Arid Land Geography ›› 2024, Vol. 47 ›› Issue (11): 1876-1886.doi: 10.12118/j.issn.1000-6060.2024.003
• Climatology and Hydrology • Previous Articles Next Articles
LIAO Wanyue1(), JIE Dongmei1,2,3,4(), GAO Guizai1,2,3,4, WANG Jiangyong5
Received:
2024-01-03
Revised:
2024-02-20
Online:
2024-11-25
Published:
2024-12-03
Contact:
JIE Dongmei
E-mail:liaowy257@nenu.edu.cn;jiedongmei@nenu.edu.cn
LIAO Wanyue, JIE Dongmei, GAO Guizai, WANG Jiangyong. Climate change and desert evolution of Horqin Sandy Land in the mid-late Holocene[J].Arid Land Geography, 2024, 47(11): 1876-1886.
Tab. 1
AMS14C dating results of Haminmangha profile"
实验室编号 | 深度/cm | 测年材料 | 14C年龄/cal a BP | 日历年龄/cal a BP |
---|---|---|---|---|
NENUR11060 | 65~70 | 全样 | 2790±25 | 2890±40 |
NENUR11061 | 160~165 | 全样 | 3125±25 | 3350±45 |
NENUR11063 | 210~215 | 全样 | 3315±25 | 3525±35 |
NENUR11064 | 275~280 | 全样 | 3705±30 | 4040±50 |
NENUR11065 | 325~330 | 全样 | 3880±30 | 4320±60 |
NENUR11066 | 385~390 | 全样 | 4880±35 | 5610±45 |
[1] | 董光荣. 中国沙漠形成演化气候变化与沙漠化研究[M]. 北京: 海洋出版社, 2002: 212-232. |
[Dong Guangrong. Study on climate change and desertification in desert formation and evolution in China[M]. Beijing: China Ocean Press, 2002: 212-232.] | |
[2] |
徐宇杰, 刘冰, 孙爱军, 等. 古尔班通古特沙漠及周边区域全新世环境演变研究进展[J]. 干旱区地理, 2023, 46(4): 550-562.
doi: 10.12118/j.issn.1000-6060.2022.306 |
[Xu Yujie, Liu Bing, Sun Aijun, et al. Research progress of Holocene environmental evolution in the Gurbantunggut Desert and its surrounding areas[J]. Arid Land Geography, 2023, 46(4): 550-562.]
doi: 10.12118/j.issn.1000-6060.2022.306 |
|
[3] | Liu B, Zhang H, Li S H, et al. Asynchronous palaeosol development during the past 20 ka in response to climate change across the dune fields of the Asian summer monsoonal boundary, northern China[J]. Earth-Science Reviews, 2022, 234: 104232, doi: 10.1016/j.earscirev.2022.104232. |
[4] | 张兰生, 方修琦, 任国玉, 等. 我国北方农牧交错带的环境演变[J]. 地学前缘, 1997(增刊1): 131-140. |
[Zhang Lansheng, Fang Xiuqi, Ren Guoyu, et al. Environmental changes in the north China farming-grazing transitional zone[J]. Earth Science Frontiers, 1997(Suppl. 1): 131-140.] | |
[5] | 裘善文. 试论科尔沁沙地的形成与演变[J]. 地理科学, 1989(4): 317-328, 97. |
[Qiu Shanwen. Study on the formation and evolution of Horqin Sandy Land[J]. Scientia Geographica Sinica, 1989(4): 317-328, 97.]
doi: 10.13249/j.cnki.sgs.1989.04.317 |
|
[6] | 裘善文, 李取生, 夏玉梅. 东北平原西部沙地古土壤与全新世环境变迁[J]. 第四纪研究, 1992(3): 224-232. |
[Qiu Shanwen, Li Qusheng, Xia Yumei. Paleosols of sandy lands and environmental changes in the western plain of northeast China during Holocene[J]. Quaternary Sciences, 1992(3): 224-232.] | |
[7] | 董光荣, 金炯, 李保生, 等. 科尔沁沙地沙漠化的几个问题──以南部地区为例[J]. 中国沙漠, 1994(1): 1-9. |
[Dong Guangrong, Jin Jiong, Li Baosheng, et al. Several problems on the desertification of Horqin Sandy Land, northeast China: A case study on its south area[J]. Journal of Desert Research, 1994(1): 1-9.] | |
[8] | 乌兰图雅, 雷军, 玉山. 科尔沁沙地风沙环境形成与演变研究进展[J]. 干旱区资源与环境, 2002(1): 28-31. |
[Wulan Tuya, Lei Jun, Yu Shan. An advance on studies of formation and environment evolution of Horqin Desert[J]. Journal of Arid Land Resources and Environment, 2002(1): 28-31.] | |
[9] | Yang L H, Wang T, Zhou J, et al. OSL chronology and possible forcing mechanisms of dune evolution in the Horqin dunefield in northern China since the Last Glacial Maximum[J]. Quaternary Research, 2012, 78(2): 185-196. |
[10] | Yang L H, Zhou J, Lai Z P, et al. Lateglacial and Holocene dune evolution in the Horqin dunefield of northeastern China based on luminescence dating[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2010, 296(1): 44-51. |
[11] |
薛文萍, 靳鹤龄, 刘冰, 等. 中国季风边缘区全新世沙地演化及其驱动机制研究进展[J]. 中国沙漠, 2019, 39(3): 163-171.
