姓名:袁鹏
性别:男
职务:中科院矿物学与成矿学重点实验室副主任
职称:研究员
学历:博士研究生
电话:
传真:
电子邮件:yuanpeng@gig.ac.cn
通讯地址:广州市天河区科华街511号
简 历:
1996年和1999年在合肥工业大学资源与环境科学系分获学士和硕士学位。1999-2001年在中科院广州地球化学所攻读并获理学博士学位。2006年受国家留学基金委资助在悉尼大学访学,2015年作为高级研究学者在法国国家科学研究中心(CNRS)访研。现为广州地球化学研究所研究员、博士生导师、中科院矿物学与成矿学重点实验室副主任。兼任粘土科学领域国际主流期刊Applied Clay Science主编(Editor-in-Chief),中国矿物岩石地球化学学会非金属矿资源高效利用专业委员会副主任,环境矿物学专业委员会、矿物岩石材料专业委员会委员等。在Elsevier出版英文学术专著1部。客座编辑期刊专刊4辑。发表SCI论文和中文核心期刊论文逾150篇。SCI论文的SCI引用(Web of Science)逾7200次(h指数49;第一作者最高单篇SCI引用逾560次)。4篇第一作者SCI论文入选“ESI TOP 1%高被引论文”。社会任职:
研究方向:
主要研究资源及其环境生态效应和应用。近年的主要研究方向:(1)微生物-颗粒物界面作用机制及其生态和环境效应。(2)超微粘土和纳米结构矿物的表界面作用之机理和应用。(3)我国优势资源高效利用、固体废弃物处置、污染控制和治理的技术方法和应用。在三矿/环境科学/环境工程专业招收博士、硕士研究生,在“环境科学与工程”和“地质学”博士后流动站招收博士后。本实验室研究条件良好,工作氛围融洽、科研合作广泛,可为青年人的发展提供丰富可能。本组的研究工作富交叉性、探索性和挑战性,具有科学意义和应用前景,欢迎学子们加入!
获奖及荣誉:
2019年入选第4批国家高层次人才特殊支持计划(领军人才)2018年度广东省科学技术一等奖(自然科学奖类),排名第二
2018年入选科技部“中青年科技创新领军人才”
2016年获评中国科学院青年创新促进会“优秀会员”
2015年首届中国科学院“科技促进发展奖(科技贡献奖)”,排名第四
2008年度首届中国科学院“卢嘉锡青年人才奖”
2007年度广东省科学技术一等奖(自然科学奖类),排名第二
2006年度中国矿物岩石地球化学学会“侯德封奖”
代表论著:
学术专著[1] Yuan, P.; Thill A.; Annabi-Bergaya, F., Nanosized Tubular Clay Minerals, Elsevier. 2016.
期刊论文
[2] Liu, D.#; Yuan, P.#*; Tian, Q.; Liu, H.; Deng, L.; Song, Y.; Zhou, J.; Losic, D.; Wei, H.; Zhou, J.; Song, H.; Guo, H., Fan, W., Lake sedimentary biogenic silica from diatoms constitutes a significant global sink for aluminium. Nature Comm., 2019. 10, 4829. https://doi.org/10.1038/s41467-019-12828-9.
[3] 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. Am. Mineral. 2019, 104(9), 1323-1335.
[4] Wei, Y. F; Yuan, P. *; Liu, D.; Losic, D.; Tan, D. Y; Chen, F. R; Liu, H. C,; Zhou, J. M; Du, P. X; Song, Y. R., Activation of natural halloysite nanotubes by introducing lanthanum oxycarbonate nanoparticles via co-calcination for outstanding phosphate removal. Chem. Comm. 2019, 55 (14), 2110-2113.
[5] 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. Chem. Geol. 2019, 510, 72-83.
[6] Liu, D.; Tian, Q.; Yuan, P. *; Du, P.; Zhou, J.; Li, Y.; Bu, H.; Zhou, J., Facile sample preparation method allowing TEM characterization of the stacking structures and interlayer spaces of clay minerals. Appl. Clay Sci. 2019, 171, 1-5.
[7] Wei, Y. F; Yuan, P. *; Song, Y. R; Liu, D.; Losic, D.; Tan, D. Y; Chen, F. R; Liu, H.C; Du, P. X; Zhou, J. M, Activating 2D nano-kaolinite using hybrid nanoparticles for enhanced phosphate capture. Chem. Comm. 2018, 54 (82), 11649-11652.
[8] Wang, S.; Du, P.; Yuan, P. *; Zhong, X. M; Liu, Y. Q; Liu, D.; Deng, L. L, Changes in the structure and porosity of hollow spherical allophane under alkaline conditions. Appl. Clay Sci. 2018, 166, 242-249.
[9] Du, P. X; Yuan, P. *; Liu, D.; Wang, S.; Song, H. Z.; Guo, H. Z., Calcination-induced changes in structure, morphology, and porosity of allophane. Appl. Clay Sci. 2018, 158, 211-218.
[10]Liu, H.; Yuan, P.*; Liu, D.; Bu, H.; Song, H.; Qin, Z.; He, H., Pyrolysis behaviors of organic matter (OM) with the same alkyl main chain but different functional groups in the presence of clay minerals. Appl. Clay Sci. 2018, 153, 205-216.
