A( 66 )&nbsp一种电解制备二氧化钒粉体的方法,&nbsp2012,&nbsp第 4 作者,&nbsp专利号: CN102586796A( 67 )&nbsp一种钒渣加压浸出清洁生产钒酸钠铬酸钠的方法,&nbsp2012,&nbsp第 4 作者,&nbsp专利号: CN102531056A( 68 )&nbsp一种铬盐清洁生产工艺中氧化铝的分离方法,&nbsp2012,&nbsp第 5 作者,&nbsp专利号: CN102336423A( 69 )&nbsp一种液相氧化分解钒渣的方法,&nbsp2011,&nbsp第 3 作者,&nbsp专利号: CN102127656A( 70 )&nbsp一种由提钒尾渣回收钒的方法,&nbsp2011,&nbsp第 3 作者,&nbsp专利号: CN102251119A( 71 )&nbsp一种使用氢氧化钠熔盐分解含铬钒渣的方法,&nbsp2011,&nbsp第 3 作者,&nbsp专利号: CN102127654A( 72 )&nbsp一种氢氧化钠溶液常压分解钒渣的方法,&nbsp2011,&nbsp第 3 作者,&nbsp专利号: CN102127655A( 73 )&nbsp一种氢氧化钾溶液常压分解钒渣的方法,&nbsp2010,&nbsp第 3 作者,&nbsp专利号: CN101812588A( 74 )&nbsp一种低苛性比铝酸钠溶液制备高苛性比铝酸钠溶液的方法,&nbsp2010,&nbsp第 4 作者,&nbsp专利号: CN101746794A( 75 )&nbsp一种铬铁矿制备铬酸钠的清洁生产方法,&nbsp2010,&nbsp第 4 作者,&nbsp专利号: CN101659444
出版信息
发表论文
(1) Separation of Na3VO4 and Na2CrO4 from high alkalinity solutions by solvent extraction, SEPARATION AND PURIFICATION TECHNOLOGY, 2021, 第 3 作者(2) Review of Vanadium Production Part I: Primary Resources, MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2021, 第 4 作者(3) Experimental Determination of Phase Equilibria in the Quaternary NaOH-Na3VO4-Na2MoO4-H2O System at 298.15-353.15 K, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2021, 第 1 作者(4) Generation of reactive oxygen species from oxygen microbubbles in phosphoric acid solution and its application of ferrous iron oxidation, JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2021, 第 3 作者(5) Direct Leaching of Vanadium from Vanadium-bearing Steel Slag Using NaOH Solutions: A Case Study, MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2021, 第 4 作者(6) Separation of Na3VO4 and Na2CrO4 from high alkalinity solutions by solvent extraction, Separation and Purification Technology, 2020, 第 1 作者(7) Ammonium vanadate/ammonia precipitation for vanadium production from a high vanadate to sodium ratio solution obtained via membrane electrolysis method, JOURNAL OF CLEANER PRODUCTION, 2020, 第 3 作者(8) Study on Spectral Interference in the Determination of Vanadium by ICP-OES, SPECTROSCOPY AND SPECTRAL ANALYSIS, 2020, 第 1 作者(9) Leaching Behavior and Kinetics of Ilmenite Ore with NaOH Hydrothermal Method, RARE METAL MATERIALS AND ENGINEERING, 2020, 第 3 作者(10) 钛铁矿NaOH水热体系中浸出行为及动力学研究, Leaching Behavior and Kinetics of Ilmenite Ore with NaOH Hydrothermal Method, 稀有金属材料与工程, 2020, 第 3 作者(11) ICP-OES法测定钒的光谱干扰研究, Study on Spectral Interference in the Determination of Vanadium by ICP-OES, 光谱学与光谱分析, 2020, 第 1 作者(12) Determination of metastable zone width, induction time and primary nucleation kinetics for cooling crystallization of sodium orthovanadate from NaOH solution, JOURNAL OF CRYSTAL GROWTH, 2020, 第 1 作者(13) 废旧磷酸铁锂正极材料回收再生研究进展, Research Progress on Recovery of Spent Lithium Iron Phosphate Cathode Materials, 有色金属工程, 2020, 第 6 作者(14) Potassium Hydroxide Concentration-Dependent Water Structure on the Quartz Surface Studied by Combining Sum-Frequency Generation (SFG) Spectroscopy and Molecular Simulations, LANGMUIR, 2019, 第 3 