• 姓名: 刘冬
  • 性别: 男
  • 职务: 
  • 职称: 研究员
  • 学历: 博士研究生
  • 电话: 020-85292387
  • 传真: 020-85292387
  • 电子邮件: liudong@gig.ac.cn
  • 通讯地址: 广东省广州市天河区五山科华街511号
    简  历:
  • 2003年本科毕业于华中农业大学资源与环境学院;2007年在该校获得土壤学硕士学位;2011年于中国科学院广州地球化学研究所获得矿物学博士学位。2015年受国家留学基金委资助在悉尼大学电镜中心进行了为期一年的访问研究。主要从事矿物学研究,在Nature Communications、Geochimica et Cosmochimica Acta、American Mineralogist、Applied Clay Science、Chemical Geology和Langmuir等主流期刊上发表SCI论文80余篇,SCI引用逾3000次(h-index: 32),2篇论文入选ESI“TOP 1%”高被引论文。参与撰写英文专著1部。授权国家发明专利11项。现担任国际SCI期刊Minerals和Scientific Reports编委。曾获第18届“侯德封”矿物岩石地球化学青年科学家奖(2020年)、广东省科学技术一等奖(6/10,2018年)、广东省自然科学杰出青年基金(2016年);入选“广东特支计划”科技创新青年拔尖人才(2017年)和“涂光炽”青年人才(2015年)。

    社会任职:
  •  
    研究方向:
  •      主要涉及矿物学、生物矿物学(微观尺度下的生物-矿物表/界面作用)、环境矿物学等学科。关注于矿物的结构、表界面作用及矿物资源的高效利用等——蒙脱石等天然粘土矿物、硅藻蛋白石等多孔硅质氧化物的表面微形貌、孔结构和表面荷电性、固体酸性等来源机制及其调控等研究。

    获奖及荣誉:
  •  
    代表论著:
  • 1)    Liu, D.; Yuan, P.; Tian, Q.; Liu, H.; Deng, L.; Song, Y.; Zhou, J.; Losic, D.; Zhou, J.; Song, H., Lake sedimentary biogenic silica from diatoms constitutes a significant global sink for aluminium. Nature Communications. 2019, 10 (1), 1-7.

    2)    Liu, D., Q. Tian, P. Yuan, P. Du, J. Zhou, Y. Li, H. Bu and J. Zhou. Facile sample preparation method allowing TEM characterization of the stacking structures and interlayer spaces of clay minerals. Applied Clay Science 2019, 171, 1-5.

    3)  Bu, H.; Liu, D. (Corresponding author); Yuan, P.; Zhou, X.; Liu, H.; Song, H.; Zhang, B., Ethylene glycol monoethyl ether adsorption by interlayer montmorilonite-organic matter complexes: Dependence on the organic matter content and its alkyl chain length. Applied Clay Science 2019, 180, 1-8.

    4)  Bu, H.; Liu, D. (Corresponding author); Yuan, P.; Zhou, X.; Liu, H.; Du, P., Ethylene glycol monoethyl ether (EGME) adsorption by organic matter (OM)-clay complexes: Dependence on the OM Type. Applied Clay Science 2019, 168, 340-347.

    5)  Du, P.; Liu, D. (Corresponding author); Yuan, P.; Deng, L.; Wang, S.; Zhou, J.; Zhong, X., Controlling the macroscopic liquid-like behaviour of halloysite-based solvent-free nanofluids via a facile core pretreatment. Applied Clay Science 2018, 156, 126-133.

    6)    Deng, L.; Liu, D. (Corresponding author); Du, P.; Bu, H.; Song, Y.; Tian, Q.; Yuan, W.; Yuan, P.; Liu, Z.; He, H., Enhancement of diatomite solid acidity by Al incorporation, as evaluated by the catalytic effects on the thermal decomposition of 12-aminolauric acid. Colloids and Surfaces A. 2016, 509, 190-194.

    7)    Liu D.; Yu, W. B; Deng L. L.; Yuan, W. W.; Sun H. J.; Ma, L. Y.; Yuan, P.; Du P. X.; He H. P. Possible mechanism of structural incorporation of al into diatomite during the deposition process I. Via a condensation reaction of hydroxyl groups. Journal of Colloid Interface Science. 2016, 461, 64-68.

    8)    Liu, D.; Yuan, W. W.; Deng L. L.; Yu, W. B; Sun H. J.; Yuan, P.; Preparation of porous diatomite-templated carbons with large adsorption capacity and mesoporous zeolite K-H as a byproduct. Journal of Colloid Interface Science. 2014, 424, 22-26.

