王国安
近期热点
资料介绍
个人简历
教育背景1983.9-1987.7 中南大学 地质学 本科 工学学士1995.9-1998.7 中国科学院兰州地质所 地球化学 理学硕士1998.9-2001.8 中国科学院地质与地球物理所 地质学 理学博士工作履历1987.08-1988.08 甘肃有色地质研究所 助理工程师1988.08-1995.08甘肃有色地质研究所 工程师2001.09-2003.10 北京大学城市与环境学院 自然地理学 博士后2003.10-2011.12 中国农业大学资源与环境学院 副教授其中:2006.11-2007.11 达特茅斯学院 地球科学系 访问学者2012.01- 中国农业大学资源与环境学院 教授 系党支部书记其中:2015.09-2016.03 达特茅斯学院 地球科学系 交流学者奖励与荣誉中国农业大学2016年教学成果一等奖(2016)排名二中国农业大学“优秀班主任”(2015)中国农业大学本科生“百篇优秀毕业论文(设计)”优秀指导教师奖(2014)中国农业大学“优秀党员”(2013)中国农业大学本科生“百篇优秀毕业论文(设计)”优秀指导教师奖(2012)研究领域
1.利用稳定同位素技术、生物标志化合物以及微生物技术等研究生物地球化学循环2.利用稳定同位素技术、生物标志化合物以及微生物技术等研究陆地生态系统对全球变化的响应3. 利用稳定同位素技术和生物标志化合物研究全球气候环境变化""近期论文
2017年:1. Zixun Chen, Guoan Wang*, and Yufu Jia. 2017. Foliar δ13C Showed No Altitudinal Trend in an Arid Region and Atmospheric Pressure Exerted a Negative Effect on Plant δ13C. Frontiers in Plant Science, 8: 1070. 2. Chongjuan Chen, Jiazhu Li, GuoanWang*, Minrui Shi. 2017. Accounting for the effect of temperature in clarifying the response of foliar nitrogen isotope ratios to atmospheric nitrogen deposition. Science of the Total Environment (正在出版中).3. Wenbing Tan, Beidou Xi, Guoan Wang et al. 2017. Increased Electron-Accepting and Decreased Electron-Donating Capacities of Soil Humic Substances in Response to Increasing Temperature. Environmental Science & Technology, 51: 3176-3186.4. Wenbing Tan, Guoan Wang, Caihong Huang et al. 2017. Physico-chemical protection, rather than biochemical composition,governs the responses of soil organic carbon decomposition to nitrogen addition in a temperate a groecosystem. Science of the Total Environment, 598: 282-288.2016:1. Li JZ, Wang GA*, Zhang RN, Li L. 2016. A Negative Relationship between Foliar Carbon Isotope Composition and Mass-Based Nitrogen Concentration on the Eastern Slope of Mount Gongga, China. PLoS ONE, 11(11): e0166958.2. Qiqi Tan, Guoan Wang*. 2016. Decoupling of nutrient element cycles in soil and plants across an altitude gradient. Scientific Reports, 6.3. Yufu Jia, Guoan Wang*, Qiqi Tan, and Zixun Chen. 2016. Temperature exerts no influence on organic matter δ13 C of surface soil along the 400mm isopleth of mean annual precipitation in China. Biogeosciences, 13(17): 5057-5064.4. 李丽, 檀文炳, 王国安*等. 2016. 腐殖质电子传递机制及其环境效应研究进展. 