巢湖湖相沉积物元素地球化学揭示的全新世以来水文气候演变
李晨晨(1998—),女,回族,安徽寿县人,硕士研究生,主要研究方向为自然地理与环境考古。E-mail: 2021011455@ahnu.edu.cn |
收稿日期: 2023-03-14
修回日期: 2023-11-12
网络出版日期: 2024-09-14
版权
Hydrological and climatic evolution revealed by element geochemistry from lacustrine sediments in Chaohu Lake since Holocene
Received date: 2023-03-14
Revised date: 2023-11-12
Online published: 2024-09-14
Copyright
在建立巢湖西岸古湖盆中心SZK1507 孔湖相岩芯可靠地层年代序列的基础上,对钻孔地球化学元素进行相关性和主成分分析,发现主成分F1反映了流域侵蚀能力的强弱程度,主成分F2对流域化学淋溶强弱程度反应敏感,主成分F3则指示了湖泊水位的高低,并结合Rb/Sr值环境代用指标重建了区域全新世以来高分辨率水文气候演变。结果表明,水文气候演变过程可以分为7个阶段,阶段Ⅰ(约10.8 cal. ka B.P.—9.9 cal. ka B.P.)、阶段Ⅲ~V(约9.3 cal. ka B.P.—4.2 cal. ka B.P.)气候较为湿润,巢湖水位较高;阶段Ⅱ(约9.9 cal. ka B.P.—9.3 cal. ka B.P.)与阶段VI(约4.2 cal. ka B.P.—2.3 cal. ka B.P.)整体上降水减少,湖面收缩,水位降低,气候偏干;阶段VII(约2.3 cal. ka B.P.以来)区域气候波动较大,干湿交替,总体呈现变干的趋势;9.3 cal. ka B.P.、8.2 cal. ka B.P.和4.2 cal. ka B.P.气候突变事件在此沉积记录中也有体现。将巢湖湖相沉积11 cal. ka B.P.以来的Ti元素强度、主成分F1和Rb/Sr值与全新世以来的30°N夏季太阳辐射量、Cariaco盆地Ti含量、ENSO活动指数等进行对比,发现研究区全新世气候突变事件主要受控于北半球夏季太阳辐射、热带辐合带(ITCZ)平均纬度以及厄尔尼诺–南方涛动(ENSO)活动频率等因素。北半球夏季太阳辐射量降低,ITCZ南移,ENSO活动频率增加,夏季风势力减弱,促使了9.3 cal. ka B.P.等干冷事件的发生。研究结果将为理解东亚季风区全新世以来季风和水文气候演变的关系提供可靠依据。
李晨晨 , 吴立 , 马春梅 , 管后春 , 汪勇 , 徐仪红 , 池建宇 , 路曙光 , 杨保东 , 胡晓思 , 罗文菁 . 巢湖湖相沉积物元素地球化学揭示的全新世以来水文气候演变[J]. 地理科学, 2024 , 44(9) : 1653 -1665 . DOI: 10.13249/j.cnki.sgs.20230112
Based on the establishment of the reliable stratigraphic chronology of SZK1507 lacustrine core in the center of the ancient lake basin on the west bank of Chaohu Lake, the correlation and principal component analysis of the geochemical elements of the core showed that the principal component F1 reflected the intensity of erosion capacity in the basin, F2 was sensitive to the strength of the basin’s chemical leaching, and F3 indicated the level change of the lake. Combined with the environmental proxy of Rb/Sr value, the regional hydrological climate evolution with high resolution since Holocene in Chaohu Lake since Holocene was reconstructed with high resolution. The results showed that the process of the environmental evolution in this region could be divided into 7 stages. The climate of Period I (about 10.8 cal. ka B.P.—9.9 cal. ka B.P.) and Period III-Period V (from 9.3 cal. ka B.P. to 4.2 cal. ka B.P.) was relatively humid with the high-water level in Chaohu Lake. During the Period II (from 9.9 cal. ka B.P. to 9.3 cal. ka B.P.) and the Period VI (from 4.2 cal. ka B.P. to 2.3 cal. ka B.P.), the overall climate became dry, resulting in decreased precipitation, the lake shrinkage and the dropped lake level. Unlike the previous stage, although the regional climate fluctuated significantly with alternating dryness and wetness, it tended to dry out as a whole in the Period VII (from 2.3 cal. ka B.P. to the present). Abrupt climate events like 9.3 cal. ka B.P., 8.2 cal. ka B.P. and 4.2 cal. ka B.P. events were also reflected in this sedimentary record. By comparing the Ti element intensity, principal component F1 and Rb/Sr ratios of lacustrine sediments in Chaohu Lake with the 30°N summer solar insolation, Ti content in Cariaco basin, ENSO activity index during the Holocene et al., we found that the abrupt climate events in the study area were mainly controlled by the variation of summer solar insolation in the northern hemisphere, the average latitude of ITCZ and the frequency of ENSO activity. The summer solar insolation in the northern hemisphere reduced, ITCZ moved southward, ENSO activity frequency increased, and the summer monsoon weakened, led to the occurrence of dry and cold events such as 9.3 cal. ka B.P. event. The results will provide a reliable basis for understanding the relationship between the East Asian Monsoon and the evolution of hydrology and climate since Holocene.
