Earth Surface Processes

Relationship between black soil development and climate change and geomorphological evolution in Northeast China

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  • 1. Research Institute of Forestry, CAF, Beijing 100091, China;
    2. Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China;
    3. College of Geography Science, Southwest University, Chongqing 40075, China;
    4. College of Water Resources,Shenyang Agricultural University, Shenyang 110161, China

Received date: 2007-08-02

  Revised date: 2008-03-05

  Online published: 2008-05-25

Supported by

国家重点基础研究发展计划973项目资助(2007CB407207)

Abstract

Soil on slopes of the gentle hilly black soil region in Northeast China, one of the most important bases of cash rice, degraded seriously after dozens of years of intensive cultivation. The thickness of soil humus layer becomes thinner and less fertile year after year. So it is very essential to deepen the researches of soil restoration and improvement after severe soil erosion. Analysis of main reasons for black soil degradation revealed that the cultivation activities halted the accumulation of organic matter and then baffled the soil development which cannot compensate the decrease of the thickness of soil humus layer caused by soil erosion. Soil developing process and conditions are the most important foundation for soil restoration. So the developing history of black soil and chernozem was reconstructed and the geomorphological and climatic factors, which were the key factors affecting the formation of black soil, were analyzed through studying both the formation time of the underlying strata and the local climate change history since the late Pleistocene. The conclusion is that black soil and chernozem formed in different periods, from early period of late Pleistocene and the beginning of Holocene respectively. The former period was warm and wet, while the latter period was warm and dry. And they formed in different places, the black soil was mainly distributed on the second and the third terraces and the chernozem on the first terrace of the Nenjiang River, which is lower than the distributing places of black soil and can accept more carbonate from the highland to form the characteristic illuvial layer. The processes of the soil formation were very slow, so it is hard to restore. These results provide important basis for forulating policies to improve the quality of soils in the region.

Cite this article

CUI Ming, ZHANG Xu-dong, CAI Qiang-guo, WANG Yong, FAN Hao-ming, ZHOU Jinxing . Relationship between black soil development and climate change and geomorphological evolution in Northeast China[J]. GEOGRAPHICAL RESEARCH, 2008 , 27(3) : 527 -535 . DOI: 10.11821/yj2008030006

References


[1] 崔明,蔡强国,范昊明.东北黑土区土壤侵蚀研究进展.水土保持研究,2007,14(5):29~34.

[2] 崔明,蔡强国,范昊明,张永光.漫岗黑土区坡耕地中雨季浅沟发育机制.农业工程学报,2007,23(8):59~65.

[3] Cui Ming,Cai Qiangguo,Zhu Axing,et al.Soil erosion along a long slope in the gentle hilly area of black soil region in Northeast China, Journal of Geographical Sciences,2007,17(3):375~383.

[4] 于磊,张柏.中国黑土退化现状与防治对策.干旱区资源与环境,2004,18(1):99~103.

[5] 沈波, 范建荣, 潘庆宾, 等. 东北黑土区水土流失综合防治试点工程项目概况. 中国水土保持, 2003, 11: 7~8.

[6] 刘丙友.典型黑土区土壤退化及可持续利用问题探讨. 中国水土保持, 2003, 12: 28~29.

[7] 范昊明,蔡强国,王红闪. 中国东北黑土区土壤侵蚀环境. 水土保持学报,2004,18(2):66~70.

[8] 崔海山,张柏,于磊,等. 中国黑土资源分布格局与动态分析. 资源科学,2003,25(3):64~68.

[9] Hu Gang, Wu Yongqiu, Liu Baoyuan,et al. Short-term gully retreat rates over rolling hill areas in black soil of Northeast China. Catena, 2007,71:321~329.

[10] 崔明,蔡强国,范昊明.典型黑土区小流域秸秆直接还田技术在土壤改良中的应用.中国水土保持科学,2006,4(5):56~59.

[11] 林年丰,汤洁,卞建民,等.东北平原第四纪环境演化与荒漠化问题.第四纪研究,1999,5:448~455.

[12] 阎百兴,汤洁.黑土侵蚀速率及其对土壤质量的影响.地理研究,2005,24(4):499~506.

[13] 范昊明,蔡强国,崔明.东北黑土漫岗区土壤侵蚀垂直分带性研究.农业工程学报,2005,21(6):8~11.

[14] 范昊明.东北黑土区典型流域沙量平衡研究.博士学位论文,中国科学院地理科学与资源研究所,北京,2005.

[15] 熊毅,李庆逵.中国土壤(第三版).北京:科学出版社,1990.117~118.

[16] 杨秉赓,等.松辽水系的变迁.地理研究,1983,2(1):48~56.

[17] 夏玉梅,汪佩芳.松嫩平原晚第三纪~更新世孢粉组合及古植被与古气候的研究.见:中国东北平原第四纪自然环境形成与演化.哈尔滨地图出版社,1991.12~32.

[18] 张科利,彭文英,王龙,等.东北黑土区土壤剖面地温和水分变化规律.地理研究,2007,26(2),314~320.

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