作者(15) Cleaner production of ammonium poly-vanadate by membrane electrolysis of sodium vanadate solution: The effect of membrane materials and electrode arrangements, JOURNAL OF CLEANER PRODUCTION, 2019, 第 3 作者(16) Cleaner production of ammonium poly-vanadate by membrane electrolysis of sodium vanadate solutions: The effect of membrane materials and electrode arrangements, Journal of Cleaner Production, 2019, (17) 碳酸氢铵溶液中偏钒酸铵的冷却结晶, 化工进展, 2018, 第 2 作者(18) Simultaneous extraction of vanadium and chromium from vanadium slag using low-pressure liquid phase oxidation method, PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2018, 第 3 作者(19) High-Rate and Long-Term Cycle Stability of Li-S Batteries Enabled by Li2S/TiO2-Impregnated Hollow Carbon Nanofiber Cathodes, ACS APPLIED MATERIALS & INTERFACES, 2018, 第 3 作者(20) Co-extraction of vanadium and chromium from high chromium containing vanadium slag by low-pressure liquid phase oxidation method, JOURNAL OF CLEANER PRODUCTION, 2018, 第 4 作者(21) 钒酸钠水热法直接制备钒酸铋颜料, 钢铁钒钛, 2018, 第 1 作者(22) A novel method to extract vanadium from high-grade vanadium slag: non-salt roasting and alkaline leaching, PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2018, 通讯作者(23) High-Rate Performance and Ultralong Cycle Life Enabled by Hybrid Organic-Inorganic Vanadyl Ethylene Glycolate for Lithium-Ion Batteries, ADVANCED ENERGY MATERIALS, 2018, 第 4 作者(24) Organic vanadium oxy-acetylacetonate as electro-active anode material with high capacity and rate performance for lithium-ion batteries, JOURNAL OF MATERIALS SCIENCE, 2018, 第 2 作者(25) Co-extraction of vanadium and chromium from high Yi chromium containing vanadium slag by low-pressure liquid phase oxidation method, Journal of Cleaner Production, 2018, 第 1 作者(26) Effect of microbubble diameter, alkaline concentration and temperature on reactive oxygen species concentration, JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2017, 第 4 作者(27) 均相反应法制备钒酸铋颜料, 过程工程学报, 2017, 第 2 作者(28) A Clean and Efficient Method for Recovery of Vanadium from Vanadium Slag: Nonsalt Roasting and Ammonium Carbonate Leaching Processes, MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2017, 第 4 作者(29) 钒酸钠钙化-碳化铵沉法清洁制备钒氧化物新工艺, New technology from sodium vanadate to vanadium oxide by calcification and carbonization-ammonium process, 化工学报, 2017, 第 1 作者(30) Cleaner production of vanadium oxides by cation-exchange membrane-assisted electrolysis of sodium vanadate solution, HYDROMETALLURGY, 2017, 第 5 作者(31) Adsorption behaviors and vibrational spectra of hydrogen peroxide molecules at quartz/water interfaces, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2017, 第 5 作者(32) Effect of microbubble diameter, alkaline concentration and temperature on reactive oxygen species concentration, JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2017, 第 4 作者(33) 神奇的亚熔盐, 科技纵览, 2017, 第 3 作者(34) 活性炭强化氧化亚熔盐介质中钒渣分解机理, 中国有色金属学报, 2017, (35) A cleaner vanadium extraction method