表1 SZK1507孔AMS14C测年及校正结果Table 1 AMS14C dates and calibrated results of SZK1507 core |
实验室编号 | 样品编号 | 深度/cm | 测年材料 | 14C年代/a B.P. | 2σ校正年代/cal. a B.P. | 加权平均年代/cal. a B.P. |
XA18799 | G1-3 | 12 | 碳化木片 | 1220±20 | 1067—1184 | 1877 |
XA18801 | G2-13 | 50 | 炭屑 | 2250±25 | 2159—2261 | 2412 |
XA18802 | G2-16 | 56 | 炭屑 | 2500±25 | 2490—2646 | 2531 |
XA18803 | G2-41 | 106 | 总有机质 | 3395±25 | 3580—3696 | 3561 |
XA18855 | G2-43 | 110 | 炭屑 | 4170±30 | 4611—4769 | 3629 |
XA19891 | G6-44 | 452 | 炭屑 | 7845±45 | 8539—8780 | 8113 |
XA19889 | G6-14 | 532 | 总有机质 | 8265±35 | 9128—9333 | 8992 |
XA19893 | G7-21 | 580 | 总有机质 | 8485±35 | 9462—9537 | 9453 |
XA19898 | G8-35 | 708 | 总有机质 | 8875±37 | 9887—10176 | 10496 |
XA19899 | G8-50 | 738 | 炭屑 | 8885±35 | 9889—10182 | 10760 |
表2 巢湖SZK1507孔岩性特征Table 2 Characteristics of SZK1507 core in Chaohu Lake |
层位 | 深度/cm | 层厚/cm | 岩性描述 | 层位 | 深度/cm | 层厚/cm | 岩性描述 | |
1 | [738,588] | 150 | 青灰色淤泥层 | 7 | (420,126] | 294 | 青灰色淤泥层 | |
2 | (588,566] | 22 | 青灰色粉砂层 | 8 | (126,112] | 14 | 灰黄色砂层 | |
3 | (566,562] | 4 | 灰黄色砂层 | 9 | (112,68] | 44 | 青灰色淤泥层 | |
4 | (562,450] | 112 | 青灰色淤泥层 | 10 | (68,44] | 24 | 青灰色淤泥粉砂层 | |
5 | (450,436] | 14 | 青灰色粉砂层 | 11 | (44,18] | 26 | 青灰色淤泥层 | |
6 | (436,420] | 16 | 青灰色黏土层 | 12 | (18,0] | 18 | 灰黄色淤泥层 |
表3 巢湖SZK1507孔沉积物元素强度Table 3 Intensity of the elements of SZK1507 core in Chaohu Lake |
元素 | 均值/kcps | 范围/kcps | 变异系数/% | 元素 | 均值/kcps | 范围/kcps | 变异系数/% | |
Na | 6.01 | 3.59~14.10 | 23.00 | Fe | 423.11 | 107.71~1084.51 | 22.62 | |
Mg | 13.98 | 2.90~21.27 | 23.29 | Ni | 2.23 | 0.78~2.97 | 9.00 | |
Al | 543.82 | 386.62~669.63 | 10.53 | Cu | 2.32 | 0.50~2.70 | 7.60 | |
Si | 1667.96 | 1413.76~1948.91 | 6.59 | Zn | 7.84 | 3.00~44.62 | 48.95 | |
P | 6.32 | 1.08~56.49 | 68.35 | Ga | 3.83 | 2.93~4.25 | 4.05 | |
S | 2.25 | 0.74~5.41 | 41.02 | Rb | 23.79 | 11.70~28.62 | 6.98 | |
Cl | 0.33 | 0.25~0.79 | 18.67 | Sr | 35.70 | 26.61~58.59 | 16.72 | |
K | 155.01 | 114.88~308.04 | 20.17 | Zr | 79.08 | 41.97~126.19 | 18.65 | |
Ca | 36.97 | 13.59~63.75 | 21.63 | Rh | 193.41 | 166.16~211.54 | 2.69 | |
Ti | 12.48 | 2.33~15.07 | 16.53 | Ba | 30.12 | 25.29~46.41 | 10.88 | |
Mn | 6.33 | 1.05~15.29 | 38.32 | Cr | 0.95 | 1.05~15.29 | 38.32 |
表4 巢湖SZK1507孔沉积物元素成分矩阵Table 4 Composition matrix of the elements of SZK1507 core in Chaohu Lake |
元素 | F1 | F2 | F3 | 元素 | F1 | F2 | F3 | |
注:黑体含义为该元素在F1、F2、F3中的高因子载荷;F1、F2、F3的方差百分比分别为42.037%、24.853%、17.607%,累计方差分别为42.037%、66.891%、84.497%。 | ||||||||
Rh | 0.823 | –0.302 | –0.183 | Fe | –0.847 | 0.225 | 0.005 | |
Ba | 0.802 | 0.481 | –0.158 | K | 0.425 | 0.825 | –0.336 | |
Na | 0.740 | 0.473 | 0.224 | Sr | 0.613 | 0.634 | 0.392 | |
Mg | –0.737 | 0.491 | 0.299 | Si | 0.668 | –0.676 | –0.194 | |
