研究方向
黃土與古氣候、古粉塵活動與堆積、全新世氣候環境變化與人類活動、釋光測年方法學等。
專家類別
研究員
代表論著
1. Peng, J., Wang, X.L., Yin, G.M., Adamiec, G., Du, J.H., Zhao, H., Kang, S.G., Hu, G.Y., Zheng, Y., 2022. Accumulation of aeolian sediments around the Tengger Desert during the late Quaternary and its implications on interpreting chronostratigraphic records from drylands in north China. Quaternary Science Reviews 275, 107288.
2. Shao, Y., Gong, H.Z., Elachi, C., Brisco, B., Liu, J.Q., Xia, X.C., Guo, H.D., Geng, Y.Y., Kang, S.G., Liu, C.A., Yang, Z., Zhang, T.T., 2022. The lake-level changes of Lop Nur over the past 2000 years and its linkage to the decline of the ancient Loulan Kingdom. Journal of Hydrology: Regional Studies 40, 101002.
3. Lan, J.H., Wang, T.L., Dong, J.B., Kang, S.G., Cheng, P., Zhou, K.E., Liu, X.X., Wang, Y.Q., Ma, L., 2021. The influence of ice sheet and solar insolation on Holocene moisture evolution in northern Central Asia. Earth-Science Reviews 217, 103645.
4. Song, Y.G., Li, Y., Cheng, L.Q., Zong, X.L., Kang, S.G., Ghafarpour, A., Li, X.Z., Sun, H.Y., Fu, X.F., Dong, J.B., Mamadjanov, Y., Orozbaev, R., Shukurov, N., Gholami, H., Shukurov, S., Xie, M.P., 2021. Spatio-temporal distribution of Quaternary loess across Central Asia. Palaeogeography, Palaeoclimatology, Palaeoecology 567, 110279.
5. Cheng, L.C., Song, Y.G., Wu, Y.B., Liu, Y.G., Liu, H.F., Chang, H., Zong, X.L., Kang, S.G., 2021. Drivers for asynchronous patterns of dust accumulation in Central and Eastern Asia and in Greenland during the Last Glacial Maximum. Geophysical Research Letters 48, e2020GL091194.
6. Kang, S.G.*, Wang, X.L., Roberts, H.M., Duller, G.A.T., Song, Y.G., Liu, W.G., Zhang, R., Liu, X.X., Lan, J.H., 2020. Increasing effective moisture during the Holocene in the semiarid regions of the Yili Basin, Central Asia: evidence from loess. Quaternary Science Reviews 246, 106553.
7. Kang, S.G.*, Du, J.H., Wang, N., Dong, J.B., Wang, D., Wang, X.L., Qiang, X.K., Song, Y.G., 2020. Early Holocene weakening and mid- to late Holocene strengthening of the East Asian Winter Monsoon. Geology 48, 1043-1047.
8. Liu, Y.M., Liu, X.X., Ma, L., Kang, S.G., Qiang, X.K., Guo, F., Sun, Y.B., 2020. Temporal–spatial variations in aeolian flux on the Chinese Loess Plateau during the last 150 ka. Geological Magazine 157, 757–767.
9. Lan, J.H., Xu, H., Lang, Y.C., Yu, K.K., Zhou, P., Kang, S.G., Zhou, K.E., Wang, X.L., Wang, T.L., Cheng, P., Yan, D.N., Yu, S.Y., Che, P., Ye, Y.D., Tan, L.C., 2020. Dramatic weakening of the East Asian summer monsoon in northern China during the transition from the Medieval Warm Period to the Little Ice Age. Geology 48, 307-312.
10. Liu, C.C., Yan, H., Fei, H.B., Shi, G., Cheng, P., Wen, H.F., Kang, S.G., Li, M., Soon, W., Dodson, J., Zhou, W.J., An, Z.S., 2020. Dynamic of Tridacna spp. population variability in northern SCS over past 4500 years derived from AMS 14C dating. Science of the Total Environment 748, 141359.
11. Lan, J.H., Zhang, J., Cheng, P., Ma, X.L., Ai, L., Chawchai, S., Zhou, K.E., Wang, T.L., Yu, K.K., Sheng, E.G., Kang, S.G., Zang, J.J., Yan, D.N., Wang, Y.Q., Tan, L.C., Xu, H., 2020. Late Holocene hydroclimatic variation in central Asia and its response to mid-latitude Westerlies and solar irradiance. Quaternary Science Reviews 238, 106330.
