Effect of Contour Reverse Slope Terrace Preparation on Nitrogen and Phosphorus Transport in Sloping Cropland Under Natural Rainfall Conditions
Author:
Clc Number:

S157.1

  • Article
  • | |
  • Metrics
  • |
  • Reference [32]
  • |
  • Related [20]
  • | | |
  • Comments
    Abstract:

    [Objective] The rules of land preparation measures on sediment production and non-point source pollutant output of sloping land were analyzed in order to provide a scientific basis and technical support for controlling soil and water loss and agricultural non-point source pollution of sloping land at the source. [Methods] The runoff plots of sloping farmland (15° and 22°) with equi-height reverse slope steps were taken as the research object in Songhuaba at Yizhe watershed experimental area of Kunming City, central Yunnan Province. Rainfall, runoff, and water quality data from 2019 to 2021 were analyzed using a comparative analysis method. The characteristics of flow production, sand production, and nitrogen and phosphorus output of surface source pollutants within the sample plots were studied. [Results] Contour reverse slope terraces used on sloping land with a slope of 22° had more significant effects on the reduction of slope flow and sand production, and the output of surface pollutants nitrogen and phosphorus than land with a slope of 15° under the same rainfall pattern. [Conclusion] Contour reverse slope terraces had significant control effects on sediment yield and non-point source pollutant output on sloping land, and can effectively increase soil and water conservation ability on sloping land, especially on large slopes.

