• 姓名: 吴世军
  • 性别: 男
  • 职务: 
  • 职称: 副研究员
  • 学历: 博士研究生
  • 电话: 020-85290143
  • 传真: 020-85290987
  • 电子邮件: wus@gig.ac.cn
  • 通讯地址: 广州市天河区五山科华街511号
    简  历:
  • 2012.09-至今    中国科学院广州地球化学研究所, 副研究员

    2015.08-2016.01 德国亥姆霍兹联合会德累斯顿-罗森多夫研究中心, 访问学者

    2011.04-2012.12 德国基尔大学, 博士后

    2010.04-2012.08 中国科学院广州地球化学研究所, 助理研究员

    2009.02-2009.10 美国圣母大学,访问学者/联合培养博士生

    2008.10-2009.02 美国奥本大学,访问学者/联合培养博士生

    2004.09-2010.01 中国科学院广州地球化学研究所,博士

    2000.09-2004.07 西南师范大学,学士

    社会任职:
  •  
    研究方向:
  • 现主要研究方向为土壤污染与控制、环境矿物学与环境地球化学。主要从矿物学、晶体学及地球化学角度出发,研究矿物材料对放射性核素及重金属的阻滞作用,为评价地质环境中放射性核素及重金属的长期行为提供依据,并开发相应的土壤污染控制技术与方案。

    获奖及荣誉:
  • (1) 2015年,中国科学院科技促进发展奖之科技贡献二等奖(排名第三)

    (2) 2014年,入选广东特支计划百千万工程青年拔尖人才

    (3) 2014年,中国科学院广州地球化学研究所涂光炽青年人才奖

    代表论著:
  • (1) X. Zhan, J. Chen, Y. Yang, S. Wu*, F. Chen*, G. Ying, C. Zhang, L. Zhang, Q. Zhang, X. Sun. Removal of antibiotics and antibiotic resistance genes from domestic sewage by a subsurface wastewater infiltration system with long-term operations. Environ. Engin. Sci., 2019 (In publication).

    (2) M. Wang, S. Wu*, J. Guo, X. Zhang, Y. Yang, F. Chen, R. Zhu. Immobilization of cadmium by hydroxyapatite converted from microbial precipitated calcite. J. Hazard. Mater., 2019, 366:684-693.

    (3) X. Zhang, S. Wu*, F. Chen. Nano precipitates formed during the dissolution of calcite incorporated with Cu and Mn. Minerals, 2018, 8:481.

    (4) S. Wu, P. M. Kowalski, N. Yu, T. Malcherek, W. Depmeier, D. Bosbach, S. Wang, E.V. Suleimanov, T.E. Albrecht-Schmitt*, E.V. Alkseev*. Highly distorted uranyl ion coordination and one/two-dimensinal structural relationship in the Ba2[UO2(TO4)2] (T=P, As) system: An experimental and computational study. Inorg. Chem., 2014. 53:7650-7660.

    (5) S. Wu, F. Chen, A. Simonetti, T. E. Albrecht-Schmitt. Substitution of IO3-, IO4-, SeO32-, and SeO42- for CO32- in Na4[UO2(CO3)3]. Radiochim. Acta, 2013, 101: 625-630.

    (6) S. Wu, S. Wang, M. J. Polinski, W. Depmeier, T.E. Albrecht-Schmitt, E.V. Alekseev. A new low temperature route to uranyl borates with structural variations.  Z. Kristallogr., 2013, 228: 429-435.

    (7) S. Wu, M. Polinski, T. Malcherek, U. Bismayer, M. Klinkenberg, G. Modolo, D. Bosbach, W. Depmeier, E.V. Alkseev, T.E. Albrecht-Schmitt. Novel fundamental building blocks and site dependent isomorphism in the first actinide borophosphates. Inorg. Chem., 2013. 52: 7881-7888.

    (8) S. Wu, S. Wang, M. Polinski, O. Beermann, P. Kegler, T. Malcherek, A. Holzheid, W. Depmeier, D. Bosbach, E.V. Alkseev, T.E. Albrecht-Schmitt. High structural complexity of potassium uranyl borates derived from high-temperature/high-pressure reactions. Inorg. Chem., 2013, 52: 5110-5118.

    (9) S. Wu, S. Wang, J. Diwu, W. Depmeier, T. Malcherek, E.V. Alekseev, T.E. Albrecht-Schmitt.Complex clover cross-sectioned nanotubules exist in the structure of the first uranium borate phosphate. Chem. Commun., 2012, 48: 3479-3481. (封面文章)

    (10) S. Wu, O. Beermann, S. Wang, A. Holzheid, W. Depmeier, T. Malcherek, G. Modolo, E.V. Alkseev, T.E. Albrecht-Schmitt.Synthesis of uranium materials under extreme conditions: UO2[B3Al4O11(OH)], a complex 3D aluminoborate. Chem.-Eur. J., 2012, 18: 4166-4169.

    (11) S. Wu, P. Kegler, S. Wang, A. Holzheid, W. Depmeier, T. Malcherek, E.V. Alkseev, T.E. Albrecht-Schmitt. Rich coordination of Nd3+ in Mg2Nd13(BO3)8(SiO4)4(OH)3, derived from high-pressure/high-temperature conditions. Inorg. Chem., 2012, 51: 3941-3943.

    (12) S. Wu, S. Wang, F. Chen, A. Simonetti, T. E. Albrecht-Schmitt. Incorporation of iodate into uranyl borates and its implication for the immobilization of 129I in repositories. Radiochim. Acta, 2011, 99: 573-579.

    (13) S. Wu, F. Chen, A. Simonetti, T. E. Albrecht-Schmitt. Incorporation of neptunium (V) and iodate into a uranyl phosphate: Implications for mitigating the release of 237Np and 129I in repositories. Environ. Sci. Technol., 2010, 44, 3192-3196.

    (14) S. Wu, J. Ling, S. Wang, S. Skanthakumar, L. Soderholm, T.E. Albrecht-Schmitt, E.V. Alekseev, S. V. Krivovichev, W. Depmeier. Uranium (VI) adopts a tetraoxido core. Eur. J. Inorg. Chem., 2009, 27:4039-4042.

    (15) S. Wu, F. Chen, M. Kang, Y. Yang, S. Dou, Incorporation of iodine into uranophane formed during the corrosion of spent nuclear fuel. Radiochim. Acta, 2009, 97: 459-565.

     

    详细论文情况请参阅http://www.researcherid.com/rid/B-1016-2010

    承担科研项目情况:
  • (1)  国家自然科学基金面上项目,土壤修复过程中典型次生矿物对重金属的固定作用及机理研究(项目编号:41877135)2019.01-2022.12,主持;

    (2)  广东省自然科学基金项目,高庙子膨润土负载纳米铁材料对硒(IV)的还原作用及其还原产物的再氧化过程研究(项目编号:2017A030313223), 2017.05-2020.04,主持;

    (3)  广州市科学研究计划重点项目,广州及周边花岗岩风化壳稀土元素赋存状态及环境效应(项目编号:201804020037)2018.04-2021.03,骨干;

    (4)  广东省科技计划项目应用型专项,渗滤技术在农村水污染防治中的应用研究及示范推广(项目编号:2017B020236003)2017.08-2020.07,骨干;

    (5)  广州市科技计划项目产学研协同创新重大专项,分散型生活污水处理技术研究与示范应用(项目编号:201604020017)2016.04-2019.03,骨干;

    (6)  中国科学院广州地球化学研究所一三五规划项目,农村生活及养殖污水控制与治理技术(项目编号:135PY201604)2016.01-2020.12,骨干。