Al | –0.730 | 0.604 | –0.039 | Rb | –0.071 | 0.434 | –0.797 | |
Ti | –0.887 | –0.315 | 0.103 | Zr | 0.262 | –0.473 | 0.740 | |
Ni | –0.578 | –0.270 | –0.514 | S | –0.163 | 0.391 | 0.709 |
1 |
王苏民, 李健仁 湖泊沉积——研究历史气候的有效手段: 以青海湖、岱海为例 科学通报 1991 36 1 54 56
Wang Sumin, Li Jianren Lake deposition—An effective method for studying historical climate—Taking Qinghai Lake and Daihai Lake as examples Chinese Science Bulletin 1991 36 1 54 56
|
2 |
Kelts K, 丁仲礼 湖沼沉积——过去变化的信息库 第四纪研究 1992 12 2 138 143
Kelts K, Ding Zhongli Lacustrine deposits—Information database of past changes Quaternary Sciences 1992 12 2 138 143
|
3 |
沈吉 湖泊沉积研究的历史进展与展望 湖泊科学 2009 21 3 307 313
Shen Ji Progress and prospect of palaeolimnology research in China Journal of Lake Sciences 2009 21 3 307 313
|
4 |
张卫国, 戴雪荣, 张福瑞, 等 近7000年巢湖沉积物环境磁学特征及其指示的亚洲季风变化 第四纪研究 2007 27 6 1053 1062
Zhang Weiguo, Dai Xuerong, Zhang Furui et al Magnetic properties of sediments from the Chaohu Lake for the last 7000 years and their implications for the evolution of Asian monsoon Quaternary Sciences 2007 27 6 1053 1062
|
5 |
An Z S The history and variability of the East Asian paleomonsoon climate Quaternary Science Reviews 2000 19 7 171 187
|
6 |
Wang P X, Clemens S, Beaufort L et al Evolution and variability of the Asian monsoon system: State of the art and outstanding issues Quaternary Science Reviews 2005 24 5-6 595 629
|
7 |
王心源, 张广胜, 张恩楼, 等 巢湖湖泊沉积记录的早–中全新世环境演化研究 科学通报 2008 53 S1 132 138
Wang Xinyuan, Zhang Guangsheng, Zhang Enlou et al Study on environmental evolution of sedimentary records in Chaohu Lake from early to middle Holocene Chinese Science Bulletin 2008 53 S1 132 138
|
8 |
胡飞, 杨玉璋, 张居中, 等 安徽巢湖湖相地层记录的早全新世气候事件 地层学杂志 2015 39 1 50 57
Hu Fei, Yang Yuzhang, Zhang Juzhong et al Early Holocene climatic events recorded in lacustrine sediments in the Chaohu region of Anhui Province Journal of Stratigraphy 2015 39 1 50 57
|
9 |
罗武宏, 张居中, 杨玉璋, 等 安徽巢湖更新世末–全新世中期环境演变的湖泊沉积植硅体记录 微体古生物学报 2015 32 1 63 74
Luo Wuhong, Zhang Juzhong, Yang Yuzhang et al Late Pleistocene–middle Holocene environmental evolution: Phytolith record from the lacustrine deposits of the Chaohu Lake, Anhui Acta Micropalaeontologica Sinica 2015 32 1 63 74
|
10 |
Nesbitt H W, Young G M Early Proterozoic climates and plate motions inferred from major element chemistry of lutites Nature 1982 299 5885 715 717
|
11 |
Nesbitt H W, Wilson R E Recent chemical weathering of basalts American Journal of Science 1992 292 10 740 777
|
12 |
沈吉, 薛滨, 吴敬禄, 等. 湖泊沉积与环境演化[M]. 北京: 科学出版社, 2010
Shen Ji, Xue Bin, Wu Jinglu et al. Lacustrine sedimentation and environmental evolution. Beijing: Science Press, 2010.
