|
|
Analysis of the soil thickness and the degradation degree of the typical slope farmland in the black soil region of Northeast China |
XU Wenxu1, YANG Xiankun2, CUI Bin2, XU Ziqi2 |
1. Northeast Forestry University, 150040, Harbin, China; 2. Institute of Soil and Water Conservation of Jilin Province, 130033, Changchun, China |
|
|
Abstract [Background] The degradation of the sloping farmland in the black soil region not only reduces the quality of the land and the water resources, but also causes the deterioration of the ecological environment. This study explores the change rule of the soil thickness and the degradation of the sloping farmland in the black soil region of the Northeast China, and it provides theoretical foundation for the prevention and control of the soil erosion on sloping field.[Methods] 6° and 10° sloping farmlands in Dongliao county of Jilin province were selected as the main research objects, and a 8° farmland with soil and water conservation measures implemented in the near area was as CK field. We studied the degree of soil erosion by measuring the thickness of soil and investigated the degradation at different slope positions on the slope farmland in the black soil region via corresponding mechanical and chemical methods. We employed Excel,SPSS20.0, ANOVA to process data and cluster analysis for the classification of the soil degradation.[Results] 1) The place with cultivated soil layer of 20 cm was the critical point, and when the soil thickness was <20 cm, it meant that the soil erosion was strong on this sloping position. 2) The soil physical and chemical properties and the soil thickness statuses of the 6°slope and the 10° slope were significantly worse than those of the CK field(P<0.05), and the soil physical and chemical properties rank of the 10° slope was as "bottom > top > middle", and the rank of the 6° slope was as "bottom > middle > top". 3) The thinner the soil thickness was, the worse the physical and chemical properties and the yield were, that meant the more serious the erosion was, the more serious the degradation was. 4) The soil degradation degree of the 6° slope and 10° in the study area were classified into 5 types, type 1 was characterized by the slight erosion and the relative high yield; type 2 was characterized by the low moisture content and the low rapidly available phosphorus and rapidly available potassium content; type 3 was characterized by the high bulk density, the low organic matter content; type 4 was characterized by the good soil physical and chemical properties and the high yield, and type 5 was characterized by the low moisture content, the high bulk density, the low nutrient content and the low yield.[Conclusions] The reduction degree of soil thickness and the degradation degree in the study area are relatively serious,and the reduction and degradation rule between the 10° slope and the 6° slope are different, and the results may provide theoretical support for the prevention and control of the degradation of the sloping farmland in the black soil region.
|
Received: 20 January 2020
|
|
|
|
|
[1] |
王文娟,邓荣鑫,张树文.东北典型黑土区沟蚀发生风险评价研究[J].自然资源学报,2014,29(12):2058. WANG Wenjuan, DENG Rongxin, ZHANG Shuwen. Preliminary research on risk evaluation of gully erosion in typical Black Soil Area of Northeast China[J]. Journal of Natural Resources,2014,29(12):2058.
|
[2] |
阎百兴,欧洋,祝惠.东北黑土区农业面源污染特征及防治对策[J].环境与可持续发展,2019,44(2):31. YAN Baixing, OU Yang, ZHU Hui. Characteristics and prevention countermeasure of agricultural NPS in Black soil region of Northeast China[J]. Environment and Sustainable Development,2019,44(2):31.
|
[3] |
李发鹏,李景玉,徐宗学.东北黑土区土壤退化及水土流失研究现状[J].水土保持研究,2006,13(3):50. LI Fapeng, LI Jingyu, XU Zongxue. The status quo of black soil degradation and water and soil loss in Northeast China[J]. Research of Soil and Water Conservation,2006,13(3):50.
|
[4] |
徐晓斌.东北黑土退化研究现状及展望[J].西部探矿工程,2008(8):54. XU Xiaobin. Research status and prospect of black soil degradation in Northeast China[J].West-China Exploration Engineering,2008(8):54.
|
[5] |
张加子琦, 贾燕锋,王佳楠, 等.东北黑土区长缓复合侵蚀坡面土壤可蚀性参数特征[J].土壤学报,2020,57(3):590. ZHANG Jiaziqi, JIA Yanfeng, WANG Jianan, et al. Parameter characteristics of soil erodibility of long gentle slopes under composite erosion in the Black soil region of Northeast China[J]. Acta Pedologica Sinica,2020,57(3):590.
