首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 218 毫秒
1.
杉木多代连栽后土壤肥力变化   总被引:23,自引:1,他引:23  
通过选择邻近分布、母岩一致,树龄相近且为近成熟林等可比较强的一代、二代、三代杉木林标准地,研究杂木林及不同栽杉代数木林土壤水分物理性质、土壤养分和腐殖质及土壤生化活性的差异,并采用诚分分析(PCA)法对不同林分类型土壤肥力进行排序。结果显示,表层土壤(0-20cm)肥力以杂木林提高,其次为一代杉木林的,二代和三代杉木林的则最差;底层土壤(20-40cm)肥力以杂木林最高,一代、二代和三代杉木林的均较差,建议降低人为干扰频率和强度及改善林分群落结构来提高杉木人工林土壤肥力,从而实现杉木林的可持续经营。  相似文献   

2.
晋西黄土区典型林分枯落物层水文生态特性研究   总被引:2,自引:1,他引:2  
选择山杨栎类次生林(以下简称次生林)、刺槐林、侧柏林、油松林为研究对象,通过样地调查,结合室内浸泡方法,对比分析枯落物(未分解层、半分解层)的水文特征指标,研究典型林分枯落物层水文生态特性。结果表明:(1)枯落物厚度为3.93~4.95 cm,刺槐林最大,油松林最小;蓄积量为次生林最大(19.28 t/hm2),侧柏林(18.03 t/hm2)和刺槐林(17.57 t/hm2)次之,油松林最小(14.73 t/hm2),未分解层蓄积量小于半分解层。(2)枯落物最大持水量(率)为30.92~61.31 t/hm2(197%~320%),次生林最大,依次为刺槐林、侧柏林,最小为油松林。(3)枯落物有效拦蓄存在显著差异(P>0.05),表现为次生林(31.29 t/hm2) > 刺槐(22.20 t/hm2) > 侧柏(18.19 t/hm2) > 油松(13.94 t/hm2),有效拦蓄率为107%~173%。(4)在浸水2 h内,枯落物持水量和吸水速率变化以次生林与刺槐林最为迅速,半分解层较未分解层变化迅速;持水过程中,两者与时间分别呈对数函数(R2>0.89)和幂函数关系(R2>0.99)。在4种林地中,次生林林下枯落物水文生态潜力最优,油松纯林最差,表现为次生林 > 刺槐 > 侧柏 > 油松。刺槐是除次生林外的3种人工林中最优林种。建议研究区内合理优化恢复树种配置,以提高水文生态功能。  相似文献   

3.
[目的] 研究裸露砒砂区天然降雨条件下不同类型人工林地的侵蚀特征,为裸露砒砂区植被建设和减轻泥沙入黄提供科学指导。[方法] 以裸露砒砂岩区广泛栽植的油松人工林、山杏人工林、沙棘人工林和柠条人工林以及草地和裸地为研究对象,采用径流小区监测的手段,对各类型样地的年内天然降雨以及土壤侵蚀量进行监测。[结果] ①依据研究的年内降雨数据,裸露砒砂岩区长历时的暴雨和中到大雨的情况下,瞬时雨量呈现双峰趋势,累积降雨量呈梯式增长规律;短历时的暴雨和小到中雨的瞬时雨量呈单峰趋势,累积降雨量分别呈S形和线性增长趋势; ②裸露基岩坡面侵蚀较为严重,总产流量达28.48 L,总土壤侵蚀量达31.85 t/(hm2·a),有植被的坡面总产流量在9.8~18.41 L之间,总土壤侵蚀量在1.67~10.14 t/(hm2·a)之间。各类型人工林地的产流量随着降雨类型的变化并无统一规律;但土壤侵蚀量均呈现:裸地>草地>柠条林>山杏林>油松林>沙棘林的规律。油松林和沙棘林地的产流量和土壤侵蚀量均呈极显著相关关系,相关系数分别0.929,0.893;各类型样地的平均雨强和I30均与土壤侵蚀量呈显著相关关系,相关系数高于0.595。③各类型人工林地降雨量分别与径流量、土壤侵蚀量呈多元线性(R2>0.771)的关系。降雨产流模型的Nse值高于0.62,除柠条人工林外降雨产沙模型的Nse值高于0.57,表明模型精度相对较高。[结论] 在裸露砒砂岩区侵蚀性降雨条件下,人工林地降雨、产流与产沙均存在一定的函数关系且人工林地的侵蚀量小于裸露坡面的侵蚀量。  相似文献   