12. Kang, S.G.*, Wang, X.L., Roberts, H.M., Duller, G.A.T., Cheng, P., Lu, Y.C., An, Z.S., 2018. Late Holocene anti-phase change in the East Asian summer and winter monsoons. Quaternary Science Reviews 188, 28-36.
13. Song, Y.G., Luo, D., Du, J.H., Kang, S.G., Cheng, P., Fu, C.F., Guo, X.H., 2018. Radiometric dating of late Quaternary loess in the northern piedmont of South Tianshan Mountains: Implications for reliable dating. Geological Journal 53, 417-426.
14. Kang, S.G.*, Roberts, H.M., Wang, X.L., An, Z.S., Wang, M., 2015. Mass accumulation rate changes in Chinese loess during MIS 2, and asynchrony with records from Greenland ice cores and North Pacific Ocean sediments during the Last Glacial Maximum. Aeolian Research 19, 251-258.
15. Kang, S.G.*, Wang, X.L., Lu, Y.C., Liu, W.G., Song, Y.G., Wang, N., 2015. A high-resolution quartz OSL chronology of the Talede loess over the past ~ 30 ka and its implications for dust accumulation in the Ili Basin, Central Asia. Quaternary Geochronology 30, 181-187.
16. Albani S., Mahowald N.M., Winckler G., Anderson R.F., Bradtmiller L.I., Delmonte B., Fran?ois R., Goman M., Heavens N.G., Hesse P.P., Hovan S.A., Kang S.G., Kohfeld K.E., Lu H., Maggi V., Mason J.A., Mayewski P.A., McGee D., Miao X., Otto-Bliesner B.L., Perry A.T., Pourmand A., Roberts H.M., Rosenbloom N., Stevens T., Sun J., 2015. Twelve thousand years of dust: the Holocene global dust cycle constrained by natural archives. Climate of the Past 11, 869-903.
17. Kang, S.G.*, Wang, X.L., Lu, Y.C., 2013. Quartz OSL chronology and dust accumulation rate changes since the Last Glacial at Weinan on the southeastern Chinese Loess Plateau. Boreas 42, 815-829.
18. Kang, S.G.*, Wang, X.L., Lu, Y.C., 2012. The estimation of basic experimental parameters in the fine-grained quartz multiple-aliquot regenerative-dose OSL dating of Chinese loess. Radiation Measurements 47, 674-681.
19. Kang, S.G.*, Lu, Y.C., Wang, X.L., 2011. Closely-spaced recuperated OSL dating of the last interglacial palaeosol in the southeastern margin of Chinese Loess Plateau. Quaternary Geochronology 6, 480-490.
20. Wang, X.L., Wintle, A.G., Du, J.H., Kang, S.G., Lu, Y.C., 2011. Recovering laboratory doses using fine-grained quartz from Chinese loess. Radiation Measurements 46, 1073-1081.
21. Kang, S.G., Wang, X.L., Li, X.N., Lu, Y.C,2010. Anomalous fading of the IRSL signal of polymineral grains in Chinese loess. Radiation Measurements 45, 22-28.
22. 楊銘,王松娜,康樹剛,劉海旺,王旭龍,2018. 河南三楊莊剖面光釋光年代學研究. 地球環境學報 9,580-588.
23. 王松娜,王旭龍,康樹剛,2017. 中國東北末次冰期松原黃土的釋光測年及其古氣候意義初探. 地球環境學報 8,397-406.
24. 康樹剛*,王旭龍,王松娜,2016. 中國黃土釋光測年與套用:過去、現在與未來. 地球環境學報 7,442-467.
25. 杜金花,盧演儔,王旭龍,康樹剛,2010. 晉豫間黃河峽谷黃土狀沙丘的光釋光年代學探討. 第四紀研究 30 (5), 946-955.
26. 康樹剛,盧演儔,王旭龍,2009. 黃土細顆粒混合礦物紅外釋光和紅外後藍光釋光信號的環境意義. 核技術 32, 87-91.
27. 康樹剛*,盧演儔,王旭龍,杜金花,2009. 細顆粒石英光釋光測年中預熱溫度選取的簡易方法. 地震地質 31, 544-550.