姓名:张家武
职称: 教授 
性别:男
毕业院校:兰州大学
学历:研究生
学位:博士
在职信息:在职
所在单位:地理系
入职时间:2001.06
办公地点:祁连堂610B
电子邮箱:jwzhang@lzu.edu.cn
学习经历
1990年9月—1994年6月:安徽师范大学地理系地理教育专业本科,获理学学士学位; 1994年9月—1997年6月:中国科学院兰州沙漠研究所(后来的中国科学院寒区旱区环境与工程研究所,现在的中国科学院西北生态资源环境研究院);自然地理专业、风沙地貌研究方向, 获理学硕士学位; 1997年9月—2001年6月:兰州大学资源环境学院自然地理专业、环境变化研究方向获理学博士(导师:陈发虎教授); 1999年10月—2000年3月:英国伦敦大学环境变化研究中心,访问学者(英国皇家学会资助),介形虫壳体地球化学科研培训;
研究方向
湖泊沉积记录与环境变化, 全新世气候变化 沉积碳酸盐与介形虫壳体稳定同位素
工作经历
2001年7月—2006年12月:兰州大学资源环境学院自然地理研究所讲师,教学与科研;其中 2003年1月—2003年12月:英国伦敦大学环境变化研究中心博士后,合作者Jonathan A. Holmes教授; 2004年3月—2004年9月:国家自然科学基金委员会地球科学部地理学科,兼聘,自然科学基金项目管理; 2005年8月—2005年12月:英国曼彻斯特大学,访问学者(国家留学基金会资助),理工科英语教学培训(TSEE); 2007年1月—2011年12月:兰州大学资源环境学院副教授,教学与科研; 2012年1月—目前:兰州大学资源环境学院自然地理与环境变化研究所教授,教学与科研。
主讲课程
《自然地理学》 《全球环境变化》
学术兼职
中国第四纪研究会会员、中国海洋与湖沼学会湖泊学分会理事、《Frontiers of Earth sciences》编委
研究成果
1)中国季风区湖泊碳酸盐氧同位素综合集成与全新世亚洲季风变化; 2)干旱区湖泊沉积物无机碳酸盐AMS14C年代中的碳库效应评估。发表或合作发表SCI论文50余篇,中文核心期刊论文40余篇。
获得荣誉
获教育部“新世纪优秀人才”计划支持(2011) 获甘肃省自然科学一等奖1项(2009-Z1-002-R4) 二等奖1项(2008-Z2-004-R5) 科学技术进步一等奖1项(2011-J1-014-R8)。
在研项目
1. 青藏高原东北缘高山湖泊记录的全新世气候与环境变化,国家自然科学基金(批准号:41271220); 2. 科技部973项目《湖泊与湿地生态系统对全球变化的响应及生态恢复对策》第二课题《西北干旱区湖泊水文-生态系统演变过程与机制》(项目首席:沈吉研究员;课题负责人:赵艳研究员;2012CB956102)。
发表论文
1. Zhang J., Ma X., Qiang M., Huang X., Li S., Guo X., Henderson A.C.G., Holmes J.A., Chen F., 2016. Developing inorganic carbon-based radiocarbon chronologies for Holocene lake sediments in arid NW China. Quaternary Science Reviews 144, 66–82. 2. Zhang J., Chen F., Holmes J.A., Wang J., Li H., Guo X., Li S., Lu Y., Zhao Y., Qiang M., 2011. Holocene monsoon climate documented by oxygen and carbon isotopes from lake sediments and peat bogs in China: a review and synthesis. Quaternary Science Reviews 30, 1973–1987. 3. Zhang J., Holmes J.A., Chen F., Qiang M., Zhou A., Chen S., 2009. An 850-year ostracod-shell trace-element record from Sugan Lake, northern Tibetan Plateau, China: Implications for interpreting the shell chemistry in high-Mg/Ca waters. Quaternary International 194:119–133. 4. Zhang J., Chen F., Battarbee R. et al, 2003. High-resolution precipitation variations in the North Tibet Plateau over the last 800 years documented by sediment cores of Lake Qinghai. Chinese Science Bulletin 48(14): 1451–1456. (张家武,金明,陈发虎,R.W. Battarbee,A.C.G. Henderson,2004. 青海湖沉积岩芯记录的青藏高原东北部过去800年以来的降水变化. 科学通报,49(1):10–14.) 5. Rao Z., Li Y.,Zhang J., Jia G., Chen F., 2016. Investigating the long-term palaeoclimatic controls on the δD and δ18Oof precipitation during the Holocene in the Indian and East Asian monsoonal regions. Earth-Science Reviews 159:292–305. 6. Wu D., Chen F., Li K., Xie Y., Zhang J., Zhou A., 2016. Effects of climate change and human activity on lake shrinkage in Gonghe Basin of northeastern Tibetan Plateau during the past 60 years. Journal of Arid Land 8(4):479–491. 7. Liu H., Cui Y., Zuo X., Li H., Wang J., Zhang D., Zhang J., Dong G., 2016. Human settlements and plant utilization since the late prehistoric period in the Nujiang River valley, Southeast Tibetan Plateau. Archaeological Research in Asia5:63–71. 8. Li Y., Qiang M., Zhang J., Huang X., Zhou A., Chen J., Wang G., Zhao Y., 2016. Hydroclimatic changes over the past 900 years documented by the sediments of Tiewaike Lake, Altai Mountains, Northwestern China. Quaternary International, http://dx.doi.org/10.1016/j.quaint.2016.07.053 9. Li G., Jin M., Chen X., Wen L., Zhang J., Madsen D., Zhao H., Wang X., Fan T., Duan Y., Liu X., Wu D., Li F., Chen F., 2015. Environmental changes in the Ulan Buh Desert, southern Inner Mongolia, China since the middle Pleistocene based on sedimentology, chronology and proxy indexes.Quaternary Science Reviews128:69–80. 