环境化学, 35(2): 254-266.2015:1. Meng Xu, Guoan Wang*, Xiaoling Li. et al. 2015. The key factor limiting plant growth in cold and humid alpine areas also plays a dominant role in plant carbon isotope discrimination. Frontiers in Plant Science, 6.2. Guoan Wang*, Yufu Jia, Wei Li. 2015. Effects of environmental and biotic factors on carbon isotopic fractionation during decomposition of soil organic matter. Scientific Reports, 5.3. Wenjie Xiao, Yunping Xu, Su Ding, Yinghui Wang, Xinyu Zhang, Huan Yang, Guoan Wang, Juzhi Hou. 2015. Global calibration of a novel, branched GDGT-based soil pH proxy. Organic Geochemistry, 89-90: 56-60.2014:1. Guoan Wang, Leilei Zhang, Xinyu Zhang, Yinghui Wang , Yunping Xu*. 2014. Chemical and carbon isotopic dynamics of grass organic matter during litter decompositions: A litterbag experiment. Organic Geochemistry, 69: 106-113.2. 王数, 李保国, 吕贻忠, 张洪军, 郭淑媛, 王国安, 孔祥斌, 李子忠. 2014. “资源环境野外综合实习”课程的创新与实践. 教学研究与课改.2013:1. Zhiguo Rao, Fahu Chen, Hai Cheng, Weiguo Liu, Guo’an Wang, Zhongping Lai & Jan Bloemendal. 2013. High-resolution summer precipitation variations in the western Chinese Loess Plateau during the last glacial. Scentific Reports, 3: 2785.2. Guoan Wang*, Jiazhu Li*, Xianzhao Liu, Xiaoyun Li. 2013. Variations in carbon isotope ratios of plants across a temperature gradient along the 400 mm isoline of annual precipitation in north China and relevance to paleovegetation reconstruction. Quaternary Science Reviews, 63: 83-90.2012:1. Wang GA*, Feng XH. 2012. Response of plants’ water use efficiency to increasing atmospheric CO2 concentration. Environmental Science & Technology, 46: 8610-8620.2. Shi WQ, Wang GA*, Han WX*. 2012. Altitudinal variation in leaf nitrogen concentration on the eastern slope of Mount Gongga on the Tibetan Plateau, China. PLoS ONE, 7(9): e44628.3. 王国安, 张雷雷, 柳晓娟. 2012. 用土壤有机质的碳同位素变化探讨环境因子和生物学因子对土壤有机碳周转的影响. 球环境学报, 3(4): 960-968.2011:1. Yao FY, Wang GA*, Liu XJ, Song L. 2011. Assessment of effects of the rising atmospheric nitrogen deposition on nitrogen uptake and long‐term water‐use efficiency of plants using nitrogen and carbon stable isotopes. Rapid Commun. Mass Spectrom, 25: 1827-1836.2. 刘贤赵, 李朝奎, 徐树建, 王文文, 王国安, 赵丽丽. 2011. 中国北方干湿气候区C3草本植物δ13C值及其与湿润指数的关系. 植物学报, 46(6): 675-687. 2010:1. Wang GA*, Zhou LP*, Liu M, et al. 2010. Altitudinal trends of leaf δ13C follow different patterns across a mountainous terrain in north China characterized by a temperate semi-humid climate. Rapid Communications in Mass Spectrometry, 24: 1557-1564.2. Liu XZ, Wang GA*. 