    Reference
    [1] 毛妍婷,刘宏斌,郭树芳,等.耕作措施对坡耕地红壤地表径流氮磷流失的影响[J].水土保持学报,2020,34(5):26-33.
    [2] 曹媛,孙鹏,姚蕊,等.不同雨强条件下工程措施对坡地产流产沙影响[J].水土保持学报,2020,34(6):1-7.
    [3] Hobbs P R, Sayre K, Gupta R. The role of conservation agriculture in sustainable agriculture [J]. Philosophical Transactions of the Royal Society of London Series B,Biological Sciences, 2008,363(1491):543-555.
    [4] 李青,高志强,孙敏,等.偏旱年休闲期施肥覆盖对旱地小麦播前土壤水分的影响及其与产量的相关分析[J].中国农学通报,2013,29(9):112-116.
    [5] 刘一帆.半干旱区植被恢复的水土流失调控效应研究[D].陕西杨凌:西北农林科技大学,2019.
    [6] Wang Guoqiang, Wu Binbin, Zhang Lei, et al. Role of soil erodibility in affecting available nitrogen and phosphorus losses under simulated rainfall [J]. Journal of Hydrology, 2014,514:180-191.
    [7] 雷秀美,王飞,周碧青,等.长期施肥对稻田土壤可溶性有机氮和游离氨基酸剖面分异的影响[J].农业环境科学学报,2019,38(7):1550-1559.
    [8] Yu Chaoqing, Huang Xiao, Chen Han, et al. Managing nitrogen to restore water quality in China [J]. Nature, 2019,567(7749):516-520.
    [9] 陈奇伯,寸玉康,刘芝芹,等.滇西高原不同地类坡面产流产沙规律研究[J].水土保持研究,2005,12(2):71-73.
    [10] 褚利平,王克勤,白文忠,等.水平阶影响坡地产流产沙及氮磷流失的试验研究[J].水土保持学报,2010,24(4):1-6.
    [11] 王萍,王克勤,李太兴,等.反坡水平阶对坡耕地径流和泥沙的调控作用[J].应用生态学报,2011,22(5):1261-1267.
    [12] 唐佐芯,王克勤,李秋芳,等.等高反坡阶对坡耕地产流产沙和氮磷迁移的作用研究[J].水土保持研究,2013,20(1):1-8.
    [13] 刘晓微,赵洋毅,王克勤,等.坡耕地等高反坡阶整地年限对土壤改良和玉米产量的影响[J].水土保持学报,2022,36(1):307-315.
    [14] 张洋,王克勤,赵洋毅,等.等高反坡阶对玉米生长及光合特性的影响[J].水土保持通报,2020,40(6):71-77.
    [15] 项俊寒,李贵仁,任千铎.降雨强度对植生滤带削减农业面源污染效率的研究[J].地下水,2019,41(6):55-57.
    [16] 王帅兵,王克勤,宋娅丽,等.等高反坡阶对昆明市松华坝水源区坡耕地氮、磷流失的影响[J].水土保持学报,2017,31(6):39-45.
    [17] 苏孟白,王克勤,宋娅丽,等.滇中尖山河流域不同土地利用类型产流及氮磷流失特征[J].水土保持研究,2020,27(5):24-31.
    [18] Deng Longzhou, Fei Kai, Sun Tianyu, et al. Characteristics of runoff processes and nitrogen loss via surface flow and interflow from weathered granite slopes of Southeast China [J]. Journal of Mountain Science, 2019,16(5):1048-1064.
    [19] 常松果,胡雪琴,史东梅,等.不同土壤管理措施下坡耕地产流产沙和氮磷流失特征[J].水土保持学报,2016,30(5):34-40.
    [20] 王剑,王肖君,斯圆丽,等.平衡减量施肥和行间配植对白茶园氮磷流失的影响[J].水土保持学报,2021,35(3):69-76.
    [21] 宋科,秦秦,郑宪清,等.水肥一体化结合植物篱对减缓果园土壤氮磷地表径流流失的效果[J].水土保持学报,2021,35(3):83-89.
    [22] 缪杰杰,刘运峰,胡宏祥,等.不同施肥模式对稻田氮磷流失及产量的影响[J].水土保持学报,2020,34(5):86-93.
    [23] 黄薇,王冬梅,李平,等.青海高寒区典型植被地表径流及氮磷流失特征[J].农业工程学报,2021,37(13):92-100.
    [24] 刘晓燕,张国珍.中国水环境非点源污染负荷的估算研究[J].环境科学与管理,2007,32(6):63-66.
    [25] 华锦欣,王克勤,张香群,等.昆明松华坝水源区等高反坡阶对坡耕地土壤磷含量的影响研究[J].中南林业科技大学学报,2016,36(3):76-81.
    [26] 华锦欣,王克勤,张香群,等.等高反坡阶对松华坝水源区弃荒坡地植被恢复的初期影响[J].西南林业大学学报,2016,36(3):116-120.
    [27] 武军,王克勤,华锦欣.松华坝水源区等高反坡阶对坡耕地雨季土壤水分空间分布的影响[J].水土保持通报,2016,36(1):57-60.
    [28] 王帅兵,宋娅丽,王克勤,等.不同雨型下反坡台阶减少红壤坡耕地氮磷流失的效果[J].农业工程学报,2018,34(13):160-169.
    [29] Auerswald K, Fiener P, Dikau R. Rates of sheet and rill erosion in Germany: A meta-analysis [J]. Geomorphology, 2009,111(3/4):182-193.
    [30] 钟雄,张丽,张乃明,等.滇池流域坡耕地土壤氮磷流失效应[J].水土保持学报,2018,32(3):42-47.
    [31] 陈开放.不同降雨和施肥条件下茶园坡地地表径流和壤中流氮磷流失通量研究[D].河南郑州:郑州大学,2020.
    [32] 王军,魏飒,刘凤婵,等.坡耕地降雨径流与土壤侵蚀特征研究[J].河北农业科学,2021,25(4):88-92.
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

赵露杨,王克勤,蹇清洪,段旭,杨佳乐,赵洋毅.天然降雨条件下等高反坡台阶整地对坡耕地氮磷输移的影响[J].水土保持通报英文版,2023,43(1):1-7,31

Copy
Share
Article Metrics
  • Abstract:1412
  • PDF: 892
  • HTML: 1248
  • Cited by: 0
History
  • Received:March 08,2022
  • Revised:June 30,2022
  • Online: April 08,2023