|
13 |
金章东, 王苏民, 沈吉, 等 内陆湖泊流域的化学风化及气候变化——以内蒙古岱海为例 地质论评 2001 47 1 42 46
Jin Zhangdong, Wang Sumin, Shen Ji et al Chemical weathering and paleoclimatic change in watershed recorded in lake sediments—A case study of the Daihai Lake, Inner Mongolia Geological Review 2001 47 1 42 46
|
14 |
郭超, 蒙红卫, 马玉贞, 等 藏南羊卓雍错沉积物元素地球化学记录的过去2000年环境变化 地理学报 2019 74 7 1345 1362
Guo Chao, Meng Hongwei, Ma Yuzhen et al Environmental variations recorded by chemical element in the sediments of Lake Yamzhog Yumco on the southern Tibetan Plateau over the past 2000 years Acta Geographica Sinica 2019 74 7 1345 1362
|
15 |
胡砚泊, Wünnemann B, 张永战, 等 14 ka以来苦海沉积物地球化学记录及其古环境意义 沉积学报 2019 37 1 104 114
Hu Yanbo, Wünnemann Bernd, Zhang Yongzhan et al Geochemistry record and their environmental implications during the past 14 ka in Kuhai Lake, NE Tibetan Plateau Acta Sedimentologica Sinica 2019 37 1 104 114
|
16 |
崔巧玉, 赵艳 大兴安岭阿尔山天池湖泊沉积物记录的全新世气候突变 第四纪研究 2019 39 6 1346 1356
Cui Qiaoyu, Zhao Yan Climatic abrupt events implied by lacustrine sediments of Arxan Crater Lake, in the central Great Khingan Mountains, NE China during Holocene Quaternary Sciences 2019 39 6 1346 1356
|
17 |
Liu W, Abuduwaili J, Long M A Geochemistry of major and trace elements and their environmental significances in core sediments from Bosten Lake, arid northwestern China Journal of Limnology 2019 78 2 201 209
|
18 |
李枫, 吴立, 朱诚, 等. 江汉平原12.76 cal. ka B. P. 以来环境干湿变化的高分辨率研究[J]. 地理科学, 2012, 32(7): 878-884
Li Feng, Wu Li, Zhu Cheng et al. A high-resolution study of moisture evolution in the Jianghan Plain since 12.76 cal. ka B. P. Scientia Geographica Sinica, 2012, 32(7): 878-884.
