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集约化蔬菜地土壤磷素累积特征及流失风险
引用本文:高秀美,汪吉东,刘兆普,张永春,赵耕毛,许仙菊,宁运旺.集约化蔬菜地土壤磷素累积特征及流失风险[J].生态与农村环境学报,2010,26(1).
作者姓名:高秀美  汪吉东  刘兆普  张永春  赵耕毛  许仙菊  宁运旺
作者单位:1. 南京农业大学资源与环境科学学院,江苏,南京,210095
2. 江苏省农业科学院农业资源与环境研究所,江苏,南京,210014
基金项目:“十一五”国家科技支撑计划(2006BAD05B08-03,2008BADA4B03-3);;IPNI项目(Jiangsu-10)
摘    要:以南京市郊集约化蔬菜长期种植基地为对象,采集蔬菜种植年限分别为3~5、15~20、25~30 a的土壤,测定土壤全磷(TP)、速效磷(Olsen-P)、水溶性磷(CaCl2-P)、生物有效磷(NaOH-P)的含量,并对0—20 cm土层磷素吸附特性进行分析,通过研究土壤磷吸附饱和度(DPS)、最大缓冲容量(MBC)来对土壤磷素流失风险进行评估。结果表明,在0—20 cm土层,除NaOH-P外,其余各形态磷(TP、Olsen-P、CaCl2-P)都随种植年限延长呈增加趋势。不同种植年限土壤TP、Olsen-P、CaCl2-P、NaOH-P主要积累在0—20 cm土层,且随着土层深度的增加土壤磷的累积量逐渐降低。DPS随种植年限延长而升高,种植年限25~30 a的菜地0—5 cm土层DPS超过土壤磷素流失环境敏感指标临界值(25%),其MBC也最低,表明随着蔬菜种植年限的延长土壤磷素流失风险加剧,且流失风险主要体现在0—5 cm土层。

关 键 词:集约化蔬菜地  磷吸附饱和度  最大缓冲容量  流失风险  

Accumulation and Leaching Risk of Phosphorus in Vegetable Soils Under Intensive Cultivation
GAO Xiu-mei,WANG Ji-dong,LIU Zhao-pu,ZHANG Yong-chun,ZHAO Geng-mao,XU Xian-ju,NING Yun-wang.Accumulation and Leaching Risk of Phosphorus in Vegetable Soils Under Intensive Cultivation[J].Journal of Ecology and Rural Environment,2010,26(1).
Authors:GAO Xiu-mei  WANG Ji-dong  LIU Zhao-pu  ZHANG Yong-chun  ZHAO Geng-mao  XU Xian-ju  NING Yun-wang
Institution:1.College of Resources and Environmental Sciences/a>;Nanjing Agricultural University/a>;Nanjing 210095/a>;China/a>;2.Institute of Agricultural Resource and Environmental Sciences/a>;Jiangsu Academy of Agricultural Science/a>;Nanjing 210014/a>;China
Abstract:In order to study accumulation and leaching risk of soil phosphorus,soil samples were collected from vegetable fields,different in intensive vegetable cultivation history(3-5,15-20 and 25-30 years) in the suburbs of Nanjing for assay of concentrations of total phosphorus(TP),available phosphorus(Olsen-P),dissolved reactive phosphorus(CaCl2-P) and bio-available phosphorus(NaOH-P),and P adsorption in 0-20 cm soil layer,and for assessment of soil phosphate leaching risk through determination of degree of phosp...
Keywords:vegetable soil  phosphorus adsorption  degree of phosphorus saturation  maximum buffering capacity  leaching risk  
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