doi: 10.7522/j.issn.1000-694X.2018.00084 |
[Xue Wenping, Jin Heling, Liu Bing, et al. Advances in the study of sandy land evolution and driving mechanism in the monsoonal marg in area in China during the Holocene epoch[J]. Journal of Desert Research, 2019, 39(3): 163-171.]
doi: 10.7522/j.issn.1000-694X.2018.00084 |
|
[12] | Jin H L, Sun L Y, Sun Z. Millennial-scale evolution of Hunshandake Desert and climate change during the Holocene in Inner Mongolia, northern China[J]. Sciences in Cold and Arid Regions, 2010, 2(6): 505-513. |
[13] | Li S H, Chen Y Y, Li B, et al. OSL dating of sediments from deserts in northern China[J]. Quaternary Geochronology, 2007, 2(1): 23-28. |
[14] |
刘冰, 靳鹤龄, 孙忠. 中晚全新世科尔沁沙地演化与气候变化[J]. 中国沙漠, 2013, 33(1): 77-86.
doi: 10.7522/j.issn.1000-694X.2013.00011 |
[Liu Bing, Jin Heling, Sun Zhong. Desert evolution and climate change in the Horqin Sandy Land in middle and late Holocene[J]. Journal of Desert Research, 2013, 33(1): 77-86.]
doi: 10.7522/j.issn.1000-694X.2013.00011 |
|
[15] | 汪佩芳. 全新世呼伦贝尔沙地环境演变的初步研究[J]. 中国沙漠, 1992(4): 16-22. |
[Wang Peifang. Preliminary study on the environmental changes of Hulun Buir Sandy Land since the Holocene[J]. Journal of Desert Research, 1992(4): 16-22.] | |
[16] | 李取生. 松嫩沙地历史演变的初步研究[J]. 科学通报, 1990(11): 854-856. |
[Li Qusheng. A preliminary study on the evolution of Songnen Sandy Land[J]. Science Bulletin, 1990(11): 854-856.] | |
[17] | 刘子亭, 杨小平, 朱秉启. 巴丹吉林沙漠全新世环境记录的年代校正与古气候重建[J]. 第四纪研究, 2010, 30(5): 925-933. |
[Liu Ziting, Yang Xiaoping, Zhu Bingqi. Reinterpretation of the chronological data of palaeo-environmental records in the Badain Jaran Desert and reconstruction of the Holocene climatic changes[J]. Quaternary Sciences, 2010, 30(5): 925-933.] | |
[18] | Lu H Y, Zhou Y L, Liu W G, et al. Organic stable carbon isotopic composition reveals late Quaternary vegetation changes in the dune fields of northern China[J]. Quaternary Research, 2012, 77(3): 433-444. |
[19] | Guo L C, Xiong S F, Yang P, et al. Holocene environmental changes in the Horqin Desert revealed by OSL dating and δ13C analyses of paleosols[J]. Quaternary International, 2018, 469: 11-19. |
[20] | 张启德, 王玉秀. 科尔沁沙地与大气环境[M]. 北京: 科学出版社, 1994: 14-16. |
[Zhang Qide, Wang Yuxiu. Horqin sandy land and atmospheric environment[M]. Beijing: Science Press, 1994: 14-16.] | |
[21] | Miao R H, Liu Y Z, Wu L Q, et al. Effects of long-term grazing exclusion on plant and soil properties vary with position in dune systems in the Horqin Sandy Land[J]. Catena, 2022, 209: 105860, doi: 10.1016/j.catena.2021.105860. |
[22] | 卓海昕, 鹿化煜, 贾鑫, 等. 全新世中国北方沙地人类活动与气候变化关系的初步研究[J]. 第四纪研究, 2013, 33(2): 303-313. |
[Zhuo Haixin, Lu Huayu, Jia Xin, et al. A preliminary study on human activities in sand fields of northern China and its relationship with the climatic variations in Holocene[J]. Quaternary Sciences, 2013, 33(2): 303-313.] | |
[23] |
Xu D K, Lu H Y, Chu G Q, et al. Synchronous 500-year oscillations of monsoon climate and human activity in northeast Asia[J]. Nature Communications, 2019, 10(1): 4105, doi: 10.1038/s41467-019-12138-0.