featuring non-salt roasting and ammonium bicarbonate leaching, JOURNAL OF CLEANER PRODUCTION, 2017, 第 4 作者(36) Extraction of Vanadium from Vanadium Slag Via Non-salt Roasting and Ammonium Oxalate Leaching, JOM, 2017, 第 4 作者(37) Solubility Investigations in the (NH4)(2)C2O4-NH4VO3-H2O System from 313.15 to 363.15 K, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2017, 第 1 作者(38) 钒渣焙烧-碱浸提钒工艺焙烧过程机理, 过程工程学报, 2016, 第 2 作者(39) Tuning alpha-Fe2O3 nanotube arrays for the oxygen reduction reaction in alkaline media, RSC ADVANCES, 2016, 第 4 作者(40) 钒酸钙碳化铵化生产钒氧化物的反应规律, Reaction rules of carbonization-ammonium process producing vanadium oxide, 中国有色金属学报, 2016, 第 2 作者(41) Solubility Data in the Ternary NH4HCO3-NH4VO3-H2O and (NH4)(2)CO3-NH4VO3-H2O Systems at (40 and 70) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2016, 通讯作者(42) Tuning ɑ-Fe2O3 nanotube arrays for the oxygen reduction reaction in alkaline media, RSC Advances, 2016, (43) Cr2O3在KOH溶液中电场强化溶出机理及溶出影响因素, Dissolution Mechanism of Cr2O3 and Dissolution Factors in KOH Solution with Electric Filed Intensify, 过程工程学报, 2016, 第 3 作者(44) Solubility Data in the Ternary NH4HCO3–NH4VO3–H2O and (NH4)2CO3–NH4VO3–H2O Systems at (40 and 70) °C, Journal of chemical & engineering data, 2016, (45) Vibrational spectra and molecular dynamics of hydrogen peroxide molecules at quartz/water interfaces, JOURNAL OF MOLECULAR STRUCTURE, 2016, 第 3 作者(46) The electrowinning of vanadium oxide from alkaline solution, HYDROMETALLURGY, 2016, 第 3 作者(47) Solubility investigations in the NaOH–Na3VO4–Na2CrO4–Na2CO3–H2O system at (40 and 80) °C, Fluid Phase Equilibria, 2016, 第 2 作者(48) Self-anchoring dendritic ternary vanadate compound on graphene nanoflake as high-performance conversion-type anode for lithium ion batteries, NANO ENERGY, 2016, 第 3 作者(49) Solubility investigations in the NaOH-Na3VO4-Na2CrO4-Na2CO3- H2O system at (40 and 80) degrees C, FLUID PHASE EQUILIBRIA, 2016, 第 2 作者(50) 氧气在碱溶液中结构与扩散系数的分子动力学模拟, Structure and Diffusivity of Oxygen in Concentrated Alkali-Metal Hydroxide Solutions: A Molecular Dynamics Simulation Study, 物理化学学报, 2015, 第 3 作者(51) Electrochemical decomposition of vanadium slag in concentrated NaOH solution, HYDROMETALLURGY, 2015, 第 3 作者(52) The influence of KOH concentration, oxygen partial pressure and temperature on the oxygen reduction reaction at Pt electrodes, JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2015, 第 5 作者(53) 国内提钒尾渣再提钒技术研究进展, 钢铁钒钛, 2015, 第 3 作者(54) Structure and Diffusivity of Oxygen in Concentrated Alkali-Metal Hydroxide Solutions: A Molecular Dynamics Simulation Study, ACTA PHYSICO-CHIMICA SINICA, 2015, 第 3 作者(55) 氧气在碱溶液中结构与扩散系数的分子动力学模拟, Structure and Diffusivity of Oxygen in Concentrated Alkali-Metal Hydroxide Solutions: A Molecular Dynamics Simulation Study, 物理化学学报, 2015, 第 3 作者(56) 亚熔盐法高铬钒渣钒铬高效同步提取工艺研究, 钢铁钒钛, 2014, 第 4 作者(57) Thermal Hydrolysis Synthesis and Characterization of Monoclinic Metahewettite CaV6O16 center dot 