唐攒浪
唐攒浪,男,汉族,1992年生,贵州遵义人,工学博士,副教授,毕业于中南大学冶金工程专业(硕士)和化学工程与技术专业(博士)。主要研究领域:有色金属冶金、资源与环境化学, 长期从事有色金属资源提取加工以及砷材料化研究。主持承担贵州省科技计划项目、校级高层次人才启动经费项目和企业委托项目,参与国家自然科学基金委联合基金项目、国家重点研发计划、国家留学基金委访问学者项目和校企合作项目的研究工作。在国内外重要期刊和会议上共计发表科研论文26篇,其中SCI/EI期刊论文20篇,累计影响因子113.77,申请发明专利25项(含授权发明专利8项),攻读硕/博士学位期间获得中南大学格林美创新实践奖学金和中南大学研究生校长奖学金。承担本科生《化工仪表及自动化》、《过程装备控制技术及应用》和《文献检索(化工)》的课程与实验教学。
邮箱:tangzanlang@163.com
代表性成果
[1] 第一作者/共同通讯作者,Recovering valuable metals from nickel‑cobalt sludge via reductive-acidic leaching followed by leachate purification [J]. Separation and Purification Technology, 2026(380) 135247.
[2] 第一作者/共同通讯作者,Valuable metals recovery from spent Li-ion batteries via a carbon thermal reduction combined with oxidative acidic leaching process[J]. Separation and Purification Technology, 2026(383) 136248.
[3] 第一作者/共同通讯作者,Arsenic leaching and valuable metals recovery from arsenic-bearing dust [J]. Separation and Purification Technology, 2026(385) 136363.
[4] 第一作者/共同通讯作者,Thermodynamic modeling and distribution features of metal cation impurities in coprecipitation for Ni0.8Co0.1Mn0.1(OH)2 synthesis [J], Journal of Solid State Chemistry, 2026(358)125920.
[5] 第一作者/共同通讯作者,Cadmium recovery from high arsenic-bearing dust via synergistic extraction followed by arsenic immobilization as scorodite [J]. Journal of Sustainable Metallurgy, 2026, 12, 2030-2048.
[6] 第一作者/共同通讯作者,Thermodynamic modeling and parameters optimization for Ni0.8Co0.1 Mn0.1(OH)2 synthesis via transitional metal coprecipitation[J], Materials Science & Engineering B, 2026 (326)119205.
[7] 第一作者/共同通讯作者, Kinetic features and mechanism of scorodite formation via multivalent iron source from arsenic-bearing solution[J]. Process Safety and Environmental Protection, 2024 (192) 49-65.
[8] 第一作者/共同通讯作者, Mechanism and kinetics of scorodite formation from arsenic-bearing solution using Fe(OH)3 as a solid source[J]. Process Safety and Environmental Protection, 2024 (191) 1218-1238.
[9] 第一作者/共同通讯作者, Kinetic research of scorodite formation via oxidative coprecipitation from arsenic–bearing solution[J]. Process Safety and Environmental Protection, 2024(191) 658-675.
[10] 第一作者/共同通讯作者, Mechanism and thermodynamics of scorodite formation by oxidative precipitation from arsenic and ferrous mixed solution[J]. Environmental Research, 2024 (250) 118500.
[11] 第一作者/共同通讯作者, Immobilizing arsenic-enriched wastewater from utilization of crude antimony oxides as scorodite using a novel multivalent iron source[J]. Chemosphere, 2023 (339) 139751.
[12] 第一作者, A novel approach to synthesizing sodium antimonate and recovering lead and zinc from arsenic-bearing antimony white[J]. Minerals Engineering, 2023(192)108008.
[13] 第一作者, A novel process of immobilizing sodium arsenate crystals as scorodite using Fe(OH)3 as an iron source[J]. Process Safety and Environmental Protection, 2022 (167) 550-564.
[14] 第一作者, A clean process for recovering antimony from arsenic-bearing crystals and immobilizing arsenic as scorodite[J]. Separation and Purification Technology, 2022(295) 121276.
[15] 第二作者,Preparation and characterization of LiSb(OH)6 and LiSbF6 for lithium-ion batteries[J]. JOM, 2019, 7 (9), 3277-3284.
[16] 第二作者,锑酸锂与氟锑酸锂的制备新技术集成[J].中南大学学报(自然科学版), 2019, 50(8), 1768-1777.
[17] 第三作者, A new in situ-formed ferric-aluminum (hydr) oxides prepared by red mud for arsenic removal[J]. JOM, 2025, 77(5), 3394-3408.
[18] 第三作者, High-performance Fe-Al double hydroxide prepared by red mud for arsenic removal [J]. JOM, 2024, 76(8), 4155-4168.
[19] 第四作者,Efficient leaching arsenic and recovering antimony from high-arsenic soot [J]. JOM, 2023, 72(12), 5688-5698.
[20] 第四作者, An Mg-Al dual doping strategy to enhance the structural stability and long cycle life of LiNi0.8Co0.1Mn0.1O2 cathode material [J]. Ionics, 2022, 28(7), 3101-3112.
[21] 第一发明人,一种水热固化富砷结晶物的方法[P], 中国: CN115304105B.
[22] 第一发明人,一种复合铁盐水热氧压固化高砷结晶物的方法[P], 中国: CN115448372B.
[23] 第一发明人,一种从含砷结晶物中回收锑和固砷的方法[P], 中国: CN114561558B.
[24] 第一发明人,一种制备焦锑酸钠和母液再生及循环利用的方法[P], 中国: CN113371757B.
[25] 第二发明人, 一种船舶涂料功能添加剂、船舶防污涂料组合物[P], 中国: CN113122042B.
[26] 第二发明人,一种硫酸锰电解液净化除氯的方法[P], 中国: CN10822 0998 B.
[27] 第二发明人,一种钠盐体系加压氧化制备焦锑酸钠的方法[P], 中国: CN 107523702 B.
[28] 第二发明人,一种银阳极泥控电位制备四九金的方法[P], 中国: CN 107460324 B.