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中国云南省滇池盆地东南区由于土地利用方式的变化(从水田变为旱地或温室土壤)导致土壤理化性质的变化研究
作者姓名:N. MORITSUKA  T. NISHIKAWA  S. YAMAMOTO  N. MATSUI  H. INOUE  LI Kun-Zhi  T. INAMURA
作者单位:Laboratory of Plant Production Systems,Graduate School of Agriculture,Kyoto University;Kagoshima University;KANSO Technos;Kunming University of Science and Technology
基金项目:Supported by the JSPS KAKENHI,Japan(No.21255007)
摘    要:Paddy fields in the southeastern basin of Dianchi Lake have rapidly changed to greenhouses since 1999. A total of 61 surface soil samples, including 43 greenhouse soils, 12 upland soils, and 6 paddy soils, were collected from a flat lowland area mainly used for agricultural production fields in the southeastern basin of Dianchi Lake. Analyses of the soil samples indicated that the greenhouse soils were characterized by a lower organic matter content, lower pH, and higher soluble nutrients than the paddy soils in the area. The lower organic matter content of the greenhouse soils was ascribed to environmental or management factors rather than the clay content of the soil. Accumulation of soluble nutrients, especially inorganic N, was due to over-application of fertilizers, which also caused soil acidification. The average amount of readily available N, P, and K accumulated in the greenhouse soils was estimated to be equal to or higher than the annual input of these nutrients as a fertilizer, indicating that a reduction in fertilizer application was possible and recommended. In contrast, a very low available Si content was observed in the paddy soils, suggesting the need for Si application for rice production.

关 键 词:available  Si  greenhouse  soils  inorganic  N  phosphorus  salinization
收稿时间:5 April 2012

Changes in soil physicochemical properties following land use change from paddy fields to greenhouse and upland fields in the southeastern basin of Dianchi Lake, Yunnan Province, China
N. MORITSUKA,T. NISHIKAWA,S. YAMAMOTO,N. MATSUI,H. INOUE,LI Kun-Zhi,T. INAMURA.Changes in soil physicochemical properties following land use change from paddy fields to greenhouse and upland fields in the southeastern basin of Dianchi Lake, Yunnan Province, China[J].Pedosphere,2013,23(2):169-176.
Authors:N MORITSUKA  T NISHIKAWA  S YAMAMOTO  N MATSUI  H INOUE  LI Kun-Zhi and T INAMURA
Institution:Laboratory of Plant Production Systems, Graduate School of Agriculture, Kyoto University, Sakyo, Kyoto 606-8502 (Japan);Laboratory of Plant Production Systems, Graduate School of Agriculture, Kyoto University, Sakyo, Kyoto 606-8502 (Japan);Kagoshima University, Korimoto, Kagoshima 890-8580 (Japan);KANSO Technos, Chuo-ku, Osaka 541-0052 (Japan);Laboratory of Plant Production Systems, Graduate School of Agriculture, Kyoto University, Sakyo, Kyoto 606-8502 (Japan);Kunming University of Science and Technology, Yunnan 650024 (China);Laboratory of Plant Production Systems, Graduate School of Agriculture, Kyoto University, Sakyo, Kyoto 606-8502 (Japan)
Abstract:Paddy fields in the southeastern basin of Dianchi Lake have rapidly changed to greenhouses since 1999. A total of 61 surface soil samples, including 43 greenhouse soils, 12 upland soils, and 6 paddy soils, were collected from a flat lowland area mainly used for agricultural production fields in the southeastern basin of Dianchi Lake. Analyses of the soil samples indicated that the greenhouse soils were characterized by a lower organic matter content, lower pH, and higher soluble nutrients than the paddy soils in the area. The lower organic matter content of the greenhouse soils was ascribed to environmental or management factors rather than the clay content of the soil. Accumulation of soluble nutrients, especially inorganic N, was due to over-application of fertilizers, which also caused soil acidification. The average amount of readily available N, P, and K accumulated in the greenhouse soils was estimated to be equal to or higher than the annual input of these nutrients as a fertilizer, indicating that a reduction in fertilizer application was possible and recommended. In contrast, a very low available Si content was observed in the paddy soils, suggesting the need for Si application for rice production.
Keywords:available Si  greenhouse soils  inorganic N  phosphorus  salinization
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