4.
沟头发生侵蚀的地形临界模型可有效预测侵蚀沟的形成条件,浅层滑坡失稳形成的洼地也是沟头形成的方式之一。为探究浅层滑坡临界起动模型的特点,以甘肃省天水市小陇山林区的降雨型浅层滑坡为研究对象,运用汇水面积-坡度关系,构建临界起动模型,与黄土高原典型侵蚀沟(浅沟、切沟)的临界起动模型进行对比分析,并探讨土地利用类型、植被类型和土壤质地对该模型的影响。结果表明:(1)浅层滑坡临界起动模型为S=3.50As-0.34,其侵蚀阈值为3.50,大于黄土高原典型浅沟(0.96)和切沟(1.54)的侵蚀阈值。研究区浅层滑坡一般发生于土层较薄的陡坡地带,其平均坡度(S=1.26)大于浅沟(S=0.35)与切沟(S=0.46),单位汇水面积(A=89.08 m2/m)小于浅沟(A=920.93 m2/m)和切沟(A=1 129.82 m2/m)。(2)汇水面积与坡度平方的乘积(AS2)代表了沟头产生侵蚀的能量指标值。研究区浅层滑坡AS2值在269.1~5 703.2 m2,平均值为1 772.97 m2,黄土高原浅沟AS2值在4.74~892.66 m2,切沟在41~814 m2,启动能量值方面,浅沟<切沟<浅层滑坡。(3)土地利用类型、植被类型和土壤质地通过影响土壤的抗冲力、渗透性和黏粒含量,从而对浅层滑坡的起动难易程度产生影响。在不同的土地利用方式中,农地最易发生侵蚀,其次是林地。油松林附近浅层滑坡的抗侵蚀能力高于日本落叶松林。研究结果为探究浅层滑坡的起动条件提供理论依据。  相似文献   

5.
杉木根际土壤微生物和酶活性初探   总被引:7,自引:0,他引:7       下载免费PDF全文
蒋秋怡  叶仲节  钱新标  姜培坤 《土壤》1993,25(5):271-273
植物根际环境的研究中,对林木根际的研究较少,近年来,南方连栽杉木林地地力衰退,杉木生长不良现象日趋普遍,引起林业界的极大关注[1]。  相似文献   

6.
[目的] 揭示土壤理化特性与细菌丰度之间的内在关系,为红壤侵蚀区马尾松林水土流失分区精准治理提供参考。[方法] 以福建省长汀县红壤侵蚀区马尾松林为研究对象,选择侏罗系中统漳平组中段(J2Z2)、侏罗系中统漳平组下段(J2Z1)、侏罗纪燕山期早期侵入岩(γ52(3) c)、第四系全新统(Qh)4种地层背景,分析测定不同地层背景马尾松林土壤理化特性和细菌群落组成及多样性。[结果] 不同地层背景马尾松林土壤理化指标整体表现为:J2Z1J2Z2Qhγ52(3) c;土壤养分含量各地层背景各有丰缺,J2Z1地层背景土壤有机质含量大于其他地层,Qh地层背景氮含量大于其他地层,而γ52(3) c地层背景磷和钾含量较高;4种地层背景土壤细菌差异操作分类单元(OTU)数目表现为:QhJ2Z2J2Z1γ52(3) c,分别占总OTU数目的21.62%,18.29%,16.79%,12.08%;细菌群落多样性表现为:J2Z2Qhγ52(3) cJ2Z1;J2Z1地层和Qh地层土壤细菌多样性与土壤含水率和土壤pH值正相关,J2Z2地层与土壤容重以及全磷含量正相关,γ52(3) c地层与土壤钾含量和速效氮含量正相关。[结论] 红壤侵蚀区不同地层背景马尾松林土壤理化特性存在一定差异,在植被恢复过程中应考虑地层背景因素进行分区治理,细菌对不同地层背景土壤性质具有一定指示作用。  相似文献   

