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毛竹林凋落叶分解失重及养分累积归还模式     被引量:29

Patterns of Mass loss,Nutrient Accumulation and Release of Leaf Litter in the Moso( Phyllostachys pubescens ) Stands

文献类型:期刊文献

中文题名:毛竹林凋落叶分解失重及养分累积归还模式

英文题名:Patterns of Mass loss,Nutrient Accumulation and Release of Leaf Litter in the Moso( Phyllostachys pubescens ) Stands

作者:曹群根[1,2] 傅懋毅[1,2] 李正才[1,2]

第一作者:曹群根

机构:[1]中国林业科学研究院亚热带林业研究所;[2]南京林业大学森林资源与环境学院

年份:1997

卷号:10

期号:3

起止页码:303-308

中文期刊名:林业科学研究

外文期刊名:ROREST RESEARCH

收录:CSTPCD;;Scopus;北大核心:【北大核心1996】;CSCD:【CSCD2011_2012】;

基金:浙江省自然科学基金

语种:中文

中文关键词:毛竹林;凋落叶分解;林分结构;养分积累

外文关键词:Moso stands leaf litter decomposition stand structure nutrient accumulation pattern

分类号:S795.720.2

摘要:经过104周对2个试验点上包括3种立竹度和2种林分组成共5种处理条件下的毛竹林凋落叶的分解过程研究,结果表明:分解初期失重迅速,而后趋于缓慢。分解剩余率与分解时间之间存在着指数函数关系。林分立竹度和组成对竹林凋落叶分解速度有着显著影响,竹栎混交林及立竹度为3015株/hm2纯竹林处理下,凋落叶的分解速度分别高于纯竹林的其它2种立竹度处理。剩余物中的N、P的浓度随分解呈增加趋势,两者变化模式相似,而K、Ca、Mg的浓度则趋于减小。处理对N、K、Mg的浓度变化模式无显著影响。分解剩余物中各种养分浓度之间有着一定的关联。N、P在凋落叶分解初期为累积阶段,而后才释放归还,K、Ca、Mg在整个分解过程中均为释放。分解失重决定着分解后期N、P养分的释放归还;而对于K、Ca来说。
Decomposition of leaf litter originating from Moso bamboo stands in five stand structure treatments with different stand density and different species component was measured at two trial sites over 104 weeks during 1993 to 1995.The mass loss rate can be expressed as the exponential function of decomposing time.The trial treatments have marked influences on the mass loss rate,which was higher in bamboo oak mixed stands and in pure bamboo stands of density 3 015 culms·ha -1 than in bamboo stands with other treatments.Patterns of N concentration change in decomposing leaf litter is very similar to that of P.They both increased during the whole decomposing process,by contraries,concentration of K、Ca and Mg decreased.No obvious effect of the different treatments was gotten on the dynamics of concentration of N、K and Mg.N was initially accumulated and lately released,while K、Ca and Mg were released from the decomposing leaf litter during the whole observation period.The release of N and P during the late stage was mainly caused by mass loss,but to K and Ca release,leaching is more important than mass loss,especially in the early stage of the decomposition.

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