pmid: 31511523 |
[24] |
王琳, 武虹, 贾鑫. 西辽河地区史前聚落的时空演变与生业模式和气候历史的相关性研究[J]. 地球科学进展, 2016, 31(11): 1159-1171.
doi: 10.11867/j.issn.1001-8166.2016.11.1159 |
[Wang Lin, Wu Hong, Jia Xin. Study on the temporal-spatial evolution of prehistoric settlements and its correlation with subsistence strategy and climate history in the western Liao River area[J]. Advances in Earth Science, 2016, 31(11): 1159-1171.]
doi: 10.11867/j.issn.1001-8166.2016.11.1159 |
|
[25] |
何瑾, 刘演, 田彦国, 等. 西辽河流域中晚全新世气候环境演变及其对农牧业演替的影响[J]. 地理学报, 2021, 76(7): 1618-1633.
doi: 10.11821/dlxb202107004 |
[He Jin, Liu Yan, Tian Yanguo, et al. Mid-late Holocene climate change and its impact on the agriculture-pastoralism evolution in the west Liaohe Basin[J]. Acta Geographica Sinica, 2021, 76(7): 1618-1633.]
doi: 10.11821/dlxb202107004 |
|
[26] | 朱永刚, 吉平. 内蒙古哈民忙哈遗址房址内大批人骨遗骸死因蠡测——关于史前灾难事件的探索与思考[J]. 考古与文物, 2016(5): 75-82. |
[Zhu Yonggang, Ji Ping. A prediction of the cause of death of a large number of human bones in the Haminmangha Site in Inner Mongolia: Exploration and reflection on the prehistoric disaster events[J]. Archaeology and Cultural Relics, 2016(5): 75-82.] | |
[27] | 高桂在. 东北地区典型植物群落的表土植硅体记录及晚冰期以来古植被定量重建[D]. 长春: 东北师范大学, 2019. |
[Gao Guizai. Phytolith reference for identifying typical plant communities in northeastern China and its implication in paleo-vegetation reconstruction since the Late-glacial Period[D]. Changchun: Northeast Normal University, 2019.] | |
[28] | 刘颖, 介冬梅, 方启, 等. 长山遗址沉积物粒度特征及其环境指示意义[J]. 东北师大学报(自然科学版), 2020, 52(1): 136-143. |
[Liu Ying, Jie Dongmei, Fang Qi, et al. Sediment grain-size characteristics of the Changshan site and its environmental indication meaning[J]. Journal of Normal University (Natural Science Edition), 2020, 52(1): 136-143.] | |
[29] | 张佳华, 孔昭宸, 杜乃秋. 烧失量数值波动对北京地区过去气候和环境的特征响应[J]. 生态学报, 1998(4): 9-13. |
[Zhang Jiahua, Kong Zhaochen, Du Naiqiu. The respondence of loss-on-ignition range to past climate and environment in Beijing[J]. Acta Ecologica Sinica, 1998(4): 9-13.] | |
[30] | Heiri O, Lotter A F, Lemcke G. Loss on ignition as a method for estimating organic and carbonate content in sediments: Reproducibility and comparability of results[J]. Journal of Paleolimnology, 2001, 25(1): 101-110. |
[31] | Blaauw M, Christen J A. Flexible paleoclimate age-depth models using an autoregressive gamma process[J]. Bayesian Analysis, 2011, 6: 457-474. |
[32] | Paterson G A, Heslop D. New methods for unmixing sediment grain size data[J]. Geochemistry, Geophysics, Geosystems, 2015, 16(12): 4494-4506. |
[33] | 王永吉, 吕厚远. 植物硅酸体研究及应用[M]. 北京: 海洋出版社, 1993: 48-118. |
[Wang Yongji, Lü Houyuan. Phytolith study and its application[M]. Beijing: China Ocean Press, 1993: 48-118.] | |
[34] |
Madella M, Alexandre A, Ball T. International code for phytolith nomenclature 1.0[J]. Annals of Botany, 2005, 96(2): 253-260.