7.
生物质炭在温室气体减排方面具有很大的发展前景,它不仅能实现固碳,对于在大气中停留时间长且增温潜势大的N2O也能发挥积极作用。本研究采用室内厌氧培养试验,按照生物质炭与土壤质量比(0、1%和5%)加入一定量生物质炭,土壤重量含水率控制在20%。利用Robotized Incubation平台实时检测N2O和N2浓度变化,通过测定土壤中反硝化功能基因丰度(nirKnirSnosZ)分析生物质炭对N2O消耗的影响及其微生物方面的影响机理。结果表明:经过20 h厌氧培养后,0生物质炭处理的反硝化功能基因丰度(基因拷贝数·g-1)分别为6.80×107nirK)、5.59×108nirS)和1.22×108nosZ)。与0生物质炭处理相比,1%生物质炭处理的nirS基因丰度由最初的2.65×108基因拷贝数·g-1升至7.43×108基因拷贝数·g-1,nosZ基因丰度则提高了一个数量级,由4.82×107基因拷贝数·g-1升至1.50×108基因拷贝数·g-1,然而nirK基因丰度并无明显变化;5%生物质炭处理的反硝化功能基因丰度并未发生显著变化。试验结束时,添加生物质炭处理的N2/(N2O+N2)比值也明显高于0生物质炭处理。相关性分析结果表明,nirS基因丰度和nosZ基因丰度均与N2O浓度在0.01水平上显著相关。试验末期nirS基因丰度和nosZ基因丰度均随着N2O浓度的降低而升高。因此在本试验中,添加1%生物质炭可显著提高nirSnosZ基因型反硝化细菌的丰度,增大N2/(N2O+N2)比值,促进N2O彻底还原成N2。生物质炭对于N2O主要影响机理是增大了可以还原氧化亚氮的细菌活性,促进完全反硝化。  相似文献   

8.
江西省低山区杉林土壤障碍性条件的判别分析   总被引:3,自引:0,他引:3  
罗汝英 《土壤学报》1980,17(2):145-155
随着杉木(cunninghamia lanceolata)人工林面积的不断扩大,近年来在我国南方若干地区出现了所谓杉木黄化病,表现为杉木生长衰退,枝叶自下而上逐渐枯黄,以至最后整株枯死,与此同时,它的根系发育不良并且逐渐腐烂。发病的林分在林区内呈块状、带状或成片分布。  相似文献   

9.
江西大岗山三种主要植被类型枯落物水文性能研究   总被引:3,自引:0,他引:3  
对江西大岗山林区常绿阔叶林、毛竹林和杉木林枯落物的水文性能进行研究,结果表明:(1)常绿阔叶林、毛竹林和杉木人工林枯落物现存量分别为474.18,516.92和598.30t/km2。(2)三者枯落物的持水量分别为吸水后10 h,20h和20h达到饱和稳定状态。(3)常绿阔叶林、毛竹林和杉木人工林枯落物的吸水速率均在0-6h急剧减小。毛竹林枯落物的吸水速率随时间变化最为剧烈,而常绿阔叶林则较为平缓。(4)毛竹林枯落物对降水的有效拦蓄能力最强,水文生态效应显著。  相似文献   

10.
对江西大岗山林区常绿阔叶林、杉木人工林和毛竹林土壤的容重、孔隙度、持水量和贮水量等物理性质进行了研究。结果表明:(1)常绿阔叶林、毛竹林和杉木人工林的土壤容重均随深度的增加而增加。在0~80cm的土层中,杉木人工林、常绿阔叶林和毛竹林的土壤容重分别为1.29g/cm^3,1.24g/cm^3和1.20g/cm^3。(2)随土层深度的增加,3种林型土壤的总孔隙度、毛管孔隙度、饱和持水量和毛管持水量均逐渐降低。(3)在0~80cm的土层中,常绿阔叶林的土壤总孔隙度和非毛管孔隙度最大,毛竹林次之;而常绿阔叶林土壤的毛管孔隙度最小,毛竹林最大。(4)在0~80cm的土层中,3种林型土壤的饱和持水量、毛管持水量和非毛管持水量均为毛竹林〉常绿阔叶林〉杉木人工林。在0~80cm的土层中,3种林型土壤的现有贮水量和饱和贮水量均为常绿阔叶林〉杉木人工林〉毛竹林。(5)毛竹林在0~40cm土层中,土壤物理性质明显优于另外两种林分。  相似文献   

11.
人工杉木林地有机物和养分库的退化与调控   总被引:25,自引:3,他引:22  
研究表明,人工杉木林地土壤有机物和养分库严重退化,地表枯枝落叶层中干和各种养分的贮量与阔叶林和混交林比较明显下降,土壤中有机质,全N量和碱解N含量的剖面分布也表现出相同的趋势。传统的炼山造林使杉木林地枯枝落叶和养分库是呈突变形式 经,林份组成单一,凋落物数量和养分含和也是杉木林土壤有机物和归库退化的重要因素。通过改进林木更新方式和改善林份组成很大程度上控制人工林有机物和养分库的退化。  相似文献   