|
19 |
Chen H, Zhu L P, Wang J B et al Paleoclimate changes over the past 13 000 years recorded by Chibuzhang Co sediments in the source region of the Yangtze River, China Palaeogeography, Palaeoclimatology, Palaeoecology 2021 573 110433
|
20 |
周维鑫, 温小浩, 李保生, 等 萨拉乌苏河流域干沟子剖面全新世湖相沉积的地球化学元素特征及其反映的物源变化 中国沙漠 2022 42 1 114 122
Zhou Weixin, Wen Xiaohao, Li Baosheng et al Geochemical characteristics of Holocene lacustrine sediments in Gangouzi section and its sedimentary sources in the Salawusu River Valley Journal of Desert Research 2022 42 1 114 122
|
21 |
He H F, Wei H C, Wang Y et al Geochemical and statistical analyses of trace elements in lake sediments from Qaidam Basin, Qinghai-Tibet Plateau: Distribution characteristics and source apportionment International Journal of Environmental Research and Public Health 2022 19 4 2341
|
22 |
王艳平, 徐伟伟, 韩超, 等 巢湖沉积物氮磷分布及污染评价 环境科学 2021 42 2 699 711
Wang Yanping, Xu Weiwei, Han Chao et al Distribution of nitrogen and phosphorus in Lake Chaohu sediments and pollution evaluation Environmental Science 2021 42 2 699 711
|
23 |
王育来, 刘馨, 高越, 等 巢湖藻华暴发对沉积物典型重金属空间分布格局的影响 环境科学学报 2022 42 12 186 195
Wang Yulai, Liu Xin, Gao Yue et al Impacts of algae bloom on spatial distribution variations of the typical heavy metals from sediments in Chaohu Lake Acta Scientiae Circumstantiae 2022 42 12 186 195
|
24 |
师育新. 安徽巢湖杭埠河流域环境变化的湖泊沉积地球化学记录[D]. 广州: 中国科学院研究生院(广州地球化学研究所), 2006
Shi Yuxin. Sedimentary and geochemical records of climate and environmental change for the Chaohu-Hangbu River catchment in Anhui Province. Guangzhou: The Chinese Academy of Sciences (Guangzhou Institute of Geochemistry), 2006.
|
25 |
王心源, 吴立, 张广胜, 等 安徽巢湖全新世湖泊沉积物磁化率与粒度组合的变化特征及其环境意义 地理科学 2008 28 4 548 553
Wang Xinyuan, Wu Li, Zhang Guangsheng et al Characteristics and environmental significance of magnetic susceptibility and grain size of lake sediments since Holocene in Chaohu Lake, Anhui Province Scientia Geographica Sinica 2008 28 4 548 553
|
26 |
徐蕾, 李长安, 陈旭, 等 巢湖东部沉积硅藻组合记录的水环境变化 环境科学研究 2014 27 8 842 847
Xu Lei, Li Changan, Chen Xu et al Aquatic environment changes inferred from the sedimentary diatom record in the eastern part of Chaohu Lake Research of Environmental Sciences 2014 27 8 842 847
|
27 |
周慧, 吴立, 马春梅, 等 巢湖杭埠河流域湖相沉积物多指标揭示的全新世以来环境演变 湖泊科学 2020 32 6 1869 1881
Zhou Hui, Wu Li, Ma Chunmei et al Holocene environmental evolution recorded by multi-proxies from lacustrine sediments of the Hangbu River Valley, Lake Chaohu Basin, East China Journal of Lake Sciences 2020 32 6 1869 1881
|
28 |
屠清英, 顾丁锡. 巢湖——富营养化研究[M]. 北京: 中国科学技术大学出版社, 1990
Tu Qingying, Gu Dingxi. Chaohu Lake—Eutrophication study. Beijing: Press of University of Science and Technology of China, 1990.
|
29 |
谢平. 翻阅巢湖的历史——蓝藻、富营养化及地质演化[M]. 北京: 科学出版社, 2009
Xie Ping. Reading the history of Chaohu Lake—Blue-green algae, eutrophication and geological evolution. Beijing: Science Press, 2009.
|
30 |
张崇岱, 潘宝林 巢湖湖盆及其变迁研究 安徽师大学报(自然科学版) 1990 13 1 48 56
Zhang Chongdai, Pan Baolin The study of basin of Chao Lake and its changes Journal of Anhui Normal University (Natural Science) 1990 13 1 48 56
|
31 |
杨达源, 李徐生, 张振克 长江中下游湖泊的成因与演化 湖泊科学 2000 12 3 226 232
Yang Dayuan, Li Xusheng, Zhang Zhenke Lake evolution along Middle-lower reaches of the Yangtze River Journal of Lake Sciences 2000 12 3 226 232
|
32 |
吴跃东, 向钒, 陈波. 安徽省巢湖流域环境地质调查报告[R]. 合肥: 安徽省地质调查院, 2008
Wu Yuedong, Xiang Fan, Chen Bo. Environmental geological survey report of Chaohu Lake Basin in Anhui Province. Hefei: Geological Surveying of Anhui Province, 2008.