10. Chen F., Xu Q., Chen J., Birks H.J.B., Liu J., Zhang S., Jin L., An C., Telford R.J., Cao X., Wang Z., Zhang X., Selvaraj K., Lu H., Li Y., Zheng Z., Wang H., Zhou A., Dong G., Zhang J., Huang X., Bloemendal J., Rao Z., 2015. East Asian summer monsoon precipitation variability since the last deglaciation. Scientific Reports 5:11186, DOI:10.1038/srep11186 11. Wu D., Zhou A., Chen X., Yu J., Zhang J., Sun H., 2015. Hydrological and ecosystem response to abrupt changes in the Indian monsoon during the last glacial, as recorded by sediments from Xingyun Lake, Yunnan, China. Palaeogeography, Palaeoclimatology, Palaeoecology 421:15–23. 12. Zhao H., Sheng Y., Zhang J., Zhao Y., Li, G., 2015. Oasis evolution processes and mechanisms in the lower reaches of Heihe River, Inner Mongolia, China since 1 ka ago. The Holocene: 25(3): 445–453. 13. Huang X., Chen C., Jia W., An C., Zhou A., Zhang J., Jin M., Xia D., Chen F., Grimm E.C., 2015. Vegetation and climate history reconstructed from an alpine lake in central Tienshan Mountains since 8.5 ka BP. Palaeogeography, Palaeoclimatology, Palaeoecology 432:36–48. 14. Dong G., Zhang F., Ma M., Fan Y., Zhang J., Wang Z., Chen F., 2014. Ancient landslide-dam events in the Jishi Gorge, upper Yellow River valley, China. Quaternary Research 81(3):445–451. 15. Cheng B., Chen F., Zhang J., 2013. Palaeovegetational and palaeoenvironmental changes since the last deglacial in Gonghe Basin, northeast Tibetan Plateau. Joural of Geographical Sciences 23(1): 136–146. 16. Wünnemann B., Wagner J., Zhang Y., Yan D, Wang R., Shen Y., Fang X., Zhang J., 2012. Implications of diverse sedimentation patterns in Hala Lake, Qinghai Province, China for reconstructing Late Quaternary climate. Journal of Paleolimnology, 48(4):725–749. 17. Lü Y., An C., Zhang J., Wang Z., Tao S., Zhao J., 2012. A Holocene dust record in arid central Asia inferred from Lake Barkol, northwest China. Environmental Earth Sciences, 65(1):213–220. 18. Chen F., Chen J., Holmes J.,Boomer I., Austin P., Gates J.B., Wang N., Brooks S.J., Zhang J., 2010. Moisture changes over the last millennium in arid central Asia: a review, synthesis and comparison with monsoon region. Quaternary Science Reviews 29(7-8): 1055–1068. 19. Wang X., Zhang C., Zhang J., Hua T., Lang L., Zhang X., Wang L., 2010. Nebkha formation: Implications for reconstructing environmental changes over the past several centuries in the Ala Shan Plateau, China. Palaeogeography, Palaeoclimatology, Palaeoecology 297: 697–706. 20. Wang X., Chen F., Zhang J., Yang Y., Li J., Hasi E., Zhang C., Xia D., 2010. Climate, Desertification, and the Rise and Collapse of China’s Historical Dynasties. Human Ecology, 38(1):157–172. 21. Rao Z., Zhu Z., Jia G., Chen F., Barton L., Zhang J., Qiang M., 2010. Relationship between climatic conditions and the relative abundance of modern C 3 and C 4 plants in three regions around the North Pacific. Chinese Science Bulletin, 55(18):1931–1936. (饶志国,朱照宇,贾国东,陈发虎,Loukas B.,张家武,强明瑞,2010. 环北太平洋地区现代植物中C3/C4植物相对丰度与气候条件关系研究.科学通报, 55(12): 1134–1140.) 