12.
中国杉连作对土壤肥力的影响   总被引:10,自引:0,他引:10  
The changes in soil fertility under continuous plantation of Chinese fir were studied by comparing soil samples from different forest stands:the first and second plantations of Chinese fir,evergreen broad-leaved forests,and clear-cut and burnt Chinese fir land located at Xihou Village,Nanping of Fujian Province.The soils were humic red soil originated from weathered coarse granite of the Presinian system.Soil pH,CEC,base saturation ,exchangeable Ca^2 ,exchangeable Mg^2 and A1-P declined after continuous plantation of Chinese fir.The same trends were also found in the soils under broad-leaved stands and slash burnt lands.The explantation was that not merely the biological nature of the Chinese fir itself but the natural leaching of nutrients,soil erosion and nutrient losses due to clear cutting and slash burning of the preceduing plantation caused the soil deterioration .Only some of main soil nutrients decreased after continuous plantation of Chinese fir,depending on specific silvicultural system,which was different from the conclusions in some other reports which showed that all main nutrients,such as OM,total N,available P and available K decreased,Some neccessary step to make up for the lost base,to apply P fertilizer and to avoid buring on clear cut lands could be taken to prevent soil degradation and yield decline in the system of continuous plantation of Chinese fir.  相似文献   

13.
华蓥市山区典型林分水源涵养功能评价   总被引:2,自引:1,他引:1  
为研究南方丘陵山区典型人工林的生长现状和涵养水源能力,选取华蓥市6种林分作为研究对象,通过测定林下枯落物层和土壤层特征,分析比较不同林地枯落物和土壤的持水能力,对林地水源涵养能力进行评价。结果表明:杉木纯林(近自然经营)枯落物现存蓄积量最大,枯落物持水能力排序为杉木纯林(近自然经营)杉木纯林马尾松—檵木混交林(近自然经营)杉木—响叶杨混交林柏木纯林马尾松—杉木混交林;杉木纯林的土壤层总孔隙度、毛管孔隙度、有效持水量均为最优,分别达到67.67%,60.39%,138.11 t/hm~2;6种林地土壤有效持水量大小顺序为杉木纯林杉木纯林(近自然经营)马尾松—杉木混交林杉木—响叶杨混交林柏木纯林马尾松—檵木混交林(近自然经营);综合枯落物层和土壤层持水能力可知,杉木纯林(近自然经营)的水源涵养能力最强,为309.77 t/hm~2,马尾松—杉木混交林最弱。  相似文献   

14.
杉木取代阔叶林后林下水源涵养功能差异评价   总被引:1,自引:5,他引:1  
为研究杉木人工林取代常绿落叶阔叶混交林后土壤水源涵养能力的变化,采用室内浸水法和环刀法分别研究杉木纯林和常绿落叶阔叶混交林的枯落物与土壤的持水特性。结果表明:(1)枯落物平均蓄积量表现为常绿落叶阔叶混交林(3.42 t/hm^2)>杉木纯林(3.12 t/hm^2),枯落物平均厚度表现为杉木纯林(9.17 cm)>常绿落叶阔叶混交林(5.42 cm)。(2)最大持水量表现为常绿落叶阔叶混交林(6.23 t/hm^2)>杉木纯林(5.57 t/hm^2),最大持水率也表现出相同的规律,即常绿落叶阔叶混交林(184.40%)>杉木纯林(179.50%);有效拦蓄量表现为常绿落叶阔叶混交林(4.48 t/hm^2)>杉木纯林(4.13 t/hm^2),最大拦蓄量表现为常绿落叶阔叶混交林(5.41 t/hm^2)>杉木纯林(4.97 t/hm^2)。(3)枯落物层的吸水量与浸水时间符合对数函数Q=aln(t)+b,而吸水速率与浸水时间符合指数函数V=at^b,常绿落叶阔叶混交林的蓄水能力强于杉木纯林。(4)土壤水分最大吸持贮水量表现为常绿落叶阔叶混交林(43.58 mm)>杉木纯林(41.88 mm),可以看出常绿落叶阔叶混交林内的土壤可以更好地为植被提供良好的水分供其生长;土壤水分最大滞留贮存量表现为常绿落叶阔叶混交林(8.20 mm)<杉木纯林(10.22 mm),即杉木纯林内的土壤具有更好的涵养水源能力。从枯落物最大持水量、有效拦蓄量以及土壤毛管孔隙度、非毛管孔隙度等多个因素的计算综合推断可知,杉木人工林水源涵养能力优于常绿落叶阔叶混交林。  相似文献   

