The response of stalagmite gray-level and isotopes to the climatic events during the last glacial period
暂无分享,去创建一个
Xianfeng Wang | Yongjin Wang | Shitao Chen | Yijia Liang | Meng Wang | Wan-chun Huang | Wenyue Cai | Qing-lin Gong
[1] Yi Wang,et al. Changes in the Asian monsoon climate during the late last interglacial recorded in oxygen isotopes of a stalagmite from the Yongxing Cave, central China , 2019, Journal of Asian Earth Sciences.
[2] Yongjin Wang,et al. Multiscale analysis of Asian Monsoon over the past 640 ka , 2019, Science China Earth Sciences.
[3] Yongjin Wang,et al. The transfer of oxygen isotopic signals from precipitation to drip water and modern calcite on the seasonal time scale in Yongxing Cave, central China , 2018, Environmental Earth Sciences.
[4] Ming Li,et al. Abrupt monsoonal shifts over the precessional cycles documented in Yongxing Cave in China during the antepenultimate glacial period , 2018, Environmental Earth Sciences.
[5] J. Banner,et al. Constraining the subsoil carbon source to cave-air CO 2 and speleothem calcite in central Texas , 2017 .
[6] P. Aharon,et al. Ocean-atmosphere interactions as drivers of mid-to-late Holocene rapid climate changes: Evidence from high-resolution stalagmite records at DeSoto Caverns, Southeast USA , 2017 .
[7] J. Fohlmeister,et al. Winter precipitation changes during the Medieval Climate Anomaly and the Little Ice Age in arid Central Asia , 2017 .
[8] A. Clement,et al. Multi-proxy evidence of millennial climate variability from multiple Bahamian speleothems , 2017 .
[9] R. Edwards,et al. Strong coupling of Asian Monsoon and Antarctic climates on sub-orbital timescales , 2016, Scientific Reports.
[10] R. Edwards,et al. Correction: Corrigendum: The Asian monsoon over the past 640,000 years and ice age terminations , 2016, Nature.
[11] Jian Wang,et al. Geochronology and geochemistry of tuff beds from the Shicaohe Formation of Shennongjia Group and tectonic evolution in the northern Yangtze Block, South China , 2016, International Journal of Earth Sciences.
[12] Dalis E. Collins. Choosing a non-traditional path , 2015, Lab Animal.
[13] R. Edwards,et al. A 3000-yr Annually Laminated Stalagmite Record of the Last Glacial Maximum from Hulu Cave, China , 2015, Quaternary Research.
[14] R. Edwards,et al. High-resolution stalagmite δ13C record of soil processes from southwestern China during the early MIS 3 , 2013 .
[15] Liao Jie. Pollen-based environmental reconstruction around Dajiuhu Lake, Shennongjia Mountains since 40 ka BP , 2013 .
[16] Donald A. McFarlane,et al. Post-speleogenetic biogenic modification of Gomantong Caves, Sabah, Borneo , 2012 .
[17] J. Chiang,et al. Extratropical Cooling, Interhemispheric Thermal Gradients, and Tropical Climate Change , 2012 .
[18] Yang Yan. Grayscale and climatic instructions of modern stalagmite from artificial tunnel inside the Fairy Hill in Hubei , 2012 .
[19] Wu Jiang-ying. Paleoclimate significance of δ~(13)C in stalagmite from Nuanhe Cave,Liaoning , 2012 .
[20] S. Clemens,et al. Influence of Atlantic meridional overturning circulation on the East Asian winter monsoon , 2012 .
[21] M. Tan,et al. Intra‐annual variation of the calcite deposition rate of drip water in Shihua Cave, Beijing, China and its implications for palaeoclimatic reconstructions , 2011 .
[22] Z. Lixia. STUDY ON SEDIMENTATION RATE OF MODERN CAVE STALAGMITE CARBONATE(CaCO_3) DEPOSITS AND ITS ENVIRONMENTAL SIGNIFICANCE:A CASE FROM PANLONG CAVE,GUILIN,CHINA , 2011 .
[23] Jianglin Wang,et al. Implications of stalagmite density for past climate change: An example from stalagmite growth during the last deglaciation from Wanxiang Cave, western Loess Plateau , 2010 .
[24] D. Hemming,et al. Water limitation to soil CO2 efflux in a pine forest at the semiarid “timberline” , 2009 .
[25] Xiaohua Shao,et al. Millennial- and orbital-scale changes in the East Asian monsoon over the past 224,000 years , 2008, Nature.
[26] L. Hong. The δ~(13)C and δ~(18)O Features and Their Significances of Speleothems in Furong Cave,Chongqing,China , 2008 .
[27] D. Sahagian,et al. Stalagmite stable isotope record of recent tropical cyclone events , 2007 .
[28] Andy Baker,et al. University of Birmingham Modification and preservation of environmental signals in speleothems , 2005 .
[29] Y. Dao-xian,et al. A 4500-YEAR HIGH-RESOLUTION CLIMATIC RECORD FROM A STALAGMITE IN XINYA CAVE,CHONGQING,CHINA , 2006 .
[30] R. Edwards,et al. Complicated responses of stalagmite δ 13C to climate change during the last glaciation from Hulu Cave, Nanjing, China , 2005 .
[31] Q. Shu,et al. A study of pollen and climatic stratigraphy in the northern Jiangsu basin since Late Pleistocene , 2005 .
[32] Yu Liu,et al. Digital image analysis of palaeoenvironmental records and applications , 2002 .
[33] B. Hamelin,et al. Dead carbon in stalagmites: carbonate bedrock paleodissolution vs. ageing of soil organic matter. Implications for 13C variations in speleothems , 2001 .
[34] Jinquan Wu,et al. Correlation between high-resolution climate records from a Nanjing stalagmite and GRIP ice core during the last glaciation , 2001 .
[35] X. Qin,et al. Characteristics of annual laminae gray level variations in a stalagmite from Shihua Cave, Beijing and its climatic significance (II) , 2000 .
[36] F. Sirocko,et al. The low-latitude monsoon climate during Dansgaard–Oeschger cycles and Heinrich Events , 2000 .
[37] J. Jouzel,et al. Comparison of oxygen isotope records from the GISP2 and GRIP Greenland ice cores , 1993, Nature.
[38] J. Jouzel,et al. Evidence for general instability of past climate from a 250-kyr ice-core record , 1993, Nature.
[39] H. Heinrich,et al. Origin and Consequences of Cyclic Ice Rafting in the Northeast Atlantic Ocean During the Past 130,000 Years , 1988, Quaternary Research.