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在我国南方,天然次生阔叶林转变为杉木人工林是一种常见的管理措施。为研究森林利用方式转变对土壤微生物量的影响,我们在中国科学院会同森林生态实验站比较了天然次生阔叶林、第一代和第二代杉木人工林土壤理化性质和微生物量。杉木人工林土壤有机碳、全氮、铵态氮和微生物量碳氮含量明显低于天然次生阔叶林。第一代、二代杉木人工林土壤微生物量碳仅为天然次生阔叶林的53%和46%,微生物氮为97%和79%。杉木人工林土壤微生物量碳占有机碳的比例也低于天然次生阔叶林土壤,但微生物量氮则相反,为杉木人工林高于天然次生阔叶林。因此可以得出,天然次生阔叶林转变为杉木人工林以及杉木林连栽引起了土壤生物学特性和土壤质量降低。图2表3参36。  相似文献   

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The concentrations and seasonal dynamics of DOC in forest floors of monoculture plantations ofCastanopsis kawakamii and Chinese fir (Cunninghamia lanceolata) were assessed in Sanming, Fujian, China (26°11′30″N, 117°26′00″E). Forest floor samples were taken in January, April, July and October in 2002 and divided into undecomposed material (horizon Oi), partially decomposed organic material (horizon Oe), and fully decomposed organic material (horizon Oa). Upon collection, DOC concentrations of samples were analyzed by a High Temperature TOC. The results showed that the annual average DOC concentration of Chinese fir (1341.7 mg·kg−1) in the forest floor was higher than that ofCastanopsis kawakamii (1178.9 mg·kg−1). Difference in DOC concentrations was observed among three horizons of the forest floor. DOC concentration of forest floor in the two forests was the highest in horizon Oe. Seasonal trends of DOC concentrations in different horizons of forest floors were similar and the maximal value occurred in autumn (or winter). The concentration and temporal change of DOC in studied forests were probably related to the variation in moisture, temperature, biological activity and quantity of organic matter in the forest floor. Foundation item: This study was supported by the Teaching and Research Award program for MOE P.R.C. (TRAPOYT) Biography: ZHANG Jiang-shan (1946-), male, Researcher in Fujian Normal University, Fuzhou 350007, P.R. China. Responsible editor: Zhu Hong  相似文献   

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为揭示不同营林模式对杉木林生物量分配格局的影响,作者以不同林龄的杉木纯林、杉木×马尾松混交林和杉木×枫香混交林为对象,研究了其乔木层生物量分配格局,结果表明:在22年生杉木林下套种马尾松和枫香,经18年培育之后,与40年生杉木纯林相比,林分总生物量无显著差异,但林分净生产力得到一定程度的提高,尤其以林下套种阔叶树种枫香的样地提高更为明显,不同营林模式乔木层生物量的空间分配皆表现为千〉根〉枝〉叶,干器官的生物量在总生物量中占较大比重,并随着林龄的增加而逐渐增加,混交林可有效提高林分地上和地下部分生物量和生产力,改善其生物量分配格局,提高森林对空间的利用率。  相似文献   

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杉木与七种阔叶树混交造林效果的初步研究   总被引:4,自引:1,他引:4  
通过对7种优良乡土阔叶树种与杉木混交林的调查研究,结果表明:杉阔混交林提高了林分蓄积量,促进杉木和阔叶树种成林、成材。混交林中的杉木普遍比杉木纯林生长好,只有杉檫混交林例外。杉木和木兰科观光木、乳源木莲、壳斗科红锥、格氏栲以及樟科的檫树、樟树混交造林,有利于发展珍贵阔叶树种种群规模,具有推广应用前景。处理好种间关系是营造混交林成败的关键。  相似文献   

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IntroductionSoildegradationofsouthernChinesefir(CunnhaamialanceolaIe)pIantationshavebeenCon-tinuaIlyreiorted(ShenWeitongl992;Che11BingI1aol992;FangQil992).lnthenortI1eastforestregionsofChina,larch(LarirohensisandLa)`ixgInelinii)planta-tionsmade7opercentoftheman-madeforests,andthechangesinsoilpropertiesundertI1econiferouspIanta-tionshavealsodrawnmuchattentionofmanyforesters.OurobjectivewastoexaminethedifferenceinsoilnitrogenstatusbetweenLarchp1antatiol1sandsecon-darybroad-Ieavedforests(…  相似文献   

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通过收集杉木林林下植被生物量数据,分析杉木林林下植被生物量与年平均温度、年降水量、林分年龄、林分密度、乔木层生物量、灌木层生物量、草本层生物量、枯枝落叶层现存量等8个因子的相关关系。结果表明,林下植被生物量与林龄、乔木层生物量、灌木层生物量、草本层生物量、枯枝落叶层现存量呈显著正相关,其中以与草本层生物量相关性最大,与林分密度呈负相关,而与年均温、年降水量无显著相关。多元线性回归分析表明,林龄、林分密度、草本生物量可解释枯枝落叶现存量变化的90.6%。  相似文献   