15.
Mineralization of soil organic carbon (C) plays a key role in supplying nutrient elements essential to plant growth. Changes of C mineralization of mixed stands of Chinese fir and Michelia macclurei (a broadleaf tree), pure M. macclurei stands, and pure Chinese fir (Cunninghamia lanceolata) stands established in 1983 after clear‐felling of a first‐generation Chinese fir forest were analyzed in Huitong, Hunan Province, China, and compared with those of a stand of native secondary evergreen broadleaf forest (NBF). The results showed that NBF soil had the greatest C mineralization. Mixture of Chinese fir and M. macclurei had no effect on total soil organic C in comparison with pure Chinese fir plantation, but significantly increased C mineralization from soils was detected in this study. This positive influence on C mineralization could be explained by the increase of soil labile C pools and soil microbial biomass and activity. From the analysis of C mineralization, soil microbial properties, and labile organic C, mixtures of broadleaf and Chinese fir can be considered to be an effective sustainable management model for a Chinese fir plantation. Given strong correlations with microbiological and biochemical characteristics of soils and an easier process of determination, hot water extraction, hot water–extractable C (HWC) could be used as an integrated measure of forest soil quality in mid‐subtropics.  相似文献   

16.
套种是杉木人工林经营的重要措施,磷是南方森林生态系统中主要限制性养分元素之一,但套种模式对土壤磷素的影响尚不明确。以亚热带杉木人工林表层(0-10 cm)土壤为对象,研究套种林(杉阔套种幼林、杉阔套种成熟林)和杉木幼林土壤理化性质和土壤各形态磷含量差异,分析套种对杉木人工林土壤磷含量的影响。结果表明:(1)不同套种林显著改变土壤总磷、土壤总无机磷、土壤总有机磷、土壤微生物生物量磷(MBP)和土壤酸性磷酸酶活性(APA),大小顺序均为杉阔套种成熟林>杉阔套种幼林>杉木幼林。(2)土壤各磷组分中活性磷含量较低,其中NaHCO3-Po在活性组分中占主导;土壤NaOH-Po是中等活性磷的主要组分,杉阔套种成熟林尤为显著;闭蓄态磷(Residual-P)在总磷含量中最高。(3)与杉木幼林相比,杉阔套种成熟林显著增加了树脂提取态磷(Resin-Pi)、碳酸氢钠提取态有机和无机磷(NaHCO3-Pi、NaHCO3-Po)、氢氧化钠提取态有机和无机磷(NaOH-Pi、NaOH-Po)、氢氧化钠残留提取态有机磷(NaOHu.s-Po)、盐酸提取态磷(HCl-Pi)和闭蓄态磷(Residual-P)含量;土壤总无机磷、NaHCO3-Po、HCl-Pi、NaHCO3-Pi、NaOHu.s-Pi和Residual-P对杉阔套种幼林的响应不敏感。(4)除含水率外不同林龄下杉阔套种林土壤磷形态与土壤理化性质(土壤总碳氮、土壤可溶性有机氮、土壤微生物生物量磷、酸性磷酸酶)呈正相关性(P<0.05)。冗余分析表明,土壤磷组分的变化主要受MBP调控,且MBP与有机磷组分(NaOHu.s-Po、NaOH-Po)和HCI-Pi呈显著正相关。总之,套种林的土壤磷素有效性高于杉木幼林,土壤养分状况更佳。  相似文献   

17.
浙江省凤阳山不同林分类型土壤酶活性研究   总被引:1,自引:0,他引:1  
在浙江省凤阳山自然保护区选取海拔相近的6个典型林分类型(常绿阔叶林、针叶林、针阔混交林、杉木林、毛竹林以及柳杉林),在其林下采集土壤样品,分析了脲酶、蔗糖酶、酸性磷酸酶和过氧化氢酶、蛋白酶5种主要土壤酶活性的变化。结果表明,在6个林分类型中,常绿阔叶林土壤脲酶、过氧化氢酶、酸性磷酸酶活性均较高柳杉林分土壤蔗糖酶活性较高而针叶林则表现出土壤蛋白酶活性最高杉木林则表现出土壤脲酶、蔗糖酶活性较低土壤酶活性具有明显的垂直分层分布,土层越深,土壤酶活性越低同时该地区土壤酶活性与土壤理化性质指标相关性较高,尤其是pH值和有机质含量与土壤酶活性关系最为密切。  相似文献   