22. Chen J., Chen F., Zhang E., Brooks S., Zhou A., Zhang J., 2009. A 1000–year chironomid–based salinity reconstruction from varved sediments of Sugan Lake, Qaidam Basin, arid Northwest China, and its palaeoclimatic significance. Chinese Science Bulletin, 54(20):3749–3759. (陈建徽,陈发虎,张恩楼,Stephen Brooks,周爱锋,张家武,2009. 柴达木盆地苏干湖年纹层岩芯摇蚊记录的过去1000年干旱区湿度变化及其意义. 科学通报, 54(20): 3127–3135.) 23. Zhao Y., Yu Z., Chen F., Zhang J., Yang B., 2009. Vegetation response to Holocene climate change in monsoon–influenced region of China. Earth–Science Reviews 97: 242–256. 24. Zhou A., Chen F., Wang Z., Yang M., Qiang M., Zhang J., 2009. Temporal changes of radiocarbon reservoir effect in Sugan Lake, Northwest China during the late Holocene. Radiocarbon 51(2):529–535. 25. Wang Z., Zhang J., Zhang Q., Qiang M., Chen F., Ling Y., 2008. Barchans of Minqin: Sediment Transport. Geomorphology 96: 233–238. 26. Rao Z., Jia G., Zhu Z., Wu Y., Zhang J., 2008. Comparison of the carbon isotope composition of total organic carbon and long-chain n-alkanes from surface soils in eastern China and their significance. Chinese Science Bulletin, 53(24):3921–3927. (饶志国,贾国东,朱照宇,吴翼,张家武, 2008. 中国东部表土总有机质碳同位素和长链正构烷烃碳同位素的对比研究及其意义. 科学通报, 53(17): 2077–2084.) 27. Holmes J.A., Zhang J., Chen F., Qiang M., 2007. Paleoclimatic implications of an 850-year oxygen-isotope record from the northern Tibetan Plateau. GEOPHYSICAL RESEARCH LETTERS, VOL.34, L23403, doi:10.1029/2007GL032228,2007 28. Qiang M., Chen F., Zhang J., Zu R., Jin M., Zhou A., Xiao S., 2007. Grain size in sediments from Lake Sugan: a possible linkage to dust storm events at the northern margin of the Qinghai–Tibetan Plateau. Environmental Geology 51: 1229–1238. 29. Qiang M., Chen F., Zhou A., Xiao S., Zhang J., Wang Z., 2007. Impacts of wind velocity on sand and dust deposition during dust storm as inferred from a series of observations in the northeastern Qinghai–Tibetan Plateau, China. Powder Technology 175: 82–89. 30. Rao Z., Zhu Z., Zhang J., 2007. Different climatic controls of soil δ13Corg in three mid–lattitude regions of the Northern Hemisphere since the Last Glacial period. Chinese Science Bulletin 52(2):259–266. 31. Zhou A., Chen F., Qiang M., Yang M., Zhang J., 2007. The discovery of annually laminated sediments (varves) from shallow Sugan Lake in inland arid China and their paleoclimatic significance. Science in China Series D: Earth Sciences 50(8): 1218–1224. (周爱锋,陈发虎,强明瑞,杨美临,张家武,2007. 内陆干旱区柴达木盆地苏干湖年纹层的发现及其意义. 中国科学(D辑), 37(7): 1–8.) 32. Rao Z., Zhu Z., Chen F., Zhang J., 2006. Does δ13Ccarb of the Chinese loess indicate past C3/C4 abundance? A review of research on stable carbon isotopes of the Chinese loess. Quaternary Science Reviews 25: 2252–2257. 33. Chen F., Huang X., Zhang J., Holmes J. A., Chen J., 2006. Humid Little Ice Age in arid central Asia documented by Bosten Lake, Xinjiang, China. Science in China Series D: Earth Sciences, 49(12): 1280–1290. (陈发虎,黄小忠,张家武, Holmes J.A.,陈建徽,2007. 新疆博斯腾湖记录的内陆干旱区小冰期湿润气候研究. 中国科学(D辑), 37(1): 77–85.) 34. Chen F., Rao Z., Zhang J., Jin M., Ma J., 2006. Variations of organic carbon isotopic composition and its environmental significance during the last glacial on western Chinese Loess Plateau. Chinese Science Bulletin 51(3): 1593–1602. (陈发虎,饶志国,张家武,金明,马剑英,2006. 陇西黄土高原末次冰期有机碳同位素变化及其意义. 科学通报, 51(11): 1310–1317.) 35. Qiang M., Chen F., Zhang J., Gao S., Zhou A., 2005. Climatic changes documented by stable isotopes of sedimentary carbonate in Lake Sugan, northern Tibetan Plateau of China, since 2 ka BP. Chinese Science Bulletin 50(17): 1930–1939. (强明瑞,陈发虎,张家武,高尚玉,周爱锋,2005. 