|
[6] |
沈海鸥,肖培青,李洪丽,等.黑土坡面不同粒级泥沙流失特征分析[J].农业工程学报,2019,35(20):111. SHEN Haiou, XIAO Peiqing, LI Hongli, et al. Analysis of sediment particle loss at different gradations on Mollisol hillslopes[J]. Transactions of the CSAE,2019,35(20):111.
|
[7] |
张瑞,徐宗学,王志强.东北黑土区土壤侵蚀对土壤酶活性的影响[J].中国水土保持,2018(9):47. ZHANG Rui, XU Zongxue, WANG Zhiqiang. Influence of soil erosion to soil enzyme activities in the Black Soil Area in Northeast China[J]. Soil and Water Conservation in China,2018(9):47.
|
[8] |
翟国庆,李永江,韩明钊,等.不同开垦年限坡地黑土耕层土壤有机碳库分配特征[J].应用生态学报,2019,30(12):4127. ZHAI Guoqing, LI Yongjiang, HAN Mingzhao, et al. Distribution characteristic of soil organic carbon pool in the plow layer of sloping farmland with different cultivation years in Black soil region[J]. Chinese Journal of Applied Ecology,2019,30(12):4127.
|
[9] |
李露,曹伟,赵鹏志,等.黑土区坡耕地与坡林地表土团聚体有机碳库差异[J].北京林业大学学报,2016,38(12):46. LI Lu, CAO Wei, ZHAO Pengzhi, et al. Differences of soil organic carbon storage in surface soil aggregates between sloping farmland and sloping forestland in Black soil region[J].Journal of Beijing Forestry University,2016,38(12):46.
|
[10] |
曹伟,李露,赵鹏志,等.坡地黑土碳氮分布及其与团聚体稳定性的关系[J].北京林业大学学报,2018,40(8):56. CAO Wei, LI Lu, ZHAO Pengzhi, et al. Distribution of C and N in black soil and its relationship with aggregate stability in sloping land[J]. Journal of Beijing Forestry University,2018,40(8):56.
|
[11] |
张天宇, 郝燕芳. 东北地区坡耕地空间分布及其对水土保持的启示[J]. 水土保持研究, 2018, 25(2):190. ZHANG Tianyu, HAO Yanfang. Spatial distribution of sloping croplands in Northeast China and its implication on soil and water conservation[J]. Research of Soil and Water Conservation, 2018, 25(2):190.
|
[12] |
杨维鸽,郑粉莉,王占礼,等.地形对黑土区典型坡面侵蚀-沉积空间分布特征的影响[J]. 土壤学报,2016,53(3):572. YANG Weige, ZHENG Fenli, WANG Zhanli, et al. Effects of topography on spatial distribution of soil erosion and deposition on hillslope in the typical of Black soil region[J]. Acta Pedologica Sinica,2016,53(3):572.
|
[13] |
王禹,杨明义,刘普灵.典型黑土直型坡耕地土壤侵蚀强度的小波分析[J].核农学报,2010,24(1):98. WANG Yu, YANG Mingyi, LIU Puling. The wavelet analysis on the soil erosion intensity in the black soil straight cultivated slope[J]. Journal of Nuclear Agricultural Science,2010,24(1):98.
|
[14] |
邝高明,刘超群,俞国松,等.土壤侵蚀分类分级标准和RUSLE模型间的差异研究[J].人民珠江,2014,35(1):15. KUANG Gaoming, LIU Chaoqun, YU Guosong, et al. Study on the difference between the classification criteria of soil erosion and the RUSLE model[J]. Pearl River,2014,35(1):15.
|
[15] |
丁文斌.紫色土坡耕地耕层土壤质量诊断及调控途径研究[D]. 重庆:西南大学,2017:23. DING Wenbin. Study on soil quality diagnosis and regulation approach of cultivated land in purple slope farmland[D].Chongqing:Southwest University,2017:23.
|
[16] |
冯颖雪. 黄土缓坡丘陵区采煤塌陷对土壤侵蚀与土地利用的影响[D].北京:中国地质大学, 2017:31. FENG Yingxue. Effects of coal-mining subsidence on soil erosion and land use in hilly area of Loess Plateau[D].Beijing:China University of Geosciences, 2017:31.
|
[17] |
李桂芳. 典型黑土区坡面土壤侵蚀影响因素与动力学机理研究[D].北京:中国科学院研究生院, 2016:28. LI Guifang. Affecting factors and mechanisms of hillslope soil erosion processes in the Mollisol Region[D].Beijing:University of Chinese Academy of Sciences, 2016:28.
|
|
|
|