Quantitative analysis of soil pores under natural vegetation successions on the Loess Plateau
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Zhu X M. Theory and practice on the “28-Word General Plan” for the Loess Plateau’s territory rehabilitation (in Chinese). Bull Chin Acad Sci, 1998, 3: 232–236
Zhu X M. Rebuild soil reservoir is a rational approach for soil and water conservation on the Loess Plateau (in Chinese). Bull Chin Acad Sci, 2006, 4: 320–324
Li Y S. Functions and roles of soil reservoir (in Chinese). Bull Soil Water Conserv, 1983, 5: 27–30
Boyle M, Frankenberger W T, Stolzy L H. The influence of organic matter on soil aggregation and water infiltration. J Prod Agric, 1989, 2: 290–299
Six J, Paustian K, Elliott E T, et al. Soil structure and organic matter: I. Distribution of aggregate-size classes and aggregate-associated carbon. Soi Sci Soc Am J, 2000, 64: 681–689
Rasiah V, Alymore L A G. The topology of pore structure in cracking clay soil: I. The estimation of numerical density. J Soil Sci, 1998, 39: 303–314
Zhao Y G, Zhao S W, Cao L H, et al. Soil structural characteristics and its effect on infiltration on abandoned lands in semi-arid typical grassland areas (in Chinese). Trans Chin Soc Agric Eng, 2008, 24: 14–20
Li Y Y, Shao M A. Change of soil physical properties under longterm natural vegetation restoration on the Loess Plateau of China. J Arid Environ, 2006, 64: 77–96
Zhao S W, Zhou Y D, Wu J S. Study on soils water storage capacity and availability in secondary vegetation types in Ziwuling forest region (in Chinese). Acta Bot Boreali-Occidentalia Sin, 2003, 23: 1389–1392
Zhou Y D, Wu J S, Zhao S W, et al. Change of soil organic matter and water holding ability during vegetation succession in Ziwuling region. Acta Bot Boreali-Occidentalia Sin, 2003, 23: 895–900
Peyton R L, Gantzer C J, Anderson S H, et al. Fractal dimension to describe soil macropore structure using X-ray computed-tomography. Water Resour Res, 1994, 30: 691–700
Sander T, Gerke H H, Rogasik H. Assessment of Chinese paddy-soil structure using X-ray computed tomography. Geoderma, 2008, 145: 303–314
Rasiah V, Aylmore L A G. Characterizing the changes in soil porosity by computed tomography and fractal dimension. Soil Sci, 1998, 163: 203–211
Udawatta R R, Anderson S H, Gantzer C J, et al. Influence of prairie restoration on CT-measured soil pore characteristics. J Environ Qual, 2008, 37: 219–228
Udawatta R P, Anderson S H. CT-measured pore characteristics of surface and subsurface soils influenced by agroforestry and grass buffers. Geoderma, 2008, 145: 381–389
Udawatta R P, Anderson S H, Gantzer C J, et al. Agroforestry and grass buffer influence on macropore characteristics: A computed tomography analysis. Soi Sci Soc Am J, 2006, 70: 1763–1773
Zeng Y, Gantzer C J, Payton R L, et al. Fractal dimension and lacunarity of bulk density determined with X-ray computed tomography. Soi Sci Soc Am J, 1996, 60: 1718–1724
Wu H S, Chen X M, Chen C. Study on macropore in main paddy soils in Tai Lake region With CT (in Chinese). J Soil Water Conserv, 2007, 2: 175–178
Feng J, Hao Z C. Distribution of soil macropores characterized by CT (in Chinese). Adv Water Sci, 2002, 13: 611–617
Rachman A, Anderson S H. Gantzer C J. Computed-tomographic measurement of soil macroporosity parameters as affected by stiff-stemmed grass hedges. Soi Sci Soc Am J, 2005, 69: 1609–1616
Gantzer C J, Anderson S H. Computed tomographic measurement of macroporosity in chisel-disk and no-tillage seedbeds. Soil Till Res, 2002, 64: 101–111
Mooney S J. Three-dimensional visualization and quantification of soil macroporosity and water flow patterns using computed tomography. Soil Use Manag, 2002, 18: 142–151
Perret J, Prasher S O, Kantzas A, et al. Three-dimensional quantification of macropore networks in undisturbed soil cores. Soi Sci Soc Am J, 1999, 63: 1530–1543
Zhang J F, Zheng Z, Jin Y X. Relation between vegetation succession and soil development (in Chinese). J Wuhan Bot Res, 1990, 8: 325–334
Zou H Y, Liu G B and Wang H S. The vegetation development in North Ziwulin forest region in last fifty years (in Chinese). Acta Bot Boreali-Occidentalia Sin, 2002, 22: 1–8
ISSCAS. Physical and Chemical Analysis of Soils (in Chinese). Shanghai: Shanghai Scientific & Technical Publishers, 1981
Abramoff M D, Magelhaes P J, Ram S J. Image processing with ImageJ. Biophotonics Int, 2004, 11: 36–42
Guo F, Xu S H, Liu J L. Characteristics of pore profile fractal dimension of soil images and its application (in Chinese). Trans Chin Soc Agric Eng, 2005, 21: 6–10
Wang K B, Chen M L, Qin J, et al. Plant species diversity and the relation with soil properties in natural succession process in Ziwuling area. Acta Bot Boreali-Occidentalia Sin, 2007, 10: 2089–2096
Liang X F, Hua J, Zhang Y. Analysis of soil structure and its stability indexes under typical vegetation in Ziwuling forest area (in Chinese). Bull Soil Water Conserv, 2008, 3: 12–16, 22
Kay B D. Soil structure and organic carbon: A review. In: Lal R, Kimble J M, Follett R, et al, eds. Soil Processes and The Carbon Cycle. Boca Raton: CRC Press LLC, 1998. 169–197
Peng X H, Zhan B, Zhao Q G. A review on relationship between soil organic carbon pools and soil structure stability (in Chinese). Acta Pedologica Sin, 2004, 41: 618–623