18.
不同森林植被下土壤有机碳的分解特征及碳库研究   总被引:30,自引:7,他引:30  
分析了不同森林植被和同一植被不同林龄的人工杉木林下土壤有机碳的分解特征及土壤有机碳中的活性碳库、缓效性碳库和惰效性碳库的大小和周转时间。结果表明:不同森林植被下土壤有机碳的分解速率不同,总的趋势都是:培养前期分解速度快,后期分解速度慢,土壤剖面A层>剖面B层。在剖面A层中:不同森林植被下分解速率的大小顺序为常绿阔叶林>人工杉木林,不同林龄的人工杉木林为成熟林>中龄林>幼龄林;在剖面B层中:分解速率差异不大。不同森林植被下不同土壤剖面上的土壤活性碳库、缓效性碳库和惰效性碳库的库容和分解速率不同,土壤活性碳库碳含量一般占总有机碳的0 99%~2 89%,田间平均驻留时间为10~23天;土壤缓效性碳一般占总有机碳的17 17%~55 46%,田间平均驻留时间为1 6~24 2年;土壤惰效性碳一般占总有机碳的42 05%~80 66%,田间平均驻留时间为假定的1000年。  相似文献   

19.
Vector analysis technique and ecological sequential comparison methods were adopted to study tree growth response to the micronutrients,B,Mo,Cu,Zn,Fe,and Mn,in soils derived from various parent materials in the forest area of Tailhu Lake region in southeast China,The results showed that the dry weight of individual current-year needle of Chinese fir(Cunninghamia lanceolata) grown on the soil derived from granite parent rock was increased by 8% and 13% in comparison with that grown on the soils derived from sandstone and ash-tuff parent rock,respectively.And such dry weight of loblolly pine (Pinus taeda) grown on the soil derived from sandstone parent rock was increased by 21% in comparison with that on the soil derived from ash-tuff parent rock.One of the reasons for those results was that micronutrients content in the soil derived from ash-tuff parent rock were not sufficient to meet the requirement of the growth of Chinese fir and loblolly pine ,i.e.,micronutrients in soil were deficient and/or induced defiient.The amounts of Cu,Zn,Fe,and Mn uptake by Chinses fir and loblolly pine were in agreement with the contents of available micronutrients in soil respectively,except for B and Mo.Meanwhile,there might exist and “antagonism“ between the uptake of B versus Mo by trees,although more studies are needed to confirm it .Regression analysis indicated that amount of a soil available micronutrient was correlated to the type of parent material and its total amount in the forest floor, except for B.The F test identified that the correlation of each equation reached the significant level to different extents,respectively,The t test confirmed that amount of available forms was mainly depended on the type of parent material for Mo,Cu,Zn and Mn but on the forest floor for ,Fe,There was a feedback effect of forest stand on the amount of soil available micronutrients.The ability of accumulating available micronutrients in soil was better by the sawtooth oak(Quercus acutissima) stand than by the Chinese fir stand (except for B).The ability of accumulating available Zn,Fe,Mn and Mo in soil was better by the Chinese fir stand than by the loblolly pine stand ,while as for available B and Cu,by the latter was better than by the former,When discussing the efect of forest stand on the amount of soil available micronutrients,not only the amount of micronutrient in the forest floor and the parent materials but also the amount of micronutrient taken up by current-year needles have to be considered.  相似文献   

20.
Significant differences were found in soil physicochemical and biological effects between various forest restoration approaches of a hilly red‐soil region, southern China. Soil quality was the highest in natural secondary forest (0·95), while in sites revegetated with tea‐oil camellia (Camellia oleifera), Chinese fir (Cunninghamia lanceolata) and slash pine (Pinus elliottii) and control sites, integrated soil quality indices were 0·68, 0·55, 0·36 and 0·04 respectively. The lower soil quality of plantations and controls resulted from increased disruption of soil physical structure, lower quality litter fall, lower litter fall production, reduction in microbial biomass, decline of microbial function and loss of soil nutrients due to periodically artificial tending and accelerated soil erosion. Improvement in soil physicochemical properties and enhanced soil microbial function at a natural secondary forest site demonstrated the inherent restoration of these soils. Hence, natural restoration, as well as reducing human disturbance, is a better approach to improving soil properties than returning farmland to planted woodlands. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号