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土壤活性有机质对土壤养分如氮、磷、硫的生物化学循环具有作用,其含量和质量影响土壤的初级生产力。本试验在中国科学院会同森林生态实验站通过对第一代、第二代杉木纯林和地带性阔叶林土壤活性有机质组分的对比研究,发现杉木纯林土壤活性有机质的含量低于地带性阔叶林。第一代杉木纯林易氧化有机碳、微生物生物量碳、水溶性有机碳和水溶性碳水化合物的含量分别比第二代杉木纯林高35.9%、13.7%、87.8%和50.9%,比地带性阔叶林的低15.8%、47.3%、38.1%和30.2%。在调查的三种林地内,土壤微生物生物量碳和水溶性有机碳含量下降幅度较大,其次为水溶性碳水化合物,而易氧化有机碳的变化最小。同时,杉木纯林土壤养分等理化性质也比地带性阔叶林低。这表明在杉木纯林取代地带性阔叶林以及杉木纯林连栽后林地的土壤肥力降低。图3 表2参26。  相似文献   

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福建柏与萌芽杉木混交林经营效果的调查研究   总被引:1,自引:3,他引:1  
安溪半林林场在杉木迹地上营造福建柏,并选留杉木萌芽条形成福建柏杉木混交林,不论混交林经营密度大小,福建柏生长均比纯林好。大、中密度组的福建柏生长比萌芽杉木快,但在小密度组则相反。萌芽杉木在大、中密度条件下,生长不如同龄纯林,在小密度条件下的平均树高、胸径是纯林的140.2%和148.2%。说明福建柏与萌芽杉木混交培育方式是成功的,但到15年生以后,经营密度以1 500株.hm-2左右,混交比例6∶4为宜。  相似文献   

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通过对湖南省绥宁县堡子岭国有林场4个不同林龄阶段杉木人工林的调查,研究了不同林龄阶段杉木人工林生物量和碳储量的分布特征.结果表明:不同林龄阶段杉木林单株各器官之间存在极显著性差异(P<0.001),杉木林及单株各器官生物量和碳储量随着林龄的增长而增加,树干、树根和树枝在碳累积方面优势较大,成熟林和近熟林的乔木层碳储量较...  相似文献   

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The amount of carbon returned through litterfall and its seasonal pattern were studied in a natural forest of Castanopsis kawakamii (NF) and adjacent monoculture plantations of C. kawakamii (CK) and Chinese fir (Cunninghamia lanceolata) (CF) in Sanming, Fujian Province, China. Mean annual carbon return through total litterfall over 3 years (from 1999 to 2001) was 5.097 t·hm−2 in the NF, 4.337 t·hm−2 in the CK and 2.502 t·hm−2 in the CF respectively. Of the total carbon return in the three forests, leaf contribution accounted for 58.96%, 68.53% and 56.12% and twig 24.41%, 22.34% and 26.18%, respectively. The seasonal patterns of carbon return from total litterfall and leaf-litter were quite similar among the three forests. A peak of carbon input from litterfall in the NF and the CK occurred in spring except for the highest annual C return through branch litter of the NF in summer, while the CF showed the maximum C return in summer. The results of this study demonstrate that the natural forest has a greater C return through litterfall than monoculture plantations, which is beneficial to the increase of soil organic matter storage and the maintenance of soil fertility. [Supported by the Teaching and Research Award Program of MOE P.R.C. (TRAPOYT) and the Key Basic Research Project of Fujian Province (2000F004)]  相似文献   

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To aid in management of Cunninghamia lanceolata,the main timber species in Southern China,its variation of spatial distribution pattern was analyzed.Three permanent plots of C.lanceolata plantations with approximately the same site conditions,set by China continuous forest inventory in Shunchang,Fujian,were selected. C.lanceolata growth was divided into two stages: young trees(5 cm≤diameter at breast height (DBH)<10 cm) and mature trees(DBH≥10 cm). The DBH and coordinates of every tree(DBH≥5 cm) in the permanent plots were recorded in 2003 and 2008.The function L(r),improvement of Ripley’s K(r),the paircorrelation function g(r),and the uniform angle index(W_i) were used to analyze the spatio-temporal variation of spatial distribution patterns.The three permanent plots had mean uniform angle index(W) between 0.494-0.578 at low altitudes,0.465-0.477 at medium altitudes,and 0.426-0.601 at high altitudes.Results showed that altitude did not affect the spatial distribution pattern. The L(r ) and g(r) function curves of mature trees were generally lower than young trees’,i.e.tend to be more random or uniform distribution.So regardless of the initial distribution of young or mature trees,with the passage of time,there was a tendency for the aggregated distribution to change to a random distribution,and a random distribution to change to a uniform distribution.  相似文献   

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