doi: 10.1093/aob/mci172 pmid: 15944178 |
[35] | Neumann K, Strömberg C, Ball T, et al. International code for phytolith nomenclature 2.0[J]. Annals of Botany, 2019, 124(2): 189-199. |
[36] | Bremond L, Alexandre A, Wooler M J, et al. Phytolith indices as proxies of grass subfamilies on east Afican tropical mountains[J]. Glob Planet Change, 2008, 61: 209-224. |
[37] | Yang S L, Dong X X, Xiao J L. The East Asian monsoon since the Last Glacial maximum: Evidence from geological records in northern China[J]. Science China Earth Sciences, 2019, 62(8): 1181-1192. |
[38] | Stebich M, Rehfeld K, Schlütz F, et al. Holocene vegetation and climate dynamics of NE China based on the pollen record from Sihailongwan Maar Lake[J]. Quaternary Science Reviews, 2015, 124: 275-289. |
[39] | Xu Q H, Xiao J L, Li Y C, et al. Pollen-based quantitative reconstruction of Holocene climate changes in the Daihai Lake area, Inner Mongolia, China[J]. Journal of Climate, 2010, 23(11): 2856-2868. |
[40] | Li C H, Wu Y H, Hou X H. Holocene vegetation and climate in northeast China revealed from Jingbo Lake sediment[J]. Quaternary International, 2011, 229(1): 67-73. |
[41] | Wen R L, Xiao J L, Fan J W, et al. Pollen evidence for a mid-Holocene East Asian summer monsoon maximum in northern China[J]. Quaternary Science Reviews, 2017, 176: 29-35. |
[42] | Ren X X, Huang X Z, Huang C, et al. Effects of human activities on mountain forest in northern China during the middle Holocene[J]. Quaternary Science Reviews, 2022, 288: 107580, doi: 10.1016/j.quascirev.2022.107580. |
[43] | Jia X, Wang S Z, Sun Y G, et al. Charcoal evidence for environmental change ca. 3.5 ka and its influence on ancient people in the west Liao River Basin of northeastern China[J]. Quaternary Research, 2021, 102: 142-152. |
[44] | 董光荣, 金炯, 高尚玉, 等. 晚更新世以来我国北方沙漠地区的气候变化[J]. 第四纪研究, 1990, 10(3): 213-222. |
[Dong Guangrong, Jin Jiong, Gao Shangyu, et al. Climate changes since the late pleistocene in deserts of northern China[J]. Quaternary Sciences, 1990, 10(3): 213-222.] | |
[45] | Sun J M, Li S H, Han P, et al. Holocene environmental changes in the central Inner Mongolia, based on single-aliquot-quartz optical dating and multi-proxy study of dune sands[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2006, 233(1): 51-62. |
[46] | Gong Z J, Li S H, Sun J M, et al. Environmental changes in Hunshandake (Otindag) Sandy Land revealed by optical dating and multi-proxy study of dune sands[J]. Journal of Asian Earth Sciences, 2013, 76: 30-36. |
[47] |
夏正楷, 邓辉, 武弘麟. 内蒙西拉木伦河流域考古文化演变的地貌背景分析[J]. 地理学报, 2000, 55(3): 329-336.
doi: 10.11821/xb200003009 |
[Xia Zhengkai, Deng Hui, Wu Honglin. Geomorphologic background of the prehistoric cultural evolution in the Xar Moron River Basin, Inner Mongolia[J]. Acta Geographica Sinica, 2000, 55(3): 329-336.]
