土壤学报
土壤學報
토양학보
ACTA PEDOLOGICA SINICA
2009年
5期
851-860
,共10页
戴万宏%黄耀%武丽%俞佳
戴萬宏%黃耀%武麗%俞佳
대만굉%황요%무려%유가
土壤有机质%土壤pH%地带性土壤%相关分析%中国
土壤有機質%土壤pH%地帶性土壤%相關分析%中國
토양유궤질%토양pH%지대성토양%상관분석%중국
Soil organic matter%Soil pH%Zonal soil%Correlation analysis%China
利用中国第二次土壤普查确定的886个典型地带性土种剖面资料,通过统计分析研究了全国及6个地理区域(华东、华南、西南、东北、华北和西北)地带性土壤表层有机质含量与pH的关系.结果表明,土壤表层有机质含量和pH在不同地理区域间有明显差异;土壤有机质含量有随pH升高而降低的趋势,二者间呈极显著的负相关关系(r = -0.332~-0.530, p < 0.001),在控制温度、降雨和海拔条件下,二者间的偏相关关系也均达到1%的显著水平(r_偏 = -0.217~-0.322);指数方程(SOM = a e~( b pH),a和b为常数)可以较好地描述土壤表层有机质含量与pH的关系,土壤pH变异可以分别解释有机质含量总变异的12.2% ~22.9%.
利用中國第二次土壤普查確定的886箇典型地帶性土種剖麵資料,通過統計分析研究瞭全國及6箇地理區域(華東、華南、西南、東北、華北和西北)地帶性土壤錶層有機質含量與pH的關繫.結果錶明,土壤錶層有機質含量和pH在不同地理區域間有明顯差異;土壤有機質含量有隨pH升高而降低的趨勢,二者間呈極顯著的負相關關繫(r = -0.332~-0.530, p < 0.001),在控製溫度、降雨和海拔條件下,二者間的偏相關關繫也均達到1%的顯著水平(r_偏 = -0.217~-0.322);指數方程(SOM = a e~( b pH),a和b為常數)可以較好地描述土壤錶層有機質含量與pH的關繫,土壤pH變異可以分彆解釋有機質含量總變異的12.2% ~22.9%.
이용중국제이차토양보사학정적886개전형지대성토충부면자료,통과통계분석연구료전국급6개지리구역(화동、화남、서남、동북、화북화서북)지대성토양표층유궤질함량여pH적관계.결과표명,토양표층유궤질함량화pH재불동지리구역간유명현차이;토양유궤질함량유수pH승고이강저적추세,이자간정겁현저적부상관관계(r = -0.332~-0.530, p < 0.001),재공제온도、강우화해발조건하,이자간적편상관관계야균체도1%적현저수평(r_편 = -0.217~-0.322);지수방정(SOM = a e~( b pH),a화b위상수)가이교호지묘술토양표층유궤질함량여pH적관계,토양pH변이가이분별해석유궤질함량총변이적12.2% ~22.9%.
Soil organic matter plays a key role in global carbon cycling and global climate changing. Relationships between organic matter (SOM) content and soil pH in topsoil of zonal soils of the whole country and six great geographical regions (I.e. Eastern, Southern, Northern, Northeastern, Northwestern and Southwestern China) were studied statistically based on the data of 886 soil profiles of zonal soil types defined during the second national soil survey of China. Results show that SOM content and soil pH varied significantly from one geographical region to another. There was obvious trend that SOM contents decreased with increasing soil pH, showing a significant negative correlation with soil pH (r = -0.332~-0.530, p < 0.001). Partial correlation between them, with controlled annual mean temperature, annual mean precipitation and altitude, was also significant at 0.01 level (r_p = -0.217~-0.322). An exponential equation (SOM = a e~( b pH), a and b were fit constants) can well describe the relationship between SOM content and soil pH. The variance of soil pH is found to contribute 12.2% ~22.9% to the total variance of SOM content in the country and the six geographical regions.