2010. Measurements of nitrogen isotope composition of plants and surface soils along the altitudinal transect of the eastern slope of Mount Gongga in southwest China. Rapid Communications in Mass Spectrometry, 24: 3063-3071.3. Liu XZ, Wang GA, Li JZ, Wang Q. 2010. Nitrogen isotope composition characteristics of modern plants and their variations along an altitudinal gradient in Dongling Mountain in Beijing. Science China Earth Sciences, 53(1): 128-140.4. Chen PN, Wang GA*, Han JM, Liu M, Liu XQ. 2010. δ13C difference between plants and soils on the eastern slope of Mount Gongga. Chinese Science Bulletin, 55(1): 55-62.5. Liu XZ, Wang GA*. 2010. Measurements of nitrogen isotope composition of plants and surface soils along the altitudinal transect of the eastern slope of Mount Gongga in southwest China. Rapid Communications in Mass Spectrometry, 24: 3063-3071.2009:1. Li JZ, Wang GA*, liu XZ, et al. 2009 Variations in carbon isotope ratios of C3 plants and distribution of C4 plants along an altitudinal transect on the eastern slope of Mount Gongga. 52(11): 1714-1723.2. Tan WB, Wang GA*, Han JM, et al. 2009. δ13C and water-use efficiency indicated by δ13C of different plant functional groups on Changbai Mountains, Northeast China. Chinese Science Bulletin, 54(10): 1759-1764.3. Tao Qianye, Li Yumei, Wang Guoan, QiaoYuhui, Liu Tung-Sheng. 2009. Variations of microbial communities and the contents and isotopic compositions of total organic carbon and total nitrogen in soil samples during their preservation. Acta Geologica Sinica, 83(1): 114-120.4. 陈芃娜, 王国安*, 韩家懋, 柳晓娟, 刘敏. 2009. 贡嘎山东坡植物和土壤有机质的13C差异. 科学通报, 54(22): 3512-3520.5. 李嘉竹, 王国安*, 刘贤赵, 韩家楙, 刘敏, 柳晓娟. 2009. 贡嘎山东坡C3植物碳同位素组成及C4植物分布沿海拔高度的变化. 中国科学, D辑(地球科学), 39(10): 1387-1396.6. 檀文炳, 王国安*, 韩家楙, 刘敏, 周力平, 罗婷, 曹子余, 程树志. 2009. 长白山不同功能群植物碳同位素及其对水分利用效率的指示. 科学通报, 54(13): 1912-1916.7. 刘贤赵, 王国安*, 李嘉竹, 王庆. 2009. 北京东灵山地区现代植物氮同位素组成及其对海拔梯度的响应. 中国科学, D辑(地球科学), 39(10): 1347-1359.2008:1. Wang GA*, Feng X, Han J, Zhou L, Tan W. Su F. 2008. Paleovegetation reconstruction using δ13C of soil organic matter. Biogeosciences, 5: 1325-13372. Wang GA*, Han J, Faiia A, et al. 2008. Experimental measurements of leaf carbon isotope discrimination and gas exchange in the progenies of Plantago depressa and Setaria viridis collected from a wide altitudinal range. Physiologia Plantarum, 134: 64-73.3. 石伟琦, 王国安, 张俊伶, 李晓林. 2008. 丛枝菌根真菌对羊草δ13C组成和气体交换影响.植物营养与肥料学报, 14(3): 570-575.4. 石伟琦, 王国安, 李晓林. 2008. 丛枝菌根真菌对羊草气体交换和δ13C、δ15N组成的影响.核农学报, 22(3): 353-358.2006:1. Wang GA*, Han JM, Zhou LP, et al. 2006. Carbon isotope ratios of C4 plants in loess areas of North China. Science in China, series D, 49(1): 97-102.2005:1. Wang GA*, Han JM, Zhou LP, et al. 2005. Carbon isotope ratios of plants and occurrences of C4 species under different soil moisture regimes in arid region of Northwest China. Physiologia Plantarum, 25: 74-81.2. 