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Effectiveness of Soil Conservation Measures in Reducing Soil Erosion and Improving Soil Quality in China Assessed by Using Fallout Radionuclides

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Land Degradation and Desertification: Assessment, Mitigation and Remediation
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Abstract

China experiences the most severe water and wind erosion problems in the world. Using fallout radionuclide techniques (FRN), our objectives were to assess the extent of soil erosion and to quantify the beneficial effects of soil conservation measures at four sites extending from South West (SW) to North East (NE) China. At the Xichang site of SW-China, the combined use of FRN 137Cs and 210Pbex measurements demonstrated that the effectiveness of vegetation species in reducing soil erosion decreased in the following order: shrubs > trees with litter layer > grasses > trees without litter layer. At the Yan’an site of Loess Plateau, sediment production estimated by 137Cs declined by 49% due to terracing and by 80% due to vegetated (with grass and forest) compared to the cultivated hillslopes. Vegetated hillslope with grasses and forest increased soil organic matter (SOM) by 255%, soil available N (AN) by 198%, and soil available P (AP) by 18% while terracing increased SOM by 121%, soil AN by 103%, and soil AP by 162% compared with the entire cultivated hillslope. Both terracing and vegetating hillslopes were found to enhance soil porosity as shown by a decrease in soil bulk density (1.6 and 6.4%, respectively). At the Baiquan site in NE-China, soil loss as measured by 137Cs tracer, decreased by 14% due to terracing and by 34% due to contoured tillage. At the Fengning site, data from 7Be measurements indicated that 4 years of no tillage with high crop residues (50–56 cm depth) reduced soil erosion by 44% and no tillage with low residues (25 cm depth) reduced soil erosion rates by 33% when compared with conventional tillage practices.

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References

  • Bremner, J.M. (1965). Inorganic forms f nitrogen. In: C.A. Black et al. (eds.), Methods of Soil Analysis. Part 2. Agron.Monogr.9. ASA and SSSA, Madison, WI, pp. 1179–1237.

    Google Scholar 

  • Cremers, A., Elsen, A., De Preter, P. and Maes, A. (1988). Quantitative analysis of radio caesium retention in soils. Nature 335:247–249.

    Article  CAS  Google Scholar 

  • Joshi, S.R. (1987). Non-destructive determination of lead-210 and radium-226 in sediments by direct photon analysis. Journal of Radioanalysis and Nuclear Chemistry Articles 116:169–182.

    Article  CAS  Google Scholar 

  • Li, Y. and Lindstrom, M.J. (2001). Evaluating soil quality-soil redistribution relationship on terraces and steep hillslope. Soil Science Society of America journal 65:1500–1508.

    Article  CAS  Google Scholar 

  • Li, Y., Poesen, J., Yang, J.C., Fu, B. and Zhang, J.H. (2003). Evaluating gully erosion using 137Cs and 210Pb/137Cs ratio in a reservoir catchment. Soil and Tillage Research 69:107–115.

    Article  Google Scholar 

  • Nelson, D.W. and Sommers., L.E. (1982). Total carbon, organic carbon, and organic matter. In: A.L. Page et al. (eds.), Methods of Soil Analysis. Part. 2. 2nd edition. Agron.Monogr.9. ASA and SSSA, Madison, WI, pp. 539–580.

    Google Scholar 

  • Olsen, C.R., Larsen, I.L., Lowry, P.D. and Cutshall, N.H. (1986). Geochemistry and deposition of 7Be in river-estuarine and coastal water. Journal of Geophysical Research 91:896–908.

    Article  CAS  Google Scholar 

  • Olson, S.R. and Sommers., L.E. (1982). Phosphorus. In: A.L. Page et al. (eds.), Methods of Soil Analysis. Part 2. 2nd edition. Agron. Monogr. 9. ASA and SSSA, Madison, WI, pp. 403–430.

    Google Scholar 

  • Pennock, D.J., Anderson, D.W. and de Jong., E. (1994). Landscape scale changes in indicators of soil quality due to cultivation in Saskatchewan, Canada. Geoderma 64:1–19.

    Article  Google Scholar 

  • Robbins, J.A. (1978). Geochemistry and Geophysical application of radioactive lead. In: J.O. Nriagu (ed.), The Biochemistry of Lead in the Environment. Elsever, Amsterdam, pp. 285–393.

    Google Scholar 

  • Wallbrink, P.J. and Murray, A.S. (1993). The use of fallout radionuclide as indicators of erosion processes. Hydrological Processes 7:297–304.

    Article  Google Scholar 

  • Wallbrink, P.J. and Murray, A.S. (1994). Fallout of 7Be over south eastern Australia. Journal of Environmental Radioactivity 25:213–228.

    Article  CAS  Google Scholar 

  • Wallbrink, P.J., and Murray, A.S. (1996a). Distribution of 7Be in soils under different surface cover conditions and its potential for describing soil redistribution processes. Water Resources Research 32:467–476.

    Article  CAS  Google Scholar 

  • Zapata, F. (ed.). (2003). The use of environmental radionuclide as tracers in soil erosion and sedimentation investigation: Recent advances and future developments. Soil and Tillage Research 69:3–13.

    Article  Google Scholar 

Download references

Acknowledgements

This study was supported by National Natural Science Foundation of China (No. 40671097 and No. 40701099), and the International Atomic Energy Agency (IAEA) (Research Contract No. 12323 and TC Project CPR5015), and National Key Basic Research Special Foundation Project of China (2007CB407204). Field sampling and soil analysis were assisted with X.C. Geng, J. Li, R. Funk, X.C. Zhang, F.H. He, D.H. Liu, L. Li, L. Sun, R. Li, Q.W. Zhang, and H.Q. Yu.

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Li, Y., Nguyen, M.L. (2010). Effectiveness of Soil Conservation Measures in Reducing Soil Erosion and Improving Soil Quality in China Assessed by Using Fallout Radionuclides. In: Zdruli, P., Pagliai, M., Kapur, S., Faz Cano, A. (eds) Land Degradation and Desertification: Assessment, Mitigation and Remediation. Springer, Dordrecht. https://doi.org/10.1007/978-90-481-8657-0_16

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