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The characteristics of soil water infiltration on the abandoned croplands in soft hill and hard ridge of the Ordos Plateau |
YI Sangui1,2, CAI Wentao1,2, LAI Liming1, ZHOU Jihua1,2, ZHANG Xiaolong1,2, GUAN Tianyu1,2, JIANG Lianhe1, ZHENG Yuanrun1 |
1. Key Laboratory of Plant Resources, Institute of Botany, Chinese Academy of Sciences, 100093, Beijing, China;
2. University of Chinese Academy of Sciences, 100049, Beijing, China |
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Abstract [Background] The Ordos Plateau is a typical arid and semi-arid grassland area. Over reclamation of grassland is one of the main causes for shrub encroachment and desertification in the Ordos Plateau. Soil moisture is a key factor for restoration of abandoned cropland in arid and semi-arid areas. The characteristics of soil water infiltration are closely related to soil moisture in different soil layers, and the soil water infiltration in different soil layers can affect vegetation succession process in abandoned croplands. In order to better understand changes of soil water infiltration with vegetation succession in abandoned croplands, the characteristics of soil water infiltration on abandoned croplands with different abandoned years in soft hill and hard ridge in the Ordos Plateau were investigated.[Methods] In soft hill and hard ridge of the Ordos Plateau, croplands with different abandoned years (12 kinds of abandoned cropland) were selected, and double ring infiltration device was used to measure soil infiltration parameters, and Kostiakov-Lewis model was used to simulate soil infiltration process of these abandoned croplands with different abandoned years.[Results] 1) In soft hill, the initial infiltration rate decreased over abandoned years, but it did not show significant difference among different abandoned years. The final infiltration rate and the total infiltration height declined over abandoned years, reached the lowest values in 15th year, and then increased over abandoned years, and the final infiltration rate and the total infiltration height showed a significant decrease in 10th year. 2) In hard ridge, the initial infiltration rate, the final infiltration rate and the total infiltration height were positively correlated with abandoned years before it reached split point in 10th year (for the initial infiltration rate) and 15th year (for the final infiltration rate and the total infiltration height), thereafter declined with further increase of abandoned years, and there were significant increase from 10th to 15th year. 3) In soft hill, there was no obvious change in a value over abandoned years, but K value showed a decreasing trend with the increase of abandoned years. There was no significant change in a value over abandoned years, K value increased with the increase of abandoned years, reached the highest value in 10th year, and then declined. K value showed a significant increase from 10th year to 20th year in hard ridge.[Conclusions] With increase of abandoned years, the soil water infiltration decreased and soil water might increase in shallow soil layers in soft hill; soil structure and soil water infiltration capacity were improved in hard ridge. These results implied that the water and soil preservation capacity gradually improved in croplands over abandoned years without human disturbance, and the results may provide scientific basis in decision-making for restoration of abandoned croplands in Ordos Plateau.
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Received: 27 December 2017
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[1] |
蔡文涛, 来利明, 李贺祎, 等. 鄂尔多斯高原弃耕农田恢复过程中土壤物理性质和生物结皮变化[J]. 应用生态学报, 2017, 28(3):829. CAI Wentao, LAI Liming, LI Heyi, et al. Dynamics of soil physical properties and biological soil crust during the vegetation restoration process of abandoned croplands in the Ordos Plateau, China[J]. Chinese Journal of Applied Ecology, 2017, 28(3):829.
|
[2] |
蔡文涛, 来利明, 李贺祎, 等. 草地灌丛化研究进展[J]. 应用与环境生物学报, 2016, 22(4):0531. CAI Wentao, LAI Liming, LI Heyi, et al. Progress of research on shrub encroachment in grassland[J]. Chinese Journal of Applied and Environmental Biology, 2016, 22(4):0531.
|
[3] |
刘凯, 王磊, 宋乃平, 等. 毛乌素沙地南缘不同林龄人工柠条林土壤渗透性研究[J]. 干旱区资源与环境, 2013, 27(5):89. LIU Kai, WANG Lei, SONG Naiping, et al. Soil infiltration characteristics of Caragana korshinkii plantation with different ages in south edge of Mu Us Sandy Land[J]. Journal of Arid Land Resources and Environment, 2013, 27(5):89.
|
[4] |
徐敬华, 王国梁, 陈云明, 等. 黄土丘陵区退耕地土壤水分入渗特征及影响因素[J]. 中国水土保持科学, 2008, 6(2):19. XU Jinghua, WANG Guoliang, CHEN Yunming, et al. Infiltration characteristics of soil and its influencing factors in abandoned farmland in the hilly-gully region of Loess Plateau[J]. Science of Soil and Water Conservation, 2008, 6(2):19.
|
[5] |
樊贵盛, 李雪转, 李红星. 非饱和土壤介质水分入渗问题的试验研究[M]. 北京:中国水利水电出版社, 2012:1. FAN Guisheng, LI Xuezhuan, LI Hongxing. Experimental study of unsaturated soil water infiltration of medium problem[M]. Beijing:China Water & Power Press, 2012:1.
|
[6] |
李超, 周正朝, 朱冰冰,等. 黄土丘陵区不同撂荒年限土壤入渗及抗冲性研究[J]. 水土保持学报, 2017, 31(2):61. LI Chao, ZHOU Zhengchao, ZHU Bingbing, et al. Research on soil infiltration capacity and soil anti-scouribility on different abandoned land in the loess hilly region[J]. Journal of Soil and Water Conservation, 2017, 31(2):61.
|
[7] |
HOU Jian, FU Bojie, LIU Yu, et al. Ecological and hydrological response of farmlands abandoned for different lengths of time:Evidence from the loess hill slope of China[J]. Global and Planetary Change, 2014, 113:59.
