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作 者:余明泉[1,2] 袁平成[1] 陈伏生[3] 胡小飞[3] 杜天真[1]
机构地区:[1]江西农业大学园林与艺术学院,南昌330045 [2]江西科技师范学院生物系,南昌330038 [3]南昌大学生命科学学院,南昌330031
出 处:《应用生态学报》2009年第3期531-536,共6页Chinese Journal of Applied Ecology
基 金:国家自然科学基金项目(30600473);江西省自然科学基金项目(2007GQN1935);江西省教育厅科技项目(GJJ08055,GJJ08373)资助
摘 要:以位于南昌市城乡梯度(城区、郊区和乡村)的湿地松人工林为研究对象,采用离子交换树脂袋法,估测城乡梯度森林土壤有效氮的季节动态,分析城市化对土壤供氮能力的影响.结果表明:湿地松人工林土壤有效氮的供应存在明显的季节波动,其中秋、冬季铵态氮高于春、夏季,而春、夏季硝态氮、矿质氮和相对硝化速率高于秋、冬季(P<0.05);有效氮供应的季节动态与湿地松的生长节律(即需氮过程)基本吻合.城乡梯度不同位置森林土壤有效氮及其各组分与相对硝化速率的差异明显,城区均显著高于乡村(P<0.05);城市化会加快森林土壤的矿化和硝化过程,增强土壤的供氮能力,提高土壤中硝态氮含量.建议在城市森林建设中应配置需氮能力强,特别是对硝态氮吸收偏好的地被植物,减缓城市森林中有效氮的流失及其引发的环境污染.With the Pinus elliottii plantations along an urban-rural gradient in Nanchang City as test objectives, and by using ion-exchange resin (IER) bag, this paper studied the seasonal dynamics of soil available nitrogen in the plantations, and analyzed the effects of urbanization on soil nitrogen supply. The results showed that the soil nitrogen supply in the plantations had an obvious seasonal fluctuation. Soil NH4^+ -N concentration was significantly higher in autumn and winter than in spring and summer, while soil NO3^- -N concentration, mineral N concentration, and relative nitrification rate were in adverse ( P 〈 0. 05 ). The seasonal dynamics of soil available nitrogen was basically consistent with the growth rhythm of P. elliottii. The soil nitrogen availability and relative nitrification ratio along the gradient differed greatly, being significantly higher in urban than in rural area ( P 〈 0. 05 ). Urbanization accelerated soil N mineralization and nitrification, enhanced soil nitrogen supply capacity, and increased soil NO3^- -N content. It was suggested that in the construction of urban forest, the plants with high N demand, especially with high NO3^- - N absorption capacity, should be introduced to mitigate the soil available N loss and its induced environmental pollution.
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