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外源性氮和磷对杉木林凋落叶分解的影响
引用本文:蔡金桓, 佘汉基, 薛立, 郑欣颖. 外源性氮和磷对杉木林凋落叶分解的影响[J]. 西南林业大学学报, 2017, 37(3): 95-100.doi:10.11929/j.issn.2095-1914.2017.03.015
作者姓名:蔡金桓  佘汉基  薛立  郑欣颖
作者单位:华南农业大学林学与风景园林学院,广东 广州 510642
基金项目:
摘要:研究华南地区杉木人工林凋落叶分解对外源性N和P的响应,可为杉木林经营管理的养分管理提供参考。结果表明:施N对凋落叶分解有抑制作用,施P的凋落叶分解速率最快,施N + P也加快凋落叶分解。处理24个月后,施N处理的凋落叶N含量显著大于其初始含量,施P及N + P的N含量显著小于其初始含量; 所有处理的凋落叶P含量显著大于其初始含量; 凋落叶K在分解过程中呈现淋溶—富集—释放模式。
摘    要:研究华南地区杉木人工林凋落叶分解对外源性N和P的响应,可为杉木林经营管理的养分管理提供参考。结果表明:施N对凋落叶分解有抑制作用,施P的凋落叶分解速率最快,施N + P也加快凋落叶分解。处理24个月后,施N处理的凋落叶N含量显著大于其初始含量,施P及N + P的N含量显著小于其初始含量; 所有处理的凋落叶P含量显著大于其初始含量; 凋落叶K在分解过程中呈现淋溶—富集—释放模式。

关 键 词:杉木   人工林   凋落叶   分解速率   N   P   养分释放
收稿时间:2016-12-01

Effect of N and P Additions on Decomposition of Leaf Litter in a Cunninghamia lanceolata Plantation
Jinhuan Cai, Hanji She, Li Xue and Xinying Zheng. Effect of N and P Additions on Decomposition of Leaf Litter in a Cunninghamia lanceolata Plantation[J]. Journal of Southwest Forestry University, 2017, 37(3): 95-100.doi:10.11929/j.issn.2095-1914.2017.03.015
Authors:Jinhuan Cai  Hanji She  Li Xue  Xinying Zheng
Affiliation:College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou Guangdong 510642, China
Abstract:Leaf litter decomposition with N and P additions were studied in a Cunninghamia lanceolata plantation in South China, it could provided reference for nutrient management of C.lanceolata plantation management. The finding indicated that decomposition rate of leaf litter of C.lanceolata was postponed by N addition, that with P addition was the fastest among all treatments and N + P addition treatment also accelerated leaf litter decomposition. Twenty-four months after the decomposition, the N content of leaf litter with N addition greater than its initial N content, whereas that with P and N + P additions was significantly smaller than their initial N content. The P content of leaf litter in all treatments was significantly greater than their initial P content. The K content of leaf litter displayed a pattern of leaching-enrichment-release.
Keywords:Cunninghamia lanceolata  plantation  leaf litter  decomposition rate  N  P  nutrient content release
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