    9)    Liu, D.; Yuan, P.; Liu, H. M; Tian L.; Tan, D. Y.; Yuan, W.W.; He, H P; High-pressure adsorption of methane on montmorillonite, kaolinite and illite. Applied Clay Science, 2013, 85, 25-30.

    10)  Liu, D.; Yuan, P. ; Liu, H. M.; Cai, J. G.; Qin, Z. H.; Tan, D. Y.; Zhou, Q.; He, H. P.; Zhu, J. X.; Quantitative characterization of the solid acidity of montmorillonite using combined FTIR and TPD based on the NH3 adsorption. Applied. Clay Science. 2013. 80-81, 407-412.

    11)   Liu, D.; Yuan, W.W.; Yuan, P.; Yu, W. B; Tan, D. Y; Liu, H. M; He, H. P; Physical activation of diatomite-templated carbons and its effect on the adsorption of methylene blue (MB). Applied Surface Science. 2013, 282, 838–843.

    12)  Liu, D.; Yuan, P.; Tan, D. Y.; Liu, H. M.; Wang, T.; Fan, M. D.; Zhu, J. X.; He, H. P., Facile preparation of hierarchically porous carbon using diatomite as both template and catalyst and methylene blue adsorption of carbon products. Journal of Colloid Interface Science. 2012, 388, 176-184.

    13)   Liu, D.; Yuan, P. ; Liu, H. M.; Cai, J. G.; Qin, Z. H.; Tan, D. Y.; Zhou, Q.; He, H. P.; Zhu, J. X., Influence of heating on the solid acidity of montmorillonite: A combined study by DRIFT and Hammett indicators. Applied Clay Science. 2011, 52 (4), 358-363.

    14)  Liu, D.; Yuan, P. ; Tan, D. Y.; Liu, H. M.; Fan, M. D.; Yuan, A. H.; Zhu, J. X.; He, H. P., Effects of inherent/enhanced solid acidity and morphology of diatomite templates on the synthesis and porosity of hierarchically porous carbon. Langmuir 2010, 26 (24), 18624-18627.

    15)  Zhou, X.; Liu, D. (Corresponding author); Bu, H.; Deng, L.; Liu, H.; Yuan, P.; Du, P.; Song, H., XRD-based quantitative analysis of clay minerals using reference intensity ratios, mineral intensity factors, Rietveld, and full pattern summation methods: A critical review. 2018, 3 (1), 16-29.

    16)  Yuan, P.; Liu, D.; Zhou, J.; Tian, Q.; Song, Y.; Wei, H.; Wang, S.; Zhou, J.; Deng, L.; Du, P., Identification of the occurrence of minor elements in the structure of diatomaceous opal using FIB and TEM-EDS. American Mineralogist 2019, 104 (9), 1323-1335.

    17)  Bu, H.; Yuan, P.; Liu, H.; Liu, D.; Qin, Z.; Zhong, X.; Song, H.; Li, Y., Formation of macromolecules with peptide bonds via the thermal evolution of amino acids in the presence of montmorillonite: Insight into prebiotic geochemistry on the early Earth. Chemical Geology 2019, 510, 72-83.

    18)  Wei, Y.; Yuan, P.; Song, Y.; Liu, D.; Losic, D.; Tan, D.; Chen, F.; Liu, H.; Du, P.; Zhou, J., Activating 2D nano-kaolinite using hybrid nanoparticles for enhanced phosphate capture. Chemical Communications 2018, 54 (82), 11649-11652.

    19)  Bu, H.; Yuan, P.; Liu, H.; Liu, D.; Liu, J.; He, H.; Zhou, J.; Song, H.; Li, Z., Effects of complexation between organic matter (OM) and clay mineral on OM pyrolysis. Geochimica Et Cosmochimica Acta 2017, 212, 1-15.

    承担科研项目情况:
  •         已主持国家自然科学基金5项,广东省杰出青年基金项目1项

            1. 国家自然科学基金面上项目:硅藻的生物矿物(硅藻蛋白石)结构和表面性质受海洋酸化的影响及其对矿物溶解的制约

            2. 国家自然科学基金面上项目:红壤中1.4nm蛭石型羟基间层黏土矿物(1.4nm-HIV)与典型腐殖酸的界面作用机制

            3. 国家自然科学基金面上项目:硅藻生物的典型必需金属元素在其壳体中的赋存对硅藻蛋白石结构和表面性质的影响机理

            4. 国家自然科学基金面上项目:粘土矿物与有机质复合对其高压条件下甲烷吸附的影响与机制研究

            5. 国家自然科学基金青年基金项目:铝在硅藻蛋白石结构中的赋存及其对微结构、表面性质的影响机理研究

            6. 广东省自然科学基金杰出青年项目:粤西硅藻蛋白石矿物的性质调控及其在典型污染物吸附中的应用机制研究