[11]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. Geochim. Cosmochim. Ac.2017, 212, 1-15.
[12]Du, P. X.; Yuan, P.*; Thill, A.; Annabi-Bergaya, F.; Liu, D.; Wang, S., Insights into the formation mechanism of imogolite from a full-range observation of its sol-gel growth. Appl. Clay Sci. 2017, 150, 115-124.
[13] Liu, D.; Yu, W. B.; Deng, L. L.; Yuan, W. W.; 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. J Colloid Interf. Sci. 2016, 461, 64-68.
[14]Yuan, W. W.; Yuan, P.*; Liu, D.; Yu, W. B.; Laipan, M. W.; Deng, L. L.; Chen, F. R., In situ hydrothermal synthesis of a novel hierarchically porous TS-1/modified-diatomite composite for methylene blue (MB) removal by the synergistic effect of adsorption and photocatalysis. J Colloid Interf. Sci. 2016, 462, 191-199.
[15]Yu, W. B.; Deng, L. L.; Yuan, P.*; Liu, D.; Yuan, W. W.; Liu, P.; He, H. P.; Li, Z. H.; Chen, F. R., Surface silylation of natural mesoporous/macroporous diatomite for adsorption of benzene. J Colloid Interf. Sci. 2015, 448, 545-552.
[16]Yuan, P.; Tan, D.; Annabi-Bergaya, F., Properties and applications of halloysite nanotubes: Recent research advances and future prospects. Appl. Clay Sci. 2015, 112, 75-93.
[17] Tan, D. Y.; Yuan, P.*; Annabi-Bergaya, F.; Dong, F. Q.; Liu, D.; He, H. P., A comparative study of tubular halloysite and platy kaolinite as carriers for the loading and release of the herbicide amitrole. Appl. Clay Sci. 2015, 114, 190-196.
[18]Yu, W. B.; Yuan, P.*; Liu, D.; Deng, L. L.; Yuan, W. W.; Tao, B.; Cheng, H. F.; Chen, F. R., Facile preparation of hierarchically porous diatomite/MFI-type zeolite composites and their performance of benzene adsorption: The effects of NaOH etching pretreatment. J. Hazard. Mater. 2015, 285, 173–181.
[19]Yuan, W. W.; Yuan, P.*; Liu, D.; Yu, W. B.; Deng, L. L.; Chen, F. R., Novel hierarchically porous nanocomposites of diatomite-based ceramic monoliths coated with silicalite-1 nanoparticles for benzene adsorption. Micropor. Mesopor. Mat. 2015, 206, 184-193.
[20]Qin, Z. H.; Yuan, P.*; Yang, S. Q.; He, H. P.; Zhu, J. X., Silylation of Al-13-intercalated montmorillonite with trimethylchlorosilane and adsorption for Orange II. Appl. Clay Sci. 2014, 99, 229-236.
[21] Tan D.Y.; Yuan P.*; Annabi-Bergaya, F.; Liu, D.; Wang, L. J.; Liu, H. M.; He, H. P., Loading and in vitro release of ibuprofen in tubular halloysite. Appl. Clay Sci. 2014, 96, 50-55.
[22]Yuan, P.; Tan, D.; Annabi-Bergaya, F.; Yan, W.; Liu, D.; Liu Z., From platy kaolinite to aluminosilicate nanoroll via one-step delamination of kaolinite: Effect of the temperature of intercalation, Appl. Clay Sci. 2013, 83-84, 68-76.
[23]Yuan, P.; Liu, H. M.; Liu, D.; Tan D. Y.; Yan, W. C.; He, H.P., Role of the interlayer space of montmorillonite in hydrocarbon generation: an experimental study based on high temperature-pressure pyrolysis, Appl. Clay Sci. 2013, 75-76, 82-91.
[24]袁鹏,杜培鑫,周军明,王顺,铝硅酸盐纳米矿物的地质意义和资源价值再认识,岩石学报,2019, 35(01), 164-176.
[25] 袁鹏,纳米结构矿物的特殊结构和表-界面反应性,地球科学,2018, 43(05), 1384-1407.
[26] 周军明,袁鹏*,余亮,刘小永,张佰发,樊文枭,刘冬,八尺风化淋积型稀土矿凝灰岩风化壳中的细粒矿物特征,矿物学报,2018, 38(04), 420-428.
[27] 颜文昌,吴大清,袁鹏*,陈鸣,刘冬,詹建华,谭道永,富镁与贫镁坡缕石在热处理下的结构变化研究,矿物学报,2012, 32(4), 475-480.
[28] 樊明德,袁鹏*,陈天虎,何宏平,袁爱华,陈康敏,朱建喜,刘冬,蒙脱石载体对"核-壳"结构零价铁纳米颗粒制备及其尺寸控制的影响与机理,科学通报,2010, 55(9), 827-834.
[29] 袁鹏,吴大清,翁维正,何国伟,陈丽江,王德强,硅藻土表面酸位及其来源探讨,矿物学报,2001, 21(3), 431.
[30] 袁鹏,吴大清,陈忠,陈志伟,林种玉,刁桂仪,彭金莲,硅藻土表面羟基的1H魔角旋转核磁共振谱,科学通报,2001, 46(4), 342.