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不同栽培模式对油茶幼林土壤肥力的影响
引用本文:白玉娜,陈辉,杨志坚,冯金玲,陈世品,林文俊. 不同栽培模式对油茶幼林土壤肥力的影响[J]. 福建林学院学报, 2017, 37(1). DOI: 10.13324/j.cnki.jfcf.2017.01.011
作者姓名:白玉娜  陈辉  杨志坚  冯金玲  陈世品  林文俊
作者单位:1. 福建农林大学经济林研究所,福建 福州350002; 信阳学院理工学院,河南 信阳464000;2. 福建农林大学经济林研究所,福建 福州,350002
基金项目:福建省科技重大专项,高等学校博士学科点专项科研基金,国家科技支撑计划课题(2014BAD15B01)。
摘    要:为筛选出在生产上具有推广意义的油茶幼林经营模式,通过对油茶幼林套种豇豆、黄豆、绿豆、花生、圆叶决明和羽叶决明6种豆科作物,探讨种植豆科作物对油茶幼林不同深度土壤肥力的影响,并运用灰色关联分析法对不同栽培模式下的土壤理化性质进行相关分析。结果表明,油茶幼林套种豆科作物可有效降低不同深度土层的土壤容重,提高土壤总孔隙度、排水能力和最大持水量,同时不同深度土层有机质、全氮、全钾、全磷、速效氮、速效钾、速效磷的含量均有不同程度提高,其中速效氮含量提高12.18%~32.96%,速效钾含量提高6.58%~56.58%,速效磷含量提高1.95%~78.12%。综合考虑,油茶+圆叶决明模式对改善土壤物理特性和土壤养分的效果最好,其次是油茶+豇豆模式和油茶+羽叶决明模式。

关 键 词:生态栽培  油茶幼林  豆科作物  土壤理化性质

Effects of different cultivation models on soil fertility in young Camellia forest
BAI Yuna,CHEN Hui,YANG Zhijian,FENG Jinling,CHEN Shipin,LIN Wenjun. Effects of different cultivation models on soil fertility in young Camellia forest[J]. Journal of Fujian College of Forestry, 2017, 37(1). DOI: 10.13324/j.cnki.jfcf.2017.01.011
Authors:BAI Yuna  CHEN Hui  YANG Zhijian  FENG Jinling  CHEN Shipin  LIN Wenjun
Abstract:In order to screen out the Camellia forest management models to promote yield, soil fertility at different depths layer were explored in the young Camellia forest interplanting with Vigna sesquipedalis, Glycine max ( Linn.) Merr., Vigna radiata ( Linn.) Wilczek, Arachis hypogaea Linn., Cassia rotundifolia Pers and Chamaecrista nictitans, and the grey relationgal analysis was used to analyze the effects of interplanting models on soil physical and chemical properties. The results showed that the young Camellia forest interplanting with leguminous plants can reduce soil bulk density at different depths layer, improve soil total porosity, drainage capacity and maximum moisture capacity, content of organic matter, total N, total K, total P, available N, available K and available P in different depths layer were improved in different level, and available N content increased by 12. 18%~32. 96%, available K content increased by 6. 85%~56. 58%, available P content increased by 1. 95%~78. 12%. Among them, Camellia+Cassia rotundifolia Pers is the best model to improve soil physical properties and soil nutrient effect, and followed by the model of Camellia+Vigna sesquipedalis or Chamaecrista nictitans.
Keywords:ecological cultivation  young Camellia forest  legume crops  soil physical and chemical properties
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