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Fate characteristics of nitrogen in runoff from a small agricultural watershed on the south of Huaihe River in China

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Abstract

Nitrogen loss laws on the field scale or the watershed scale are often explored independently. Few studies have addressed the fate characteristics of nitrogen in runoff from a “source” farmland to a small watershed outlet during different natural rainfall events. The dynamic processes of surface runoff and the concentrations of three nitrogen forms at outlets of two representative “source” farmlands (paddy field and upland), as well as the total outlets of a small agricultural watershed on the south of Huaihe river in China, were simultaneously monitored for three typical natural rainfall events during one crop season. The results showed that the fate of nitrogen in runoff from the small agricultural watershed varied remarkably with time and space. On the scale of “source” field, the peak flows, surface runoff fluxes, concentration peaks and transfer fluxes of TN, NO3 -N and NH4 +-N from the farmlands for the three typical rainfall events were significantly different, and were all in the magnitude order of heavy rainstorm event > rainstorm event > moderate rain event. For the same rainfall event, due to the influence of the antecedent soil moisture condition, the runoff flux from the paddy field was less than from the upland during the rainstorm, while this relation was reversed during the heavy rainstorm and moderate rain events. Based on the observed rainfall events, the variation extent of the concentrations of three nitrogen forms with time in the runoff water from the upland was all greater than from the paddy field. The nitrogen in runoff water from the upland was transferred dominantly in particulate form in the heavy rainstorm and rainstorm events and in dissolved form in the moderate rainfall event. In contrast, rainfall characteristics had a minimal effect on the main form of nitrogen loss from the paddy field, while dissolved nitrogen was dominant in every rainfall event. In addition, a significant nonlinear relationship between the loss loads of the three nitrogen forms and runoff volumes for each rainfall event was identified (P < 0.01). On the scale of the small watershed, the runoff volumes, average concentrations and loss loads of each nitrogen form also varied consistently with rainfall volume. Dissolved nitrogen was dominant in runoff water at the small watershed outlet in every rainfall event. The surface runoff volumes from the whole small watershed were larger than those from the farmlands accounting for about 80% of the small watershed area; however, the average concentrations and loss loads of each nitrogen form in the runoff of the former were all lower than those of the latter. The main form of nitrogen loss in the runoff of the former was more stable, which indicated that a large number of small ponds and drainage ditches in the small watershed had a strong reduction and retention effect on the “source” farmland nitrogen. Therefore, the retention or establishment of regional landscape structure of “field–ditch–pond” had practical significance on the control of agricultural non-point source nitrogen pollution.

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References

  • Buck O, Niyogi DK, Townsend CR (2004) Scale-dependence of land use effects on water quality of streams in agricultural catchments. Environ Pollut 130:287–299

    Article  Google Scholar 

  • Cai M, Li HE, Zhuang YT, Wang QH (2004) Application of modified export coefficient method in polluting load estimation of non-point source pollution. J Hydraul Eng (7):40–45 (in Chinese)

  • Evans DJ, John PJ (2004) Physico-chemical controls on phosphorus cycling in two lowland streams. Part 1 -the water column. Sci Total Environ 329:145–163

    Article  Google Scholar 

  • Hollinger E, Cornish PS, Baginska B, Mann R, Kuczera G (2001) Farm-scale stormwater losses of sediment and nutrients from a market garden near Sydney, Australia. Agric Water Manage 47:227–241

    Article  Google Scholar 

  • Hu ZP, Zheng XM, Huang ZC, Mao GF, Chen ZL (2007) Nitrogen and phosphorus loss by surface runoff in farm land in Shanghai. Chin J Soil Sci 38(2):310–313 (in Chinese)

    Google Scholar 

  • Jiang R, Zhu B, Tang JL, Luo ZX, Wang D, Xin W, Wei SQ (2008) Characteristics of nitrogen and phosphorus losses in typical rainfall-runoff events in a small watershed in hilly area of purple soil. J Agro-Environ Sci 27(4):1353–1358 (in Chinese)

    Google Scholar 

  • Jiang R, Zhu B, Tang JL, Luo ZX (2009) Transportation processes and loss fluxes of nitrogen and phosphorous through storm runoff in a typical small watershed in the hilly area of purple soil. J Hydraulc Eng 40(6):659–665 (in Chinese)

    Google Scholar 

  • Lewis DR, McGechan MB, McTaggart IP (2003) Simulating field-scale nitrogen management scenarios involving fertiliser and slurry applications. Agricu Syst 76(1):159–180

    Article  Google Scholar 

  • Li HP, Yang GS, Huang WY, Yu XX, Liang T, Li ZF (2006) Comparison of nitrogen and phosphorus concentration of runoff from different spatial scale watersheds. J Lake Sci 18(4):377–386 (in Chinese)

    Google Scholar 

  • Liang XQ, Tian GM, Li H, Chen YX, Zhu S (2005) Study on characteristic of nitrogen and phosphorus loss from rice field by natural rainfall runoff. J Soil Water Conserv 19(1):59–63 (in Chinese)

    Google Scholar 

  • Little JL, Saffran KA, Fent L (2003) Land use and water quality relationships in the lower Little Bow River watershed, Alberta, Canada. Water Qual Res J Canada 38(4):563–584

    Google Scholar 

  • Machito M (2001) Nitrogen and phosphorus losses due to soil erosion during a typhoon, Japan. J Agric Eng Res 78(2):209–216

    Article  Google Scholar 

  • Maciej D (2000) Activities in non-point pollution control in rural areas of Poland. Ecol Eng 14:429–434

    Article  Google Scholar 

  • Mao ZP, Yin CQ, Shan BQ, Peng WQ (2006) Spatial variability of agricultural pollutions in complicated landscape system with multiple ponds. J Hydraul Eng 37(6):727–739 (in Chinese)

