发表论文
[1] Nanyu Zhao, Hong Yan, Fan Luo, Yuanjian Yang, Shan Liu, Pengchao Zhou, Chengcheng Liu, John Dodson. Daily growth rate variation in Tridacna shells as a record of tropical cyclones in the South China Sea: Palaeoecological implications. PALAEOGEOGRAPHY, PALAEOCLIMATOLOGY, PALAEOECOLOGY[J]. 2023, 615: http://dx.doi.org/10.1016/j.palaeo.2023.111444.[2] Menglin Song, John Dodson, Fengyan Lu, Ge Shi, Hong Yan. A continuous paleorecord of vegetation and environmental change from Erxianyan Wetland over the past 60,000years in central China. PALAEOGEOGRAPHY, PALAEOCLIMATOLOGY, PALAEOECOLOGY[J]. 2023, 613: http://dx.doi.org/10.1016/j.palaeo.2023.111399.[3] Shen, Xingyan, Hu, Bangqi, Yan, Hong, Dodson, John, Zhao, Jingtao, Li, Jun, Ding, Xue, Li, Qing, Wang, Xingxing, Xu, Fangjian. Reconstruction of Kuroshio intrusion into the South China Sea over the last 40 kyr. QUATERNARY SCIENCE REVIEWS[J]. 2022, 290: http://dx.doi.org/10.1016/j.quascirev.2022.107622.[4] Liu, Chengcheng, Zhao, Liqiang, Zhao, Nanyu, Yang, Wei, Hao, Jialong, Qu, Xiaoli, Liu, Shan, Dodson, John, Yan, Hong. Novel methods of resolving daily growth patterns in giant clam (Tridacna spp.) shells. ECOLOGICAL INDICATORS[J]. 2022, 134: http://dx.doi.org/10.1016/j.ecolind.2021.108480.[5] Wang, Guozhen, Yan, Hong, Liu, Chengcheng, Han, Tao, Zhou, Pengchao, Zhao, Nanyu, Wen, Hanfeng, Fei, Haobai, Dodson, John. Oxygen isotope temperature calibrations for modern Tridacna shells in western Pacific. CORAL REEFS[J]. 2022, 41(1): 113-130, http://dx.doi.org/10.1007/s00338-021-02208-5.[6] Chen, Yixin, Xu, Jian, Liu, Jun, Li, Tiegang, Xiong, Zhifang, Zhang, Peng, Yan, Hong. Climatic and tectonic constraints on the Plio-Pleistocene evolution of the Indonesian Throughflow intermediate water recorded by benthic 318O from IODP site U1482. QUATERNARY SCIENCE REVIEWS[J]. 2022, 295(11): 107666-, [7] pengchao zhou, Yan Hong, Shi, Ge, Liu, Chengcheng, Luo Fan, Han Tao, Wang Guozhen, Wen, Hanfeng, zhao, nanyu, Dodson, John, Yue Li, Zhou,Weijian. Sea surface temperature seasonality in northern South China Sea during the middle Holocene derived from high resolution Sr/Ca ratios of Tridacna shells. QUATERNARY RESEARCH[J]. 2022, 105: 37-48, [8] Jibao Dong, Hong Yan, Xiulan Zong, Guozhen Wang, Chengcheng Liu, Meng Xing, Jianghu Lan, Gangjian Wei, John Dodson, Zhisheng An. Ultra-high resolution δ18O of land snail shell: A potential tool to reconstruct frequency and intensity of paleoprecipitation events. GEOCHIMICA ET COSMOCHIMICA ACTA[J]. 2022, 327: 21-33, [9] pengchao zhou, Hong Yan, Tao Han, Liu, Chengcheng, Haotian Yang, Fan Luo, Shan Liu, Zhe Wang, Xingyan Shen, Shi, Ge, Dodson, John, weijian zhou. Mid to late Holocene ENSO variability reconstructed by high-resolution Tridacna Sr/Ca records from the northern part of the South China Sea. Palaeogeography, Palaeoclimatology, Palaeoecology[J]. 2022, 601: 111117-, [10] Li, Jun, Zhou, Yinyin, Qin, Yanpin, Wei, Jinkuan, Shigong, Pengyang, Ma, Haitao, Li, Yunqing, Yuan, Xiangcheng, Zhao, Liqiang, Yan, Hong, Zhang, Yuehuan, Yu, Ziniu. Assessment of the juvenile vulnerability of symbiont-bearing giant clams to ocean acidification. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2022, 812: 152265-, http://dx.doi.org/10.1016/j.scitotenv.2021.152265.[11] Zhao, Cheng, Cheng, Jun, Wang, Jingjing, Yan, Hong, Leng, Chengcheng, Zhang, Can, Feng, Xiaoping, Liu, Weiguo, Yang, Xiangdong, Shen, Ji. Paleoclimate Significance of Reconstructed Rainfall Isotope Changes in Asian Monsoon Region. GEOPHYSICAL RESEARCH LETTERS[J]. 2021, 48(12): [12] Dodson, John, Hung, Hsiaochun, Li, Chenzi, Li, Jianyong, Lu, Fengyan, Yan, Hong. The Probable Critical Role of Early Holocene Monsoon Activity in Siting the Origins of Rice Agriculture in China. FRONTIERS IN EARTH SCIENCE[J]. 2021, 9: https://doaj.org/article/2250b42e685943018a13f36fbc8ed717.[13] Shi, Ge, Yan, Hong, Zhang, Wenchao, Dodson, John, Heijnis, Henk, Burrows, Mark. Rapid warming has resulted in more wildfires in northeastern Australia. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2021, 771: http://dx.doi.org/10.1016/j.scitotenv.2020.144888.[14] Liu, Chengcheng, Hong Yan, Wang Guozhen, zhao liqiang, Yue Hu, pengchao zhou, Fan Luo, Haotian Yang, Dodson, John. Species specific Sr/Ca-δ18O relationships for three Tridacnidae species from the northern South China Sea. Chemical Geology[J]. 2021, 584: 120519-, [15] Bei Xu, Gen Li, Chujie Gao, Hong Yan, Ziqian Wang, Yang Li, Siguang Zhu. Asymmetric Effect of El Niño–Southern Oscillation on the Spring Precipitation over South China. ATMOSPHERE[J]. 2021, 12(3): 391-, https://doaj.org/article/ac25816e2dcb47e7b0e9dda4d48515f3.[16] Liu, Shuhong, Yang, Yuanjian, Tang, Danling, Yan, Hong, Ning, Guicai. Association between the Biophysical Environment in Coastal South China Sea and Large-Scale Synoptic Circulation Patterns: The Role of the Northwest Pacific Subtropical High and Typhoons. REMOTE SENSING[J]. 2021, 13(16): http://dx.doi.org/10.3390/rs13163250.[17] Shuhong Liu, Danling Tang, Hong Yan, Guicai Ning, Chengcheng Liu, Yuanjian Yang. Potential Associations between Low-Level Jets and Intraseasonal and Semi-Diurnal Variations in Coastal Chlorophyll-A over the Beibuwan Gulf, South China Sea. REMOTE SENSING[J]. 2021, 13(6): 1194-, https://doaj.org/article/b25a805e81cb4c12b2e19d08e0d3294c.[18] Xue, Gang, Cai, Yanjun, Lu, Yanbin, Ma, Le, Cheng, Xing, Liu, Chengcheng, Yan, Hong, Sun, Youbin, Li, Dong, Wei, Yingying, Huang, Shouyi, He, Mei, Cheng, Hai, Edwards, R Lawrence. Speleothem-Based Hydroclimate Reconstructions During the Penultimate Deglaciation in Northern China. PALEOCEANOGRAPHY AND PALEOCLIMATOLOGY[J]. 2021, 36(4): http://dx.doi.org/10.1029/2020PA004072.[19] Zhao, Cheng, Rohling, Eelco J, Liu, Zhengyu, Yang, Xiaoqiang, Zhang, Enlou, Cheng, Jun, Liu, Zhonghui, An, Zhisheng, Yang, Xiangdong, Feng, Xiaoping, Sun, Xiaoshuang, Zhang, Can, Yan, Tianlong, Long, Hao, Yan, Hong, Yu, Zicheng, Liu, Weiguo, Yu, ShiYong, Shen, Ji. Possible obliquity-forced warmth in southern Asia during the last glacial stage. SCIENCE BULLETIN[J]. 2021, 66(11): 1136-1145, http://dx.doi.org/10.1016/j.scib.2020.11.016.