2023 Vol. 42, No. 12
Article Contents

LIU Kai, SONG Yunhong, YANG Fengchao, DAI Huimin, XU Jiang, HAN Xiaomeng, LIANG Shuai. 2023. Palynological assemblages of Holocene typical black soil profile from northern Songnen Plain and its restricts to environmental evolution. Geological Bulletin of China, 42(12): 2121-2131. doi: 10.12097/j.issn.1671-2552.2023.12.008
Citation: LIU Kai, SONG Yunhong, YANG Fengchao, DAI Huimin, XU Jiang, HAN Xiaomeng, LIANG Shuai. 2023. Palynological assemblages of Holocene typical black soil profile from northern Songnen Plain and its restricts to environmental evolution. Geological Bulletin of China, 42(12): 2121-2131. doi: 10.12097/j.issn.1671-2552.2023.12.008

Palynological assemblages of Holocene typical black soil profile from northern Songnen Plain and its restricts to environmental evolution

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  • Paleoclimate and paleoenvironmental evolution is one of the most critical issues in the study of the formation and evolution of black soil.Reconstruction of paleo-vegetation, paleo-climate and paleo-environment, and prediction of the evolution of the climate and environment in the black soil area have become hot spots in black soil research.Fifteen sporopollen samples were collected from a typical black soil profile in the Keshan County of the northern Songnen Plain for pollen research, and total organic carbon in some soil samples from the same stratum was AMS14C dating.Systematic analysis, identification, and research have shown that three sporo-pollen assemblages from bottom to top were developed in the black soil profile of Keshan County.The lower pollen assemblage is represented by Planted Poaceae-Echinate Asteraceae-Tamarix-Polypodiaceae, the middle pollen assemblage is represented by Tamarix-Chenopodium-Polypodiaceae-Echinate Asteraceae, and the upper pollen assemblage is represented by Pinus-Chenopodium.Comprehensive Quaternary geology and geomorphology, pollen, AMS14C, and element geochemistry analysis all suggest that the typical black soil was mainly formed in the Great Warm Period since the 7500 a B.P.of the Middle Holocene.Which formed in the warm and semi-humid climate of the Songnen Plain, the vegetation is mainly grassland vegetation with herbaceous shrubs.Neotectonic movement is the main internal driving force that controls the evolution of the natural environment in the typical black soil area.The Late Pleistocene yellow clay is the parent material of the typical black soil in the Keshan black soil area, and the development process of the black soil is the process of of soil blackening.

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  • [1] Jiang Y F, Guo X, Sun K, et al. Spatial variability of farmland soil C/N ratio of Jiangxi Province[J]. Environ. Sci., 2017, 38: 3840-3850.

    Google Scholar

    [2] Powlson D S, Gregory P J, Whalley W R, et al. Soil management in relation to sustainable agriculture and ecosystem services[J]. Food Policy, 2011, 36: S72-S87. doi: 10.1016/j.foodpol.2010.11.025

    CrossRef Google Scholar

    [3] Song Y H, Dai H M, Yang F C, et al. A preliminary study on soil degradation and nutrient imbalance of typical black soil in northeast China[C]//Zhang H, Cheng C B. Proceedings of the 6th Academic Conference of Geology Resource Management and Sustainable Development, 2018, 12: 328-335.

    Google Scholar

    [4] Song Y H, Dai H M, Yang F C, et al. Temporal and spatial change of soil organic matter and pH in cultivated land of the Songliao Plain in Northeast China during the past 35 Years[J]. Acta Geologica Sinica(English Edition), 2019, 93(supp. 1): 142-143.

    Google Scholar

    [5] Wang Y, Amundson R, Trumbore S. Radiocarbon dating of soil organic matter[J]. Quaternary Research, 1996, 45(3): 282-288. doi: 10.1006/qres.1996.0029

    CrossRef Google Scholar

    [6] 陈铁梅. 14C测年与用于研究四万年来的全球变化[J]. 第四纪研究, 1990, (2): 181-186. doi: 10.3321/j.issn:1001-7410.1990.02.009

    CrossRef Google Scholar

    [7] 初本君, 高振操, 杨世生, 等. 黑龙江省第四纪地质与环境[M]. 北京: 海洋出版社, 1989: 17-33.

    Google Scholar

    [8] 崔静怡, 郭利成, 陈雨露, 等. 松嫩平原全新世黑土14C年龄-深度关系空间格局[J]. 第四纪研究, 2021, 41(5): 1332-1341.

    Google Scholar

    [9] 崔美玲, 罗运利, 孙湘君. 吉林哈尼湖钻孔5000年以来的古植被气候变化指示[J]. 海洋地质与第四纪地质, 2006, 26(5): 117-122.