    Google Scholar 

  • McKee LJ, Eyre BD, Hossain S (2000) Transport and retention of nitrogen and phosphorus in the subtropical Richmond River estuary, Australia—a budget approach. Biogeochemistry 50:241–278

    Article  Google Scholar 

  • Miller GT (1992) Living in the environment: an introduction to environmental sciences, 7th edn, pp 602–611

  • Poor CJ, McDonnell JJ (2007) The effects of land use on stream nitrate dynamics. J Hydrol 332:54–68

    Article  Google Scholar 

  • Salvia-Castellvi M, Iffly JF, Borght PV, Hoffmann L (2005) Dissolved and particulate nutrient export from rural catchments: a case study from Luxembourg. Sci Total Environ 344:51–65

    Article  Google Scholar 

  • Schilling KE, Libra RD (2000) The relationship of nitrate concentrations in streams to row crop land use in Iowa. J Environ Qual 29(6):1846–1951

    Article  Google Scholar 

  • Spaan WP, Sikking AFS, Hoogmoed WB (2005) Vegetation barrier and tillage effects on runoff and sediment in an alley crop system on a luvisol in Burkina Faso. Soil Till Res 83:194–203

    Article  Google Scholar 

  • StatSoth I (1995) Statistics for Windows. Tulsa, USA

    Google Scholar 

  • Stutter ML, Langan SJ, Cooper RJ (2008) Spatial and temporal dynamics of stream water particulate and dissolved N, P and C forms along a catchment transect, NE Scotland. J Hydrol 350:187–202

    Article  Google Scholar 

  • Tang JL, Zhang B, Gao C, Harald Z (2008) Hydrological pathway and source area of nutrient losses identified by a multi-scale monitoring in an agricultural catchment. Catena 72:374–385

    Article  Google Scholar 

  • Udawatta RP, Motavalli PP, Garrett HE, Krstansky JJ (2006) Nitrogen losses in runoff from three adjacent agricultural watersheds with clay pan soils. Agr Ecosyst Environ 117:39–48

    Article  Google Scholar 

  • Wang XH, Yin CQ, Shan BQ (2005) The role of diversified landscape buffer structures for water quality improvement in an agricultural watershed, North China. Agr Ecosyst Environ 107:381–396

    Article  Google Scholar 

  • Wang PF, Wang C, Xu HB (2006) Effectiveness of nutrient retention and purification in natural ponds. J Agro-Environ Sci 25(3):782–785 (in Chinese)

    Google Scholar 

  • Wang ZM, Zhang B, Song KS, Liu DW, Yan BX, Hu LJ, Yang HJ, Xu JP, Yang F, Duan HT (2007a) Domestic and overseas advances of non-point source pollution studies. Chin Agric Sci Bull 23(9):468–471 (in Chinese)

    Article  Google Scholar 

  • Wang XZ, Gao R, Qian XQ, Feng K, Zhu JG (2007b) Nitrogen loss via runoff from paddy field using the large catchment area in Taihu region. J Agro-Environ Sci 26(3):831–835 (in Chinese)

    Google Scholar 

  • Wei LH, Zhang B, Cheng XQ (2007) Effects of hydrological factors on nitrogen loss in small agriculture catchments. J Hydraul Eng 38(9):1145–1150 (in Chinese)

    Google Scholar 

  • Wu XY, Zhang LP, Ni HB, Zhu XM (2008) Research on characteristics of nitrogen and phosphorus loss under different coverage in Qingshan Lake valley. J Soil Water Conserv 22(1):56–59 (in Chinese)

    Google Scholar 

  • Yang JL, Zhang GL (2005) Characteristics of nitrogen and phosphorus discharge with runoff from a watershed in the northern subtropical low hilly areas. Rural Eco-Environ 21(3):34–37 (in Chinese)

    Google Scholar 

  • Yang JL, Zhang GL, Shi XZ, Wang HJ, Cao ZH, Ritsema CJ (2009) Dynamic changes of nitrogen and phosphorus losses in ephemeral runoff processes by typical storm events in Sichuan Basin, Southwest China. Soil Till Res 105:292–299

    Article  Google Scholar 

  • Zeng Y, Zhang YC, Fan XP (2007) Characteristics of nitrogen and phosphorus loss of rainfall runoff in typical plain river-net area of Taihu lake basin. Water Resour Protect 23(1):25–27 (in Chinese)

    Google Scholar 

  • Zeng SC, Su ZY, Chen BG, Wu QT, Ouyang Y (2008) Nitrogen and phosphorus runoff losses from orchard soils in South China as affected by fertilization depths and rates. Pedosphere 18(1):45–53

    Article  Google Scholar 

  • Zhang XC, Shao MA (2003) Effects of vegetation coverage and management practice on soil nitrogen loss by erosion in a hilly region of the loess plateau in China. Acta Botanica Sinica 45(10):1195–1203

    Google Scholar 

Download references

Acknowledgments

This research was supported by the National Science Foundation of China (No. 50839002), the Chinese Ministry of Education Project (No. 200802940006) and the Chinese Ministry of Water Resources public research special funds for projects (No. 200701025). The authors would like to express appreciation to the Lishui Water Resource Bureau, Jiangsu Province for providing the experimental conditions, and to Associate Prof WM Wang, Associate Prof GC Shao and the laboratory group for their assistance in the analysis of the samples and data handling.

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Correspondence to Zhan-yu Zhang.

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Zhang, Zy., Kong, Ll., Zhu, L. et al. Fate characteristics of nitrogen in runoff from a small agricultural watershed on the south of Huaihe River in China. Environ Earth Sci 66, 835–848 (2012). https://doi.org/10.1007/s12665-011-1293-4

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