3H(2)O, JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION, 2014, 第 3 作者(58) Research and prospect on extraction of vanadium from vanadium slag by liquid oxidation technologies, TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2014, 第 3 作者(59) Effect of Alkali Concentration, Oxygen Partial Pressure and Temperature on Oxygen Reduction Reaction on Pt Electrode in NaOH Solution, ACTA PHYSICO-CHIMICA SINICA, 2014, 第 3 作者(60) 含钒炉渣碱法水热过程提取钒机理, Mechanism of vanadium extraction from vanadium-bearing slags using alkaline hydrothermal process, 中国有色金属学报, 2014, 第 5 作者(61) 铬盐无钙焙烧渣加压硫酸浸出, 过程工程学报, 2014, 第 2 作者(62) Electrochemical enhanced oxidative decomposition of chromite ore in highly concentrated KOH solution, MINERALS ENGINEERING, 2014, 第 3 作者(63) 液相氧化法钒渣提钒研究及展望, Research and prospect on extraction of vanadium from vanadium slag by liquid oxidation technologies, 中国有色金属学报:英文版, 2014, 第 3 作者(64) 钒渣焙烧-水热碱浸提钒, 过程工程学报, 2014, 第 4 作者(65) 活性炭强化钒渣中钒、铬提取技术, 中国有色金属学报, 2014, 第 6 作者(66) 40℃和75℃下三元体系NH4HCO3-NH4VO3-H2O中NH4VO3溶解度的测定, Solubility investigation of NH4VO3 in the ternary NH4HCO3-NH4VO3-H2O system at 40℃and 75℃, 化工进展, 2014, 第 3 作者(67) Hollow carbon nanofiber as a stabilizer for in situ TiO2/VO2 co-impregnation with high rate performance and ultra-long cycling life as lithium-ion battery anode, JOURNAL OF MATERIALS CHEMISTRY A, 2014, 第 3 作者(68) NaOH溶液中碱浓度、氧气压力以及温度对Pt电极上氧气还原反应的影响, Effect of Alkali Concentration, Oxygen Partial Pressure and Temperature on Oxygen Reduction Reaction on Pt Electrode in NaOH Solution, 物理化学学报, 2014, 第 3 作者(69) 铬盐无钙焙烧工艺铬酸钠中性液铁盐除钒, Removing vanadium from sodium chromate neutral liquid by non-calcium roasting technology with chromium salt, 中国有色金属学报, 2014, 第 2 作者(70) 钙掺杂钒青铜超级电容器电极材料的制备及其性能, 过程工程学报, 2013, 第 4 作者(71) Kinetics analysis of decomposition of vanadium slag by KOH sub-molten salt method, TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2013, 第 4 作者(72) 钒渣中钒铬提取技术研究进展, Research Progress of Extraction Technology for Vanadium & Chromium from Vanadium Slags, 矿产综合利用, 2013, 第 7 作者(73) Solubility Data for the KOH-K2CO3-K3VO4-H2O System at (313.15 and 353.15) K, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2013, 通讯作者(74) Solubility investigations in the quaternary NaOH–Na3VO4–Na2CrO4–H2O system at 40 and 80 °C, Fluid Phase Equilibria, 2013, 第 3 作者(75) METSIM在亚熔盐铬盐清洁生产工艺流程设计中的应用, 过程工程学报, 2013, 第 3 作者(76) A Novel Method to Extract Vanadium and Chromium from Vanadium Slag using Molten NaOH-NaNO3 Binary System, AICHE JOURNAL, 2013, 第 3 作者(77) Solubility investigations in the quaternary NaOH-Na3VO4-Na2CrO4-H2O system at 40 and 80 degrees C, FLUID PHASE EQUILIBRIA, 2013, 通讯作者(78) KOH亚熔盐法分解钒渣的动力学分析(英文), Kinetics analysis of decomposition of vanadium slag by KOH sub-molten salt method, 中国有色金属学报:英文版, 2013, 第 4 作者(79) METSIM在亚熔盐法钒渣清洁生产工艺流程设计中的应用, 过程工程学报, 2013, 第 3 作者(80) KOH亚熔盐中钒渣的溶出行为, Dissolution behavior of vanadium slag in KOH sub-molten salt, 中国有色金属学报, 2013, 第 4 作者(81) Solubility Data for the