2ka苏干湖沉积碳酸盐稳定同位素记录的气候变化. 科学通报, 50(3): 1385–1393.) 36. Feng Z., Wang H., Olson C., Pope G.A., Chen F., Zhang J., An C., 2004. Chronological discord between the last interglacial paleosol (S1) and its parent material in the Chinese Loess Plateau. Quaternary International 117: 17–26. 37. Wang X., Dong Z., Yan P., Zhang J., Qian G., 2005. Wind energy environments and dunefield activity in the Chinese deserts. Geomorphology 65: 33–48. 38. Wang X., Dong Z., Zhang J., Liu L., 2004. Modern dust storms in China: An overview. Journal of Arid Environments 58(4): 559–574. 39. Wang X., Dong Z., Zhang J., Qu J., 2004. Formation of the complex linear dunes in the central Taklimakan Sand Sea, China. Earth Surface Processes and Landforms, 29(6):677–686. 40. Mischke S., Herzschuh U., Kürschner H., Fuchs D., Zhang J., Meng F., Sun Z., 2003. Sub–Recent Ostracoda from Qilian Mountains (NW China) and their ecological significance. Limnologica 33: 280–292. 41. Henderson A.C.G., Holmes J.A., Zhang J., Leng M.J., Carvalho L.R., 2003. A carbon– and oxygen–isotope record of recent environmental change from Qinghai Hu, NE Tibetan Plateau. Chinese Science Bulltein 48(14):1463–1468. 42. Ma J., Li D., Zhang J., Edmunds W.M., Prudhomme C., 2003. Groundwater recharge and climatic change during the last 1000 years from unsaturated zone of SE BadainJaran Desert. Chinese Science Bulletin 48(14): 1469–1474. 43. Wang X., Dong Z., Qu J., Zhang J., Zhao A., 2003. Dynamics processes of a simple linear dune in Taklimakan Sand Sea. Geomorphology 52, 233–241. 44. Wang X., Dong Z., Zhang J., Qu J., Zhao A., 2003. Grain size characteristics of dune sands in the central Taklimakan Sand Sea. Sedimentary Geology 161: 1–14. 45. Zhu Y., Xie Y., Cheng B., Chen F., Zhang J., 2003. Pollen transport in the Shiyang River drainage, arid China. Chinese Science Bulletin, 48(14):1499–1506. (朱艳,程波,陈发虎,张家武,2004. 石羊河流寓现代孢粉传播研究. 科学通报,49(1): 15–21.) 46. Yang B., Braeuning A., Shi Y., Zhang J., 2003. Temperature variations on the Tibetan Plateau over the last two millennia. Chinese Science Bulletin, 48(14):1446–1450. 47. Wang X., Dong Z., Zhang J., Chen G., 2002. Geomorphology of sand dunes in the northeast Taklimakan Sand Sea. Geomorphology 42: 183–195. 48. Wang X., Dong Z., Zhang J., Zhao A., 2002. Relations between morphology, airflow, sand flux and particle size on transverse dunes, Taklimakan Sand Sea. Earth Surface Processes and Landforms 27: 515–526. 49. Wu H., Guo Z., Fang X., Zhang J., Chen F., 2002. Extension of drylands in northern China around 250 kaBP linked with the uplift of the southeast margin of Tibetan Plateau. Chinese Science Bulletin, 47(20):1739–1745. (吴海斌,郭正堂,方小敏,张家武,陈发虎,2002. 250 kaBP前后中国北方干旱区的扩张及其原因,科学通报,47(17): 1341–1346.) 50. Zhu Y., Chen F., Cheng B., Zhang J., Madsen D.B., 2002. Pollen Assemblage Features of Modern Water Samples from the Shiyang River Drainage, Arid China. ActaBotanicaSinica 44(3): 367–373. 51. Chen F., Feng Z., Zhang J., 2000. Loess particle size data indicative of stable winter monsoons during the last interglacial in the Western Part of the Chinese Loess Plateau. Catena 39: 233–244. 52. Chen F., Feng Z., Zhang J., 2000. Stable winter monsoon during the last interglacial documented by eolian deposits in the western part of the Chinese Loess Plateau. 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