|
33 |
雷国良, 张虎才, 常凤琴, 等 湖泊沉积物XRF元素连续扫描与常规ICP-OES分析结果的对比及校正——以兹格塘错为例 湖泊科学 2011 23 2 287 294
Lei Guoliang, Zhang Hucai, Chang Fengqin et al Comparison and correction of element measurements in lacustrine sediments using X-ray fluorescence core-scanning with ICP-OES method: A case study of Zigetang Co Journal of Lake Sciences 2011 23 2 287 294
|
34 |
韩淑媞, 李志中 论新疆巴里坤湖沉积地球化学指标的累积规律 海洋与湖沼 1994 25 4 429 437
Han Shudi, Li Zhizhong The accumulating regulation of deposit geochemistry of Balikun Lake, Xinjiang Oceanologia et Limnologia Sinica 1994 25 4 429 437
|
35 |
成艾颖, 余俊清, 张丽莎, 等 托素湖岩芯 XRF 元素扫描分析及多元统计方法的应用 盐湖研究 2011 19 1 20 25
Cheng Aiying, Yu Junqing, Zhang Lisha et al Analysis of Toson Lake XRF core scanning and application of multivaviate statistical methods Journal of Salt Lake Research 2011 19 1 20 25
|
36 |
马雪洋, 陈豆, 阳亚平, 等 哈拉湖岩芯XRF扫描元素统计分析及其环境意义 盐湖研究 2014 22 4 1 10
Ma Xueyang, Chen Dou, Yang Yaping et al Statistical analysis of XRF scanned elements and their environmental significance in Hala Lake, Qinghai, China Journal of Salt Lake Research 2014 22 4 1 10
|
37 |
陈敬安, 万国江, 陈振楼, 等 洱海沉积物化学元素与古气候演化 地球化学 1999 28 6 562 570
Chen Jing'an, Wan Guojiang, Chen Zhenlou et al Chemical elements in sediments of Lake Erhai and palaeoclimate evolution Geochimica 1999 28 6 562 570
|
38 |
翟秋敏, 郭志永. 坝上高原安固里淖全新世湖泊沉积与环境[M]. 北京: 科学出版社, 2011
Zhai Qiumin, Guo Zhiyong. Lacustrine sediments and environment in Angulinao, Bashang Plateau in Holocene. Beijing: Science Press, 2011.
|
39 |
孟庆浩. 新疆艾比湖晚全新世沉积环境演变及气候变化机制浅析[D]. 上海: 华东师范大学, 2017
Meng Qinghao. The sedimentary paleoenvironmental of Ebinur Lake, Xinjiang and its driving mechanism of climate change. Shanghai: East China Normal University, 2017.
|
40 |
Vinther B M, Buchardt S L, Clausen H B et al Holocene thinning of the Greenland ice sheet Nature 2009 461 7262 385 388
|
41 |
Dykoski C A, Edwards R L, Cheng H et al A high-resolution, absolute-dated Holocene and deglacial Asian monsoon record from Dongge Cave, China Earth and Planetary Science Letters 2005 233 1-2 71 86
|
42 |
Zhang W C, Yan H, Dodson J et al The 9.2 ka event in Asian summer monsoon area: The strongest millennial scale collapse of the monsoon during the Holocene Climate Dynamics 2017 50 7 2767 2782
|
43 |
Jin Z D, Wu J L, Cao J J et al Holocene chemical weathering and climatic oscillations in north China: Evidence from lacustrine sediments Boreas 2004 33 3 260 266
|
44 |
Wu J L, Shen J, Wang S M et al Characteristics of an early Holocene climate and environment from lake sediments in Ebinur region, NW China Science in China Series D: Earth Sciences 2005 48 2 258 265
|
45 |
Mischel S A, Scholz D, Spötl C et al Holocene climate variability in Central Germany and a potential link to the polar North Atlantic: A replicated record from three coeval speleothems The Holocene 2017 27 4 509 525
|
46 |
羊向东, 朱育新, 蒋雪中, 等 沔阳地区一万多年来孢粉记录的环境演变 湖泊科学 1998 10 2 23 29
Yang Xiangdong, Zhu Yuxin, Jiang Xuezhong et al Environmental changes from spore-pollen record of Mianyang region over the past 10000 Years Journal of Lake Sciences 1998 10 2 23 29
|
47 |
邹春辉, 赵强, 毛龙江 鲁北平原东部巨淀湖岩心沉积物记录的全新世环境演变 古地理学报 2020 22 6 1209 1220
Zou Chunhui, Zhao Qiang, Mao Longjiang Holocene environmental evolution recorded by core sediments of Judian Lake in the east of Lubei Plain, Shandong Province Journal of Palaeogeography (Chinese Edition) 2020 22 6 1209 1220
|
48 |
陆福志, 朱诚, 马春梅, 等 太湖西部地区8.2 ka BP以来的高分辨率孢粉记录 地层学杂志 2015 39 1 116 123
Lu Fuzhi, Zhu Cheng, Ma Chunmei et al High-resolution palynological record in the weastern region of Taihu Lake since 8.2 ka B.P Journal of Stratigraphy 2015 39 1 116 123
|
49 |
张广胜. 湖泊沉积记录的9870 cal. a B. P. 以来巢湖流域环境演变研究[D]. 芜湖: 安徽师范大学, 2007
Zhang Guangsheng. Lake sediments records of environment changes in the Chaohu Lake Basin since 9870 cal. a B. P. Wuhu: Anhui Normal University, 2007.