Quaternary KOH-K3VO4-K2CrO4-H2O System at (40 and 80) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2013, 通讯作者(82) 钒酸钾钙化沉钒法制备钒酸钙, 过程工程学报, 2013, 第 3 作者(83) Equilibrium Data of the KOH-K3VO4-Ca(OH)(2)-H2O System at (313.2 and 353.2) K, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2012, 第 2 作者(84) 新型钒材料研究进展, Latest Development of New Vanadium Materials, 钢铁钒钛, 2012, 第 4 作者(85) 亚熔盐法钒渣高效清洁提钒技术, Efficient and Cleaner Technology of Vanadium Extraction from Vanadium Slag by Sub-molten Salt Method, 钢铁钒钛, 2012, 第 3 作者(86) 钒渣NaOH亚熔盐法提钒工艺研究, 2012年全国冶金物理化学学术会议专辑(下册), 2012, 第 3 作者(87) KOH介质多元体系中铬酸钾与钒酸钾的高效结晶分离, Efficient Crystallization Separation of K2CrO4 and K3VO4 in Alkaline Multi-component System of KOH Medium, 过程工程学报, 2012, 第 6 作者(88) The redox behavior of vanadium in alkaline solutions by cyclic voltammetry method, ELECTROCHIMICA ACTA, 2012, 第 3 作者(89) 含钒尾渣NaOH亚熔盐浸出提钒, Leaching of Vanadium from Vanadium-containing Residue by NaOH Sub-molten Salt, 过程工程学报, 2011, 第 6 作者(90) Solubility in the Quaternary Na2O-V2O5-CaO-H2O System at (40 and 80) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2011, 通讯作者(91) Alumina recovery from spent Bayer liquor by methanol, TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2010, 第 4 作者(92) Phase Diagrams for the Ternary Na2O-Al2O3-H2O System at (150 and 180) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2010, 第 5 作者(93) Solubility Data for the NaOH-NaNO3-Na3VO4-Na2CrO4-H2O System at (40 and 80) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2010, 第 1 作者(94) 碱性介质多元体系中钒酸钠结晶分离, Separation of Sodium Vanadate in Alkaline Multi-component System, 过程工程学报, 2010, 第 2 作者(95) Solubility of Al2O3 in the Na2O-Al2O3-H2O-CH3OH System at (30 and 60) degrees C, JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2010, 第 4 作者(96) Improved precipitation of gibbsite from sodium aluminate solution by adding methanol, HYDROMETALLURGY, 2009, 第 5 作者(97) 甲醇分解铝酸钠溶液制备大颗粒氢氧化铝的工艺与表征, Preparation and Characterization of Al(OH)3 Coarse Particles by Decomposition of Caustic Aluminate Solution with Methanol, 过程工程学报, 2009, 第 4 作者(98) Stability of 3CaO center dot Al2O3 center dot 6H(2)O in KOH+K2CO3+H2O system for chromate production, HYDROMETALLURGY, 2008, 第 1 作者(99) 亚熔盐铬盐清洁工艺多元体系分离应用基础研究, 2008, 第 1 作者(100) 亚熔盐溶出一水硬铝石型铝土矿过程中赤泥的铝硅行为, Behavior of Al and Si in Red Mud from Leaching Process of Diaspore Bauxite with NaOH Sub-molten Salt, 过程工程学报, 2007, 第 1 作者(101) 铬盐清洁生产工艺中铝硅的脱除, Separation of aluminum and silicon in clean production process for potassium dichromate, 中国有色金属学报, 2007, 第 1 作者
发表著作
( 1 )&nbsp亚熔盐清洁生产技术与资源高效利用, 化学工业出版社, 2016-02, 第 其他 作者
科研活动
科研项目
( 1 )&nbsp钒的清洁提取与产品制造绿色设计平台建设项目, 负责人, 地方任务, 2017-01--2019-12( 2 )&nbsp钒的清洁提取与产品绿色制造产业化示范, 负责人, 地方任务, 2019-06--2021-06( 3 )&nbsp钒渣高效氧化焙烧清洁提钒技术, 负责人, 企业委托, 2019-08--2028-07( 4 )&nbsp含钒铬废渣钒铬全湿法高效提取分离及尾渣协同消纳技术与示范, 负责人, 国家任务, 2021-10--2024-09( 5 )&nbsp失活硫酸催化剂清洁提钒技术开发, 负责人, 企业委托, 2021-04--2022-12
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