王国安, 韩家懋, 周力平, 等. 2005. 中国北方黄土区C4植物稳定碳同位素组成的研究. 中国科学, D 辑, 35(12): 1174-1179.3. 蔡炳贵, 程海, 侯居峙, 刘宏, 王国安, 刘东生. 2005. 云南石林地区土壤侵蚀的石笋记录与现代观测. 第四纪研究, 25(2): 170-175.2004:1. Lu HY, Wu NQ, Gu ZY, Guo ZT, Wang L, Wu HB, Wang GA, et al. 2004. Distribution of carbon isotope composition of modern soils on the Qinghai-Tibetan Plateau. Biogeochemistry, 70: 273-297.2. 秦小光, 蔡炳贵, 吴金水, 王国安, 刘东生. 2004. 土壤微量气体的昼夜变化以及相关影响因素. 第四纪研究, 25(3): 376-388.3. 秦小光, 蔡炳贵, 吴金水, 刘东生, 王国安. 2004. 北京灵山草地土壤CO2源汇和排放通量与温度湿度昼夜变化的关系. 生态环境, 13(4): 470-475.2003:1. Wang GA*, Han JM, Liu TS. 2003. The carbon isotopic composition of C3 herbaceous plants in loess area of North China. Science in China, series D, 46(10): 1069-1076.2. 王国安. 2003. 稳定碳同位素在第四纪古环境研究中的应用. 第四纪研究, 23(5): 471-484.3. 王国安, 韩家懋, 刘东生. 2003. 中国北方黄土区C-3草本植物碳同位素组成研究. 中国科学, D 辑, 33(6): 550-556.2002:1. Ding ZL, Ranov V, Yang SL, Finaev A, Han JM, Wang GA. 2002. The loess record in southern Tajikistan and correlation with Chinese loess. Earth and Planetary Science Letters, 200(3-4): 387-400.2. 王国安, 韩家懋, 周力平. 2002. 中国北方C-3植物碳同位素组成与年均温度关系. 中国地质, 29(1): 55-57.3. 王国安, 申建中, 何宏, 季美英. 2002. 塔北、塔中天然气中烷烃同系物碳同位素组成系列倒转现象的解释. 沉积学报, 20(3): 482-487.4. 韩家懋, 王国安, 刘东生. 2002. C4植物的出现与全球环境的变化. 地学前缘, 9(1): 233-243.5. 韩家懋, 王国安. 2002. 植物的演进与全球环境的变化. 天津地质矿产研究所建所40周年•前寒武纪第四纪地质文集.2001:1. 王国安, 申建中, 季美英. 2001. 塔北、塔中天然气中CO2的碳同位素组成及成因探讨. 地质地球化学, 29(1): 36-39.2. 王国安, 韩家懋. 2001. C-3植物碳同位素在旱季和雨季中的变化. 海洋地质与第四纪地质, 21(4): 43-47.3. 王国安, 韩家懋. 2001, 中国西北C-3植物的碳同位素组成与年降雨量关系初探. 地质科学, 36(4): 494-499.2000:1. Lu Houyuan, Wang Yongji, Wang Guoan, Yang Hui, Li Zhen. 2000. Analysis of carbon isotope in phytoliths from C3 and C4 plants and modern soils. Chinese Science Bulletin, 45(19): 1804-1808.2. 王永吉, 吕厚远, 王国安, 杨辉, 李珍. 2000. C3,C4植物和现代土壤中硅酸体碳同位素分析. 科学通报, 45(9): 978-982.3. 蔡春芳, 王国安, 何宏. 2000. 库车前陆盆地流体化学、成因与流动. 地质地球化学, 28(1): 58-62.3. 丁仲礼, 杨石岭, 韩家懋, 王国安. 2000. 塔吉克斯坦南部黄土堆积. 第四纪研究, 20(2): 171-177.1998:1. 王国安, 申建中, 季美英. 1998. 塔北天然气组分特征及同位素组成. 沉积学报, 16(4): 128-132.1992:1. 孙省利. 王国安. 袁明坤. 1992. 甘肃西成铅锌矿田铅、硫同位素总结研究. 甘肃地质学报, 1(2): 51-56.出版著作1. 环境稳定同位素原理. 中国地质出版社, 2011, 主编.2. 地质与地貌学. 中国农业大学出版社, 2012, 参编.3. 根际生态学. 中国科学出版社, 2008, 参编.欧洲地球科学学会(European Geosciences Union)会员(2016 – )中国原子能农学会第九届理事会常务理事(2014 – )中国科学院研究生院(国科大)地球科学学院校友会理事(2012 –)中国岩石、矿物和地球化学学会会员(2006 – )中国第四纪科学学会会员(2004 – ) 相关热点
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