|
50 |
Wünnemann B, Yan D D, Andersen N et al A 14 ka high-resolution δ 18O lake record reveals a paradigm shift for the process-based reconstruction of hydroclimate on the northern Tibetan Plateau Quaternary Science Reviews 2018 200 65 84
|
51 |
郭超, 马玉贞, 李金凤 中国及周边地区中晚全新世湿度演化及其可能机制 第四纪研究 2022 42 4 1058 1077
Guo Chao, Ma Yuzhen, Li Jinfeng Mid-to late Holocene moisture evolution in China and surroundings: Spatial patterns and possible mechanisms Quaternary Sciences 2022 42 4 1058 1077
|
52 |
Wang Y J, Cheng H, Edwards R L et al Millennial- and orbital-scale changes in the East Asian Monsoon over the past 224,000 years Nature 2008 451 7182 1090 1093
|
53 |
Berger A, Loutre M F Insolation values for the climate of the last 10 million years Quaternary Science Reviews 1991 10 4 297 317
|
54 |
Wu L, Li L Y, Zhou H et al Holocene fire in relation to environmental change and human activity reconstructed from sedimentary charcoal of Chaohu Lake, East China Quaternary International 2019 507 62 73
|
55 |
Haug G H, Hughen K A, Sigman D M et al Southward migration of the intertropical convergence zone through the Holocene Science 2001 293 5533 1304 1308
|
56 |
Moy C M, Seltzer G O, Rodbell D T et al Variability of El Niño/Southern Oscillation activity at millennial timescales during the Holocene epoch Nature 2002 420 6912 162 165
|
57 |
Wang Y J, Cheng H, Lawrence Edwards R et al The Holocene Asian monsoon: Links to solar changes and North Atlantic climate Science 2005 308 5723 854 857
|
58 |
汪品先 全球季风的地质演变 科学通报 2009 54 5 535 556
Wang Pinxian Global monsoon in a geological perspecctive Chinese Science Bulletin 2009 54 5 535 556
|
59 |
Liu Z, Otto-Bliesner B L, He F et al Transient simulation of Last Deglaciation with a new mechanism for Bølling-Allerød Warming Science 2009 325 5938 310 314
|
60 |
Li J Y, Dodson J, Yan H et al Quantitative Holocene climatic reconstructions for the lower Yangtze region of China Climate Dynamics 2018 50 3 1101 1113
|
61 |
李友谟, 吴铎, 袁子杰, 等 青藏高原腹地班德湖记录的全新世夏季风变化与流域环境响应 第四纪研究 2022 42 5 1328 1348
Li Youmo, Wu duo, Yuan Zijie et al Holocene summer monsoon variation and environmental response in the drainage basin of Lake Bande in the inner Tibetan Plateau Quaternary Sciences 2022 42 5 1328 1348
|
62 |
王馨, 冉敏, 杨运鹏, 等 泥炭记录的帕米尔高原晚全新世温度变化研究 地理科学进展 2022 41 8 1467 1477
Wang Xin, Ran Min, Yang Yunpeng et al Peat δ 13Cα-cellulose-based late Holocene temperature reconstruction in Pamir, China Progress in Geography 2022 41 8 1467 1477
|
63 |
Clement A C, Seager R, Cane M A Suppression of El Niño during the mid-Holocene by changes in the Earth’s orbit Paleoceanography 2000 15 6 731 737
|
64 |
Sachs J P, Blois J L, McGee T et al Southward shift of the Pacific ITCZ during the Holocene Paleoceanography and Paleoclimatology 2018 33 12 1383 1395
|
65 |
Lu F Y, Dodson J, Zhang W C et al Mid to late Holocene environmental change and human impact: A view from Central China Quaternary Science Reviews 2019 223 105953
|
66 |
Ishiwa T, Yokoyama Y, Reuning L et al Australian Summer Monsoon variability in the past 14 000 years revealed by IODP Expedition 356 sediments Progress in Earth and Planetary Science 2019 6 1 1 10
|
67 |