|
[8] |
侯甬坚. 鄂尔多斯高原自然背景和明清时期的土地利用[J]. 中国历史地理论丛, 2007, 22(4):28. HOU Yongjian. The natural environment of the Ordos Plateau and the land use during the Ming and Qing dynasties[J]. Journal of Chinese Historical Geography, 2007, 22(4):28.
|
[9] |
刘志兰. 鄂尔多斯高原本氏针茅植物群落对沙埋和降水的响应[D]. 呼和浩特:内蒙古农业大学, 2013:1. LIU Zhilan. Effects of sand burial and water supply on Stipa bungeana community in Ordos Plateau[D]. Huhhot:Inner Mongolia Agricultural University, 2013:1.
|
[10] |
武雯昱, 樊贵盛. 耕作后土壤水分入渗参数BP预报模型[J]. 人民黄河, 2018, 40(2):148. WU Wenyu, FAN Guisheng. The infiltration parameters of BP prediction model after tillage[J]. Yellow River, 2018, 40(2):148.
|
[11] |
郭华, 樊贵盛. 土壤水分入渗参数的非线性预报模型[J]. 灌溉排水学报, 2016, 35(10):78. GUO Hua, FAN Guisheng. Nonlinear prediction model of soil water infiltration parameter[J]. Journal of Irrigation and Drainage, 2016, 35(10):78.
|
[12] |
张少妮. 林草植被恢复年限对土壤入渗过程的影响[D]. 杨凌:西北农林科技大学, 2015:1. ZHANG Shaoni. The effect of vegetation restoration years on soil infiltration process of different land uses[D]. Yangling:North West Agriculture and Forestry University, 2015:1.
|
[13] |
勃海锋, 刘国彬, 王国梁. 黄土丘陵区退耕地植被恢复过程中土壤入渗特征的变化[J]. 水土保持通报, 2007, 27(3):1. BO Haifeng, LIU Guobin, WANG Guoliang. Changes of infiltration characteristics of abandoned cropland with plant restoration in loess hilly region[J]. Bulletin of Soil and Water Conservation, 2007, 27(3):1.
|
[14] |
赵勇钢, 赵世伟, 曹丽花, 等. 半干旱典型草原区退耕地土壤结构特征及其对入渗的影响[J]. 农业工程学报, 2008, 24(6):14. ZHAO Yonggang, ZHAO Shiwei, CAO Lihua, et al. Soil structural characteristics and its effect on infiltration on abandoned lands in semi-arid typical grassland areas[J]. Transactions of the Chinese Society of Agricultural Engineering, 2008, 24(6):14.
|
[15] |
徐萍. 鲁中山区小流域不同土地利用类型的土壤分形及水分入渗特征[D]. 泰安:山东农业大学, 2013:1. XU Ping. Fractal features and infiltration characteristics of soil under different land uses in a small watershed of rocky mountainous area in the middle of Shandong[D]. Tai'an:Shandong Agricultural University, 2013:1.
|
[16] |
陈瑶, 张科利, 罗利芳, 等. 黄土坡耕地弃耕后土壤入渗变化规律及影响因素[J]. 泥沙研究, 2005, 8(5):45. CHEN Yao, ZHANG Keli, LUO Lifang, et al. Study on beginning infiltration law of the being wild soil in Loess Plateau[J]. Journal of Sediment Research, 2005, 8(5):45.
|
[17] |
GARCIA-RUIZ J M, LANA-RENAULT N. Hydrological and erosive consequences of farmland abandonment in Europe, with special reference to the Mediterranean region:A review[J]. Agriculture Ecosystems and Environment, 2011, 140:317.
|
[18] |
KAHLON M S, LAL R, ANN M. Twenty two years of tillage and mulching impacts on soil physical characteristics and carbon sequestration in central Ohio[J]. Soil & Tillage Research, 2013, 126(1):151.
|
[19] |
LIPIEC J, KUS J, SLOWINSKA-JURKIEWICZ A, et al. Soil porosity and water infiltration as influenced by tillage methods[J]. Soil & Tillage Research, 2006, 89(2):210.
|
[20] |
李卓, 吴普特, 冯浩, 等. 不同粘粒含量土壤水分入渗能力模拟试验研究[J]. 干旱地区农业研究, 2009, 27(3):71. LI Zhuo, WU Pute, FENG Hao, et al. Effects of soil clay particle content on soil infiltration capacity by simulated experiments[J]. Agricultural Research in the Arid Areas, 2009, 27(3):71.
|
[21] |
ABID M, LAL R. Tillage and drainage impact on soil quality:Ⅱ. Tensile strength of aggregates, moisture retention and water infiltration[J]. Soil and Tillage Research, 2009, 103(2):364.
|
[22] |
李新荣, 张元明, 赵允格. 生物土壤结皮研究:进展、前沿与展望[J]. 地球科学进展, 2009, 24(1):11. LI Xinrong, ZHANG Yuanming, ZHAO Yunge. A study of biological soil crusts:Recent development, trend and prospect[J]. Advances in Earth Science, 2009, 24(1):11.
|
[23] |
CHAMIZO S, CANTÓN Y, LÁZARO R, et al. Crust composition and disturbance drive infiltration through biological soil crusts in semiarid ecosystems[J]. Ecosystems, 2012, 15(1):148.
|
[24] |
张侃侃, 卜崇峰, 高国雄. 黄土高原生物结皮对土壤水分入渗的影响[J]. 干旱区研究, 2011, 28(5):808. ZHANG Kankan, BU Chongfeng, GAO Guoxiong. Effect of microbiotic crust on soil water infiltration in the Loess Plateau[J]. Arid Zone Research, 2011, 28(5):808.
|
|
|
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