doi: 10.11821/xb200003009 |
|
[48] | Wang J Y, Gao G Z, Jie D M, et al. Aeolian soils on the eastern side of the Horqin Sandy Land, China: A provenance and sedimentary environment reconstruction perspective[J]. Catena, 2022, 210: 105945, doi: 10.1016/j.catena.2021.105945. |
[49] | 汤卓炜, 朱永刚, 吉平, 等. 哈民忙哈聚落遗址孢粉分析与哈民文化古生态环境初步研究[J]. 边疆考古研究, 2016, 19: 341-346. |
[Tang Zhuowei, Zhu Yonggang, Ji Ping, et al. Spore-pollen analysis of Haminmangha settlement and initial research on palaeoecological environment of Hamin culture[J]. Research of China’s Frontier Archaeology, 2016, 19: 341-346.] | |
[50] | Guo L C, Xiong S F, Ding Z L, et al. Role of the mid-Holocene environmental transition in the decline of late Neolithic cultures in the deserts of NE China[J]. Quaternary Science Reviews, 2018, 190: 98-113. |
[51] | Liu L, Duncan N A, Chen X C, et al. Plant-based subsistence strategies and development of complex societies in Neolithic northeast China: Evidence from grinding stones[J]. Journal of Archaeological Science: Reports, 2016, 7: 247-261. |
[1] | KANG Limin, TENG Xinru, CHE Jiahang, HUAI Baojuan. Spatiotemporal variations of snow cover on the northern slope of Kunlun Mountains [J]. Arid Land Geography, 2024, 47(9): 1462-1471. |
[2] | WANG Nan, LIU Zexuan, ZHENG Jianghua, ZHONG Tao, MENG Chengfeng. Spatiotemporal characteristics and driving forces of glacial lakes in Tianshan Mountains [J]. Arid Land Geography, 2024, 47(9): 1472-1481. |
[3] | CHAO Bao, ZHAO Yuanyuan, WU Haiyan, LI Yuan, SU Ning. Ecosystem services and its response to climate factors in the Mongolian Plateau from 2000 to 2020 [J]. Arid Land Geography, 2024, 47(9): 1577-1586. |
[4] | XIA Tingting, XUE Xuan, WANG Haowei, XU Wenzhe, SHENG Ziyi, WANG Yang. Changes in terrestrial water storage and its drivers on the north slope of Kunlun Mountains [J]. Arid Land Geography, 2024, 47(8): 1292-1303. |
[5] | ZHU Chenggang, CHEN Yaning, ZHANG Mingjun, CHE Yanjun, SUN Meiping, ZHAO Ruifeng, WANG Yang, LIU Yuting. Preliminary report on scientific investigation of water resources on the northern slope of Kunlun Mountains [J]. Arid Land Geography, 2024, 47(7): 1097-1105. |
[6] | ZHANG Jing, MA Long, LIU Tingxi, SUN Bolin, QIAO Zixu. Reconstruction of the minimum temperature over the past 202 years based on tree rings of Picea crassifolia in the Helan Mountains [J]. Arid Land Geography, 2024, 47(6): 909-921. |
[7] | FAN Jing, SHEN Yanbo, CHANG Rui. Impact of climate change on the selection of typical meteorological years in solar energy resource assessment [J]. Arid Land Geography, 2024, 47(6): 922-931. |
[8] | LI Hui, LIU Tiejun, WANG Shaohui, LIU Dongwei. Spatial and temporal variation of water use efficiency and its influencing factors in desert steppe of Inner Mongolia from 2001 to 2021 [J]. Arid Land Geography, 2024, 47(6): 993-1003. |
[9] | XIANG Yanyun, WANG Yi, CHEN Yaning, ZHANG Qifei, ZHANG Yujie. Prediction of future hydrological drought risk in the Yarkant River Basin based on CMIP6 models [J]. Arid Land Geography, 2024, 47(5): 798-809. |
[10] | ZHAO Mingjie, WANG Ninglian, SHI Chenlie, HOU Jingqi. Temporal and spatial variations of lake ice phenology in large lakes of Central Asia from 2000 to 2020 [J]. Arid Land Geography, 2024, 47(4): 561-575. |
[11] | WANG Shuzhi, WEN Deping. Attribution analysis of runoff change in the Datong River Basin, Qinghai-Tibet Plateau [J]. Arid Land Geography, 2024, 47(2): 203-213. |
[12] | CHANG Xuexiang, ZHAO Wenzhi, TIAN Quanyan. Advances in climate change and its impact on the stability of mountain forest ecosystems and hydrological processes in arid regions [J]. Arid Land Geography, 2024, 47(2): 228-236. |
[13] | CHEN Lihua, CHE Yanjun, CAO Yun, ZHANG Mingjun, GU Lailei, WU Jiakang, LYU Weiwei. Responses of glacier and lake to local climate change in the Jingyu Lake Basin, east Kunlun Mountains [J]. Arid Land Geography, 2024, 47(10): 1640-1650. |
[14] | SUN Jinrong, LI Xing, WEI Jingting. Area change characteristics of Wuliangsuhai Lake driven by climate change and human activities in the basin in the past 40 years [J]. Arid Land Geography, 2024, 47(10): 1688-1699. |
[15] | SUI Lu, YAN Zhiming, LI Kaifang, HE Peien, MA Yingjie, ZHANG Rucui. Prediction of habitat quality in the Ili River Valley under the influence of human activities and climate change [J]. Arid Land Geography, 2024, 47(1): 104-116. |
|