    Google Scholar

    [10] 崔明, 张旭东, 蔡强国, 等. 东北典型黑土区气候、地貌演化与黑土发育关系[J]. 地理研究, 2008, 27(3): 527-535. doi: 10.3321/j.issn:1000-0585.2008.03.006

    CrossRef Google Scholar

    [11] 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[J]. 第四纪研究, 2019, 39(6): 1346-1356.

    Google Scholar

    [12] 冯丽杰, 郭伟静, 陈树良, 等. 松辽盆地南缘第四纪环境特征——以四平—双辽地区为例[J]. 地质与资源, 2007, 16(2): 81-85.

    Google Scholar

    [13] 高瑞琪, 赵传本, 乔秀云, 等. 松辽盆地白垩纪石油地层孢粉学[M]. 北京: 地质出版社, 1999: 20-100.

    Google Scholar

    [14] 韩晓增, 李娜. 中国东北黑土地研究进展与展望[J]. 地理科学, 2018, 38(7): 1032-1041.

    Google Scholar

    [15] 贾树海, 张佳楠, 张玉玲, 等. 东北黑土区旱田改稻田后土壤有机碳、全氮的变化特征[J]. 中国农业科学, 2017, 50(7): 1252-1262.

    Google Scholar

    [16] 裘善文, 孙广友, 夏玉梅, 等. 中国东北平原第四纪自然环境形成与演化[M]. 哈尔滨: 哈尔滨地图出版社, 1990: 60-67.

    Google Scholar

    [17] 任国玉. 中国东北全新世干湿状况的演变[J]. 地质论评, 1999, 45(3): 255-264. doi: 10.3321/j.issn:0371-5736.1999.03.005

    CrossRef Google Scholar

    [18] 史文娇, 汪景宽, 魏丹, 等. 黑龙江省南部黑土区微量元素空间变异及影响因子——以双城市为例[J]. 土壤学报, 2009, 46(2): 342-347. doi: 10.3321/j.issn:0564-3929.2009.02.021

    CrossRef Google Scholar

    [19] 宋运红, 张哲寰, 杨凤超, 等. 黑龙江海伦地区垦殖前后典型黑土剖面主要养分元素垂直分布特征[J]. 地质与资源, 2020a, 26(6): 543-549.

    Google Scholar

    [20] 宋运红, 刘凯, 戴慧敏, 等. 东北松辽平原典型黑土-古土壤剖面AMS14C年龄首次报道[J]. 中国地质, 2020b, 47(6): 1926-1927.

    Google Scholar

    [21] 宋运红, 刘凯, 戴慧敏, 等. 东北松辽平原35年来耕地土壤全氮时空变化最新报道[J], 中国地质, 2021, 48(1): 332-333.

    Google Scholar

    [22] 宋运红, 刘凯, 戴慧敏, 等. 松嫩平原东部典型黑土剖面孢粉组合及其时代和古气候意义[J]. 地质通报, 2022, 41(9): 1528-1538.

    Google Scholar

    [23] 孙建中, 王淑英, 王雨灼. 东北末次冰期的古环境[J]. 中国第四纪研究, 1985, 6(1): 82-89.

    Google Scholar

    [24] 孙立新, 张云, 张天福, 等. 鄂尔多斯北部侏罗纪延安组、直罗组孢粉化石及其古气候意义[J]. 地学前缘, 2017, 24(1): 32-51.

    Google Scholar

    [25] 王苏民, 吉磊, 羊向东, 等. 内蒙古扎赉诺尔湖泊沉积物中的新仙女木事件记录[J]. 科学通报, 1994, 39(4): 348-353.

    Google Scholar

    [26] 夏玉梅. 三江平原全新世温暖期气候与环境[M]. 北京: 海洋出版社, 1992: 19-23.

    Google Scholar

    [27] 肖海漪, 廖立兵, 季峻峰, 等. 澳大利亚大堡礁海域近15万年沉积记录及古气候演化[J]. 地学前缘, 2014, 21(2): 323-330.

    Google Scholar

    [28] 喻春霞, 罗运利, 孙湘君. 吉林柳河哈尼胡13.1~4.5cal. ka B.P. 古气候演化的高分辨率孢粉记录[J]. 第四纪研究, 2008, 28(5): 929-937.

    Google Scholar

    [29] 赵超, 李小强, 周新郢, 等. 北大兴安岭地区全新世植被演替及气候响应[J]. 中国科学: 地球科学, 2016, 46(6): 870-880.

    Google Scholar

    [30] 赵福岳. 松辽平原第四纪地质历史演化规律研究[J]. 国土资源遥感, 2010, 86(增刊): 152-158.

    Google Scholar

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