[20] He, Mei, Cai, Yanjun, Zhang, Haiwei, Xue, Gang, Cheng, Xing, Lu, Yanbin, Wang, Guozhen, Qin, Xiuling, Ma, Le, Wei, Yingying, Huang, Shouyi, Chang, Hong, Yan, Hong. The impact and implications of aragonite-to-calcite transformation on speleothem trace element composition. SEDIMENTARY GEOLOGY[J]. 2021, 425: 106010-, http://dx.doi.org/10.1016/j.sedgeo.2021.106010.[21] Dodson, John, Shi, Ge, Lu, Fengyan, Yan, Hong. A 40,000 year record of vegetation, environment and climate change from Chongqing, Central China. PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY[J]. 2021, 573: 110441-, http://dx.doi.org/10.1016/j.palaeo.2021.110441.[22] Shi, Ge, Yan, Hong, Zhang, Wenchao, Dodson, John, Heijnis, Henk. The impacts of volcanic eruptions and climate changes on the development of Hani peatland in northeastern China during the Holocene. JOURNAL OF ASIAN EARTH SCIENCES[J]. 2021, 210: 104691-, http://dx.doi.org/10.1016/j.jseaes.2021.104691.[23] An Zhisheng, zhou weijian, Zhang Zeke, sun youbin, Cai, Yanjun, Li Li, Shi, Zhengguo, Chang Hong, Yan Hong. Asian paleomonsoon variation linked to "tripolar" environmental changes. Geological Society of America[J]. 2021, 3-17, [24] Guo, Fei, Clemens, Steven, Liu, Xingxing, Long, Yili, Li, Dong, Tan, Liangcheng, Liu, Chengcheng, Yan, Hong, Sun, Youbin. Application of XRF Scanning to Different Geological Archives. EARTH AND SPACE SCIENCE[J]. 2021, 8(9): http://dx.doi.org/10.1029/2020EA001589.[25] Zhang, Wenchao, Chang, Maoxiang, Yan, Hong, Dodson, John, Li, Guangxue. Synchronous changes in the East Asian-Australian summer monsoons around 7.2 ka. PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY[J]. 2021, 567: 110303-, http://dx.doi.org/10.1016/j.palaeo.2021.110303.[26] Yan, Tianlong, Zhao, Cheng, Yan, Hong, Shi, Ge, Sun, Xiaoshuang, Zhang, Can, Feng, Xiaoping, Leng, Chengcheng. Elevational differences in Holocene thermal maximum revealed by quantitative temperature reconstructions at similar to 30 degrees N on eastern Tibetan Plateau. 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Coral δ18O-based reconstruction of El Niño-Southern Oscillation from the northern south China sea since 1851 AD. QUATERNARY INTERNATIONAL[J]. 2020, 550: 159-168, http://dx.doi.org/10.1016/j.quaint.2020.04.032.[40] Gao, Chujie, Li, Gen, Chen, Haishan, Yan, Hong. Interdecadal Change in the Effect of Spring Soil Moisture over the Indo-China Peninsula on the Following Summer Precipitation over the Yangtze River Basin. JOURNAL OF CLIMATE[J]. 2020, 33(16): 7063-7082, http://dx.doi.org/10.1175/JCLI-D-19-0754.1.[41] Yan, Hong. Daily growth bands of giant clam shell: A potential paleoweather recorder. SOLID EARTH SCIENCES[J]. 2020, 5(4): 249-253, http://dx.doi.org/10.1016/j.sesci.2020.10.001.[42] Liu, Shuhong, Li, Jiagen, Sun, Liang, Wang, Guihua, Tang, Danling, Huang, Ping, Yan, Hong, Gao, Si, Liu, Chao, Gao, Zhiqiu, Li, Yubin, Yang, Yuanjian. Basin-wide responses of the South China Sea environment to Super Ty-phoon Mangkhut (2018). 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