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胶体态磷和溶解态磷在不同土壤磷饱和度稻田土壤中形态分布
引用本文:ZANG Ling,TIAN Guang-Ming,LIANG Xin-Qing,HE Miao-Miao,BAO Qi-Bei,YAO Jin-Hua. 胶体态磷和溶解态磷在不同土壤磷饱和度稻田土壤中形态分布[J]. 土壤圈, 2013, 23(1): 128-136. DOI: 10.1016/S1002-0160(12)60088-5
作者姓名:ZANG Ling  TIAN Guang-Ming  LIANG Xin-Qing  HE Miao-Miao  BAO Qi-Bei  YAO Jin-Hua
作者单位:Department of Environmental Engineering, Zhejiang University
基金项目:Supported by the National Natural Science Foundation of China (Nos. 21077088 and 41271314);the National Basic Research Program (973 Program) of China (No. 2002CB410807)
摘    要:Soil dissolved phosphorus (P) and colloidal P mobilization could be closely related to the degree of phosphorus saturation (DPS). Effects of a wide range of DPS on the distributions of dissolved P and colloidal P in a paddy soil profile were investigated in this study. Dissolved P and colloidal P in water-dispersible soil colloid suspension increased obviously with increasing DPS. The change point of DPS was at 0.12 by using a split-line model. Above the value, dissolved P (3.1 mg P kg-1 ) in soil profile would increase sharply and then transfer downward. Compared with dissolved P, colloidal P was the dominant fraction (78%-91%) of P in soil colloid suspension, and positively related to DPS without a significant change point. The high release of colloids in subsoils with low DPS was attributed to the low ionic strength and high pH value in subsoils. The DPS also had a significant and positive correlation with electrical conductivity (EC), but it showed a negative correlation with pH value. However, the concentration of colloidal P was not greatly correlated to the pH value, EC and optical density of the soil colloid suspension. The results indicated that DPS was an important factor that may affect the accumulation and mobilization of water-extractable colloidal P and dissolved P.

关 键 词:inorganic fertilizer  ionic strength  manure  split-line model  water-dispersible soil colloid
收稿时间:2012-04-26

Profile distributions of dissolved and colloidal phosphorus as affected by degree of phosphorus saturation in paddy soil
ZANG Ling,TIAN Guang-Ming,LIANG Xin-Qing,HE Miao-Miao,BAO Qi-Bei and YAO Jin-Hua. Profile distributions of dissolved and colloidal phosphorus as affected by degree of phosphorus saturation in paddy soil[J]. Pedosphere, 2013, 23(1): 128-136. DOI: 10.1016/S1002-0160(12)60088-5
Authors:ZANG Ling  TIAN Guang-Ming  LIANG Xin-Qing  HE Miao-Miao  BAO Qi-Bei  YAO Jin-Hua
Affiliation:Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China);Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China);Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China);Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China);Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China);Department of Environmental Engineering, Zhejiang University, Hangzhou 310029 (China)
Abstract:Soil dissolved phosphorus (P) and colloidal P mobilization could be closely related to the degree of phosphorus saturation (DPS). Effects of a wide range of DPS on the distributions of dissolved P and colloidal P in a paddy soil profile were investigated in this study. Dissolved P and colloidal P in water-dispersible soil colloid suspension increased obviously with increasing DPS. The change point of DPS was at 0.12 by using a split-line model. Above the value, dissolved P (3.1 mg P kg-1) in soil profile would increase sharply and then transfer downward. Compared with dissolved P, colloidal P was the dominant fraction (78%--91%) of P in soil colloid suspension, and positively related to DPS without a significant change point. The high release of colloids in subsoils with low DPS was attributed to the low ionic strength and high pH value in subsoils. The DPS also had a significant and positive correlation with electrical conductivity (EC), but it showed a negative correlation with pH value. However, the concentration of colloidal P was not greatly correlated to the pH value, EC and optical density of the soil colloid suspension. The results indicatd that DPS was an important factor that may affect the accumulation and mobilization of water-extractable colloidal P and dissolved P.
Keywords:inorganic fertilizer   ionic strength   manure   split-line model   water-dispersible soil colloid
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