Thatcher D L, Wanamaker A D, Denniston R F et al Hydroclimate variability from western Iberia (Portugal) during the Holocene: Insights from a composite stalagmite isotope record The Holocene 2020 30 7 966 981
|
68 |
Yancheva G, Nowaczyk N R, Mingram J et al Influence of the intertropical convergence zone on the East Asian monsoon Nature 2007 445 7123 74 77
|
69 |
Li X M, Wang M D, Zhang Y Z et al Holocene climatic and environmental change on the western Tibetan Plateau revealed by glycerol dialkyl glycerol tetraethers and leaf wax deuterium-to-hydrogen ratios at Aweng Co Quaternary Research 2017 87 3 455 467
|
70 |
Chawchai S, Tan L, Löwemark L et al Hydroclimate variability of central Indo-Pacific region during the Holocene Quaternary Science Reviews 2021 253 106779
|
71 |
Rasmusson E M El Niño and variations in climate: Large-scale interactions between the ocean and the atmosphere over the tropical Pacific can dramatically affect weather patterns around the world American Scientist 1985 73 2 168 177
|
72 |
Ropelewski C F, Halpert M S Global and regional scale precipitation patterns associated with the El Niño/Southern Oscillation Monthly Weather Review 1987 115 8 1606 1626
|
73 |
钱芳, 常凤鸣, 孙晗杰, 等 末次冰消期冲绳海槽中部表层和温跃层海水温度演化的脱耦现象 地球科学 2022 47 7 2602 2615
Qian Fang, Chang Fengming, Sun Hanjie et al Decoupled evolution of surface and thermocline water temperatures in middle Okinawa trough during Last Deglaciation Earth Science 2022 47 7 2602 2615
|
74 |
刘伯奇, 何金海 亚洲夏季风动力学研究综述 热带气象学报 2015 31 6 869 880
Liu Boqi, He Jinhai Reviews on the dynamics of Asian summer monsoon Journal of Tropical Meteorology 2015 31 6 869 880
|
75 |
Higginson M J, Altabet M A, Wincze L et al A solar (irradiance) trigger for millennial-scale abrupt changes in the southwest monsoon? Paleoceanography 2004 19 3 PA3015.
|
76 |
Gagan M K, Ayliffe L K, Hopley D et al Temperature and surface-ocean water balance of the mid-Holocene tropical western Pacific Science 1998 279 5353 1014 1018
|
77 |
Gagan M K, Hendy E J, Haberle S G et al Post-glacial evolution of the Indo-Pacific warm pool and El Niño-Southern Oscillation Quaternary International 2004 118 127 143
|
78 |
Rodbell D T, Seltzer G O, Anderson D M et al An ~15, 000-year record of El Niño-driven alluviation in southwestern Ecuador Science 1999 283 5401 516 520
|
79 |
Li N N, Sharifi A, Chambers F M et al Linking Holocene East Asian Monsoon variability to solar forcing and ENSO activities: Multi-proxy evidence from peatland in Northeastern China Holocene 2021 31 6 966 982
|
80 |
盛美. 末次冰消期以来广东湛江湖光岩玛珥湖沉积的环境磁学和地磁场长期变化研究[D]. 北京: 中国地质科学院, 2019
Sheng Mei. Records of environmental magnetism and paleomagnetic secular variation since the Last Deglaciation from Huguangyan Maar Lake sediments in Zhanjiang city, Guangdong Province. Beijing: Chinese Academy of Geological Sciences, 2019.
|
81 |
Lee E, Yi S, Lim J et al Multi-proxy indications of depositional evolution and paleo-natural disasters (flooding and fire) in the southern part of the Korean Peninsula during the Holocene Quaternary Science Reviews 2021 263 107007
|
82 |
Zhang H W, Cheng H, Sinha A et al Collapse of the Liangzhu and other Neolithic cultures in the lower Yangtze region in response to climate change Science Advances 2021 7 48
|
/
〈 |
|
〉 |