1. 兰州理工大学 能源与动力工程学院,甘肃,兰州,730050
2. 水利部 水利水电规划设计总院,北京,100120
纸质出版:2016
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唐学芬, 赵文举, 李宗礼, 等. 压砂地土壤盐分空间变异规律[J]. 水土保持通报, 2016,36(3):18-23.
TANG Xuefen, ZHAO Wenju, LI Zongli, et al. Variation Pattern of Soil Salinity of Gravel-sand Mulched Field[J]. Bulletin of Soiland Water Conservation, 2016, 36(3): 18-23.
唐学芬, 赵文举, 李宗礼, 等. 压砂地土壤盐分空间变异规律[J]. 水土保持通报, 2016,36(3):18-23. DOI: 10.13961/j.cnki.stbctb.2016.03.005.
TANG Xuefen, ZHAO Wenju, LI Zongli, et al. Variation Pattern of Soil Salinity of Gravel-sand Mulched Field[J]. Bulletin of Soiland Water Conservation, 2016, 36(3): 18-23. DOI: 10.13961/j.cnki.stbctb.2016.03.005.
[目的] 研究不同种植年限压砂地及裸地不同土层土壤盐分的空间变异特征,为西北干旱地区土壤盐渍化改良和利用提供理论依据。[方法] 以甘肃省景泰县压砂地及裸地不同土层土壤盐分数据为基础,运用经典统计学和地统计学相结合的方法,分析土壤盐分统计特征值,半方差模拟模型及其拟合参数和等值线分布图。[结果] 压砂地土壤盐分均值明显低于裸地,且裸地 > 老砂地 > 新砂地 > 中砂地,裸地与压砂地各层土壤盐分的均值差异较大,且土层Ⅳ(30-50 cm) > 土层Ⅲ(20-30 cm) > 土层Ⅱ(10-20 cm) > 土层Ⅰ(0-10 cm);裸地Ⅱ,Ⅲ,Ⅳ层,中砂地各层土壤盐分属于弱变异性,其他各地型各土层土壤盐分都属于中等变异性。裸地Ⅰ,Ⅲ层,新砂地第Ⅲ层,中砂地第Ⅰ层,老砂地Ⅰ,Ⅱ,Ⅲ层土壤盐分半方差函数最佳理论模型为指数模型,裸地第Ⅱ层为线性模型,其他各地型各土层均为球状模型。裸地第Ⅱ层土壤盐分具有弱空间相关性,其余各土层土壤盐分均具有强相关性。试验区土壤盐分北部高于南部,且各土层土壤盐分在一定范围内存在空间上的变异性和相关性。[结论] 土壤表层压砂能有效减小土壤盐分表聚,抑制土壤次生盐渍化,不同种植年限压砂地不同土层土壤盐分在一定范围内存在空间上的变异性和相关性。
[Objective] We studied the variation pattern of soil salinity at different layer of GSM(gravel-sand mulched field) and CK in order to provide basis for improvement and utilization of soil salinization in the northwest arid area in China.[Methods] Based on the statistics at different layer of GSM and CK
classical statistics and geo-statistics were used to analyze the statistical characteristic value
semi-variance simulation model and its fitting parameters
and the isocline distribution map of soil salinity in Jingtai County of Gansu Province.[Results] Mean soil salinity of GSM was lower than that of CK
and the result showed:CK > OGM(old gravel-sand mulched field) > NGM(new gravel-sand mulched field) > MGM(middle gravel-sand mulched field). There were significant differences in soil salinity among different layers of GSM and CK
and the result showed:layer Ⅳ(30-50 cm) > layer Ⅲ(20-30 cm) > layerⅡ(10-20 cm) > layerⅠ(0-10 cm). The variations of soil salinity in layerⅡ
Ⅲ
Ⅳ(CK) and MGM were weak
while variations in other layers were moderate. The best semi-variance theory model of layer Ⅱ(CK) was linear model
the optimal model for layerⅠ
Ⅲ(CK)
layer Ⅲ(NGM)
layer Ⅰ(MGM) and layer Ⅰ
Ⅱ
Ⅲ(OGM) was exponential model
while the best model for other layers was spherical model. The spatial auto-correlation of soil salinity at layer Ⅱ(CK) was lower
while it was high at other layers. The soil salinity in northern area was higher than that in southern area.[Conclusion] Gravel sand on soil surface can reduce soil salt accumulation and control soil secondary salinization
and there is spatial variability and correlation exists in soil salinity among different layer of GSM and CK.
王平,谢成俊,陈娟.不同种植年限砂田水盐变化与砂田退化初探[J].水土保持通报,2012,32(2):251-254.
刘继龙,马孝义,付强,等.不同土层土壤特性空间变异性关系的联合多重分形研究[J].农业机械学报,2012,43(5):37-42.
Burgess T M, Webster R. Optimal interpolation and isarithmic mapping of soil properties: The semivariogram and punctual Kriging[J]. Journal of Soil Science, 1980,31(2):315-341.
Webster R. Quantitative spatial analysis of soil in the field[M]//Advances in Soil Science. Springer New York, 1985:1-70.
赵成义,王玉潮,李子良,等.田块尺度下土壤水分和盐分的空间变异性[J].干旱区研究,2003,20(4):252-256.
胡克林,李保国,陈德立,等.农田土壤水分和盐分的空间变异性及其协同克立格估值[J].水科学进展,2001,12(4):460-466.
Sylla M, Stein A, van Breemen N, et al. Spatial variability of soil salinity at different scales in the mangrove rice agro-ecosystem in West Africa[J]. Agriculture, Ecosystems and Environment, 1995,54(1):1-15.
Mohammadi J. Study of the spatial variability of soil salinity in Ramhormoz Area (Khuzestan) using geostatistical theory 1: Kriging[J]. JWSS-Isfahan University of Technology, 1999,2(4):49-64.
Li Jiangguo, Pu Lijie, Han Mingfang, et al. Soil salinization research in China: Advance and prospects[J]. Journal of Geographical Science, 2014,24(5):943-960.
姚荣江,杨劲松,韩建均.海涂围垦区土壤盐分空间变异模拟的比较研究[J].土壤学报,2012,49(2):275-281.
Li Xiaoyan. Gravel-sand mulch for soil and water conservation in the semiarid region of Northwest China[J]. Catena, 2003,52(2):105-127.
许强,吴宏亮,康建宏,等.旱区砂田肥力演变特征研究[J].干旱地区农业研究,2009,27(1):37-41.
杨劲松,姚荣江,刘光明,等.黄河三角洲地区突然盐分的空间变异性及其CoKriging估值[J].干旱区研究,2006,23(3):439-445.
佘冬立,邵明安,俞双恩.黄土区农草混合利用坡面土壤水分空间变异性[J].农业机械学报,2010,41(7):57-63.
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