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成土作用及人为活动对水耕人为土钙镁行为的影响
引用本文:JIANG Yong,ZHANG Yu-Ge,LIANG Wen-Ju,LI Qi. 成土作用及人为活动对水耕人为土钙镁行为的影响[J]. 土壤圈, 2005, 15(3): 341-346
作者姓名:JIANG Yong  ZHANG Yu-Ge  LIANG Wen-Ju  LI Qi
作者单位:[1]InstituteofAppliedEcology,ChineseAcademyofSciences,Shenyang110016(China) [2]CollegeofLandandEnvironment,ShenyangAgriculturalUniversity,Shenyang110161(China) [3]InstituteofAppliedEcology,ChineseAcademyofSciences,Shenyang110016(China)//CollegeofLandandEnvironment,ShenyangAgriculturalUniversity,Shenyang110161(China)
基金项目:*1Project supported by the Knowledge Innovation Program of Chinese Academy of Sciences (No.KZCX2-413-9) and the National High Technology Research and Development Program of China (No.2004AA246020).
摘    要:The formation of Stagnic Anthrosols is closely related to rice planting and parent materials. Six representative pedons,two from each of three Stagnic Anthrosol subgroups, Vertic Haplic-, Vertic Gleyic-, and Sulfic Gleyic-Stagnic Anthrosols,from different parent materials and soil formation processes, from Liaoning Province, China, were selected and used along with additional supporting data to assess the potential impact in each soil subgroup combination of both pedogenic and anthropogenic factors on the migration and geochemical characteristics of calcium (Ca) and magnesium (Mg) and their relations to soil particle-size composition. Results revealed that exchangeable Mg was correlated positively with clay and silt content, but negatively with sand content, suggesting that clay and silt could retain more exchangeable Mg than sand. Also, in the six pedons exchangeable Ca/Mg ratios generally decreased with depth, which was most likely due to the preferential retention of Mg below the Apl horizon and the effects of bio-cycling in rice-soil systems. The pedons with high pH had smaller exchangeable Ca/Mg ratios than those with low pH. Thus, it was concluded that exchangeable Ca/Mg ratios could be helpful in classification of Stagnic Anthrosols.

关 键 词:钙 镁 土壤地理学 人为影响 水生生物

Pedogenic and anthropogenic influence on calcium and magnesium behaviors in stagnic anthrosols
JIANG Yong,ZHANG Yu-Ge,LIANG Wen-Ju and LI Qi. Pedogenic and anthropogenic influence on calcium and magnesium behaviors in stagnic anthrosols[J]. Pedosphere, 2005, 15(3): 341-346
Authors:JIANG Yong  ZHANG Yu-Ge  LIANG Wen-Ju  LI Qi
Affiliation:Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016 (China). Email: jiangyong@iae.ac.cn;College of Land and Environment, Shenyang Agricultural University, Shenyang 110161 (China);Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016 (China). Email: jiangyong@iae.ac.cn;Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016 (China). Email: jiangyong@iae.ac.cn
Abstract:The formation of Stagnic Anthrosols is closely related to rice planting and parent materials. Six representative pedons,two from each of three Stagnic Anthrosol subgroups, Vertic Haplic-, Vertic Gleyic-, and Sulfic Gleyic-Stagnic Anthrosols,from different parent materials and soil formation processes, from Liaoning Province, China, were selected and used along with additional supporting data to assess the potential impact in each soil subgroup combination of both pedogenic and anthropogenic factors on the migration and geochemical characteristics of calcium (Ca) and magnesium (Mg) and their relations to soil particle-size composition. Results revealed that exchangeable Mg was correlated positively with clay and silt content, but negatively with sand content, suggesting that clay and silt could retain more exchangeable Mg than sand. Also, in the six pedons exchangeable Ca/Mg ratios generally decreased with depth, which was most likely due to the preferential retention of Mg below the Apl horizon and the effects of bio-cycling in rice-soil systems. The pedons with high pH had smaller exchangeable Ca/Mg ratios than those with low pH. Thus, it was concluded that exchangeable Ca/Mg ratios could be helpful in classification of Stagnic Anthrosols.
Keywords:anthropogenesis   calcium   magnesium   pedogenesis   Stagnic Anthrosols
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