Bi R T, Wang B, Duan Y H, Li H, Zhang H Z, Wang J M (2005). Spatial variation of trace elements with landform of farmland-a case study of Yongji city. Soil, 37(3): 290–294 (in Chinese)
Burgess T M, Webster R (1980). Optimal interpolation and isarithmic mapping of soil properties I. The semivariogram and punctual Kriging. Journal of Soil Science, 31: 315–341
Cambardella C A, Moorman A T, Novak J M, Parkin T B, Karlen D L, Turco R F, Konopka A E (1994). Field-scale heterogeneity of soil properties in central Iowa soils. Soil Science Society of America Journal, 58: 1501–1511
Chien Y J, Lee D Y, Guo H Y, Houng K H (1997). Geostatistics analysis of soil properties of mid-west Taiwan soils. Soil Science, 162: 291–298
Dercon G, Deckers J, Govern G, Poesen J, Sanchez H, Vanegas R, Ramirez M, Loaiza G (2003). Spatial variability in soil properties on slow-forming terraces in the Andes region of Ecuador. Soil and Tillage Research, 72(1): 31–41
Eghball B, Binford G D, Power J F, Baltensperger D D, Anderson F N (1995). Maize temporal yield variability under long-term manure and fertilizer application: fractal analysis. Soil Science Society of America Journal, 59: 1360–1364
Eghball B, Power J F (1995). Fractal description of temporal yield variability of ten crops in the United States, 87: 152–156
Gan H H, Peng L Y (2005). Spatial variability of nutrients in cultivated soils of Xinhui district, Jiangmen city. Chinese Journal of Applied Ecology, 16(8): 1437–1442 (in Chinese)
Gotway C A, Herget G W (1997). Incorporating spatial trends and anisotropy in geostatistical mapping of soil properties. Science Society of America Journal, 61: 298–309
Guo, S D, Fu B J, Ma KM (2000). The spatio-temporal variability of soil nutrients in Zunhua plain of Heibei province. Acta Geographica Sinica, 55(5): 555–566 (in Chinese)
Institute of Soil Science, Chinese Academy of Sciences. Analysis on soil physical and chemical. 1997. Shanghai: Shanghai Science Press (in Chinese)
Jiang L N, Fu J R, Fan H D (2005). Spatial variance characteristics of paddy soil nutrients in Alluvial Plain. Chinese Journal of Rice Science, 19(2): 153–159 (in Chinese)
Jiang Y, Zhang Y G, Wen D Z, Liang W J (2003). Spatial heterogeneity of exchangeable iron content in cultivated soils of Shenyang suburbs. Journal of soil and water conservation, 17(1): 119–121 (in Chinese)
Liu G S (2003). Tobacco Cultivation. Beijing: China Agriculture Press (in Chinese)
Luo L C, Qin B Q, Zhu G W (2004). Sediment distribution pattern mapped from the combination of objective analysis and geostatistics in the large shallow Taihu Lake, China. Journal of Environmental Science, 16: 908–911
Ma L C, Sheng J D, Jiang P G, Tang Q F (2004). Spatial variability characteristics of soil available micronutrients in the Karamay region, Xinjiang. Arid Land Geography, 27(2): 202–205 (in Chinese)
Mallarino A P (1996). Patterns of spatial variability for phosphorus and potassium in-tilled soils for two sampling scales. Soil Science Society of America Journal, 60: 1473–1481
Manuela R, Kaiser E A (1999). Spatial heterogeneity within the plough layer: low and moderate variability of soil properties. Soil Biology and Biochemisty, 31(2): 175–187
Mcgraw T (1995). Fertility variability in the Minnesota river valley watershed in 1993, as determined from grid testing result on 52000 acres in commercial fields. Site-Specific Management for Agricultural Systems. ASA-CSSA-SSSA, 167–174
Peng LY, Gan H H, Wu J Y (2005). Spatial variability of soil available silicon, calcium and magnesium in cultivated soil of Xinhui district, Jiangmen city. Journal of Soil and Water Conservation, 19(2): 80–83 (in Chinese)
Tao S (1995). Spatial structures of copper, lead and mercury contents in surface soil in the Shenzhen area. Water Air and Soil Pollution, 82: 583–592
Tao S, Cao J, Li B G (2001). Distribution pattern of trace elements in soil from Shenzhen area. Acta Pedologica Sinica, 38(2): 248–255 (in Chinese)
Wang Z Q (1999). Geostatistics and its application in ecology. Beijing: Science Press, 25–31 (in Chinese)
Webster R, Burgess T M (1980). Optimal interpolation and isarithmic mapping of soil properties III. The semivariogram and punctual Kriging. Journal of Soil Science, 31: 505–524
White J G, Welch R M, Norvell WA (1997). Soil zZinc map of the USA using geostatistics and geographic information systems. Soil Science Society of America Journal, 61: 185–194
Xia X Q, Chen J, Liao Q L, Ji J F, Tian Q G, Wu J Z (2006). Spatial statistics for cadmium, mercury and lead contents in topsoil of Nanjing. Geochimica, 35(1): 95–102 (in Chinese)
Xu S P, Tao S, Xu F L, Cao J (2000). Spatial distribution pattern of trace elements contents in the soil in Inner Mongolia. Acta Geographica Sinica, 55(3): 337–345 (in Chinese)
Yost R S, Uehara G, Fox R L (1982). Geostatistical analysis of soil chemical properties of large land areas I. Semivariogram. Soil Science Society of America Journal, 46: 1028–1032
Zhang C S, Tao S (1994). Autocorrelation of trace element contents in soils of Tianjin plain area. The journal of Chinese geography, 4: 163–170 (in Chinese)
Zhang Q L, Shi X Z, Huang B, Yu D S, Wang H J (2005). Characteristics of spatial variability of soil available lead, zinc, copper and cadmiuium in a vegetable base in the suburbs of Nanjing. Soil, 37(1): 41–47 (in Chinese)
Zhao X Y, Zuo X A, Zhao H L, Zhang T H, Li Y Q, Yi X Y (2006). Spatial variability of soil moisture after rainfall in different type sands of Horqin Sand. Arid Land Geography, 29(2): 275–281 (in Chinese)