Spatial Variation of Soil Organic Matter in Gully Bed with the Seabuckthorn Flexible Dam: A Case Study of EG1 in Zhun-Ge-Er County of Inner Mongolia, China

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Abstract:

In this paper, based on geostatistics and GIS techniques, spatial variation characteristics of soil organic matter (acronym: SOM) on a small scale were analyzed and discussed in east-one-branch gully (EG1) bed with the seabuckthorn flexible dam and the contrastive gully bed (which is non-vegetated any vegetation) located in zhun-ge-er county, Erdos, inner Mongolia, which belongs to the typical Pisha Sandstone area. The results show that the seabuckthorn can significantly increase SOM in the small catchment gully bed in the Pisha sandstone area, and the mean SOM content in gully bed with the seabuckthorn flexible dam is approximate 1.75 times that in the contrastive gully. Apparent spatial variation characteristics of SOM were found in the gully with the seabuckthorn flexible dam and the contrastive gully bed, moreover, the medium spatial autocorrelation of SOM was detected in gully bed with the seabuckthorn flexible dam, and the spatial variation of SOM was together led to by the structural and random variation at 1-6.5 m range, and of which the random variation accounts for 40%. Additional, the spatial autocorrelation of SOM in the contrastive gully bed is higher, the spatial variation of SOM was dominantly brought about by the structural variation at 1-4.5 m range, and of which the random variation accounts for 37%. Furthermore, the fractal dimension values reveal that dependence of SOM of the gully bed with the seabuckthorn flexible dam on spatial is weaker than that of the contrastive gully bed. It is judged that the seabuckthorn has an obvious effect on spatial distribution patterns and heterogeneity of SOM on a small scale.

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Advanced Materials Research (Volumes 1073-1076)

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619-627

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December 2014

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] C. Bi, F. Wang, G. Li: Journal of Sediment Research. 23(2), 14-25(2003). (in Chinese).

Google Scholar

[2] C. Bi, G. Li: The Global Seabuckthorn Research and Development. 1(1), 6-12(2003). (in Chinese).

Google Scholar

[3] C. Bi, G. Li, in: Proceedings of the 2nd international yellow river forum on keeping healthy life of the river. I, 126-132(2005). (in Chinese).

Google Scholar

[4] Zh. Jin: Study on the agriculture and grazing development and soil and water conservation in the Pisha sandstone area. Zhengzhou: water resources and hydroelectricity press (2003). (in Chinese).

Google Scholar

[5] Q. Wu, H. Zhao: Forestry Studies in China. 2(2): 50-56(2000). (in Chinese).

Google Scholar

[6] F. Yang, H. Li, Y. Yang, W. Qiao: Bulletin of Soil and Water Conservation. 30(1), 49-52(2010). (in Chinese).

Google Scholar

[7] Zh. Qian: Soil and Water Conservation Technical Information. 4, 3-6(1986). (in Chinese).

Google Scholar

[8] Information on http: /www. ordossb. gov. cn/ztbd/201106/t20110622_346335. html.

Google Scholar

[9] J. B. Campbell: Journal of Soil Science Society of America. 42(3): 460-464(1978).

Google Scholar

[10] T. M. Burgess, R. Webster: Journal of Soil Science, 31(2): 315-331(1980).

Google Scholar

[11] K. H. Trine, A. Jens, R. Anders: Environmental Pollution, 159(5): 1085-1091(2011).

Google Scholar

[12] B. Huang, W. -X. Sun, Y. -C. Zhao: Geoderma, 139(3-4): 336-345(2007).

Google Scholar

[13] A. Marchetti, C. Piccini, R. Francaviglia: Pedosphere, 22(2): 230-242(2012).

Google Scholar

[14] P. Sarah: CATENA, 67(1): 50-55(2006).

Google Scholar

[15] R. Webster: Advances in Soil Science. 3: 1-70(1985).

Google Scholar

[16] B.B. Trangmar, R.S. Yostet, G. Uehara: Advanced Agronomy, 38: 44-94(1985).

Google Scholar

[17] H. -B. Li, J. F. Reynolds: Oikos, 73: 280-284(1995).

Google Scholar

[18] R. Webster: Geoderma, 97(3-4): 149-163(2000).

Google Scholar

[19] R. Webster: Europe Journal of Soil Science. 52: 331-340(2001). +.

Google Scholar

[20] G. P. Robertson: Ecology, 68: 744-748(1987).

Google Scholar

[21] G. P. Robertson, B. G. Grum, J. R. Ellis: Oecologia, 96: 451-456(1993).

Google Scholar

[22] W. H. Schlesinger, J. A. Raikes, A. E. Hartley: Ecology, 77: 364-374(1996).

Google Scholar