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1.
永定河沿河沙地杨树人工林生态系统呼吸特征   总被引:1,自引:0,他引:1  
杨树是世界上广泛采用的人工造林树种之一,也是中国人工林面积最大的树种。研究杨树人工林生态系统呼吸(Re)及其分量土壤呼吸(Rs)的时间动态格局以及强度特征,分析两者对环境因子的响应是提高人工林生态系统净生产力和促进固碳减排等人工林经营管理中考虑的首要问题。采用开路式涡度相关系统、Licor-8150土壤呼吸测定系统以及小气候测定系统连续测定了位于北京大兴区永定河沿河沙地杨树人工林的生态系统呼吸、土壤呼吸和小气候特征。研究结果表明:(1)2007-2009年该生态系统的Re年总量分别为946.68、863.58、817.30gCm-2a-1,其中Rs年总量分别为642.11、629.29,609.05gCm-2a-1, Rs年总量约占Re年总量的70%;(2)ReRs月总量一般在7或者8月份达到最大值,Rs的变化趋势与土壤5cm温度(Ts5)相一致;(3)Ts5是ReRs两者的显著影响因子,但Re与空气相对湿度(RH)的相关性最显著。此外,Rs更容易受到Ts5和0-20cm土壤平均体积含水量(vwc)两者耦合效应的限制。  相似文献   

2.
采用平行同步采样法,于2012年雨季,对广州市大夫山森林公园林内外空气的总悬浮颗粒物(TSP)和细颗粒物(PM2.5)样品进行了24 h收集,测定了TSP和PM2.5的质量浓度并分析了样品中水溶性无机离子成分。结果表明:林内外PM2.5的质量浓度平均值分别为(40.18±10.47)和(55.79±13.01) g/cm3;林内外TSP的质量浓度分别为(101.32 ± 33.19)和(116.61±35.36) g/cm3。林内与林外比,PM2.5和TSP平均质量浓度都显著减少(P < 0.05),表明森林能显著改善空气环境质量。TSP和PM2.5中SO42-、Na+、NH4+和NO3-为水溶性无机离子主要成分,占总离子质量的80%以上,林外这些离子的浓度高于林内(NH4+除外)。这4种离子雨季在空气中的主要存在方式为NaCl、Na2SO4、NH4HSO4和NH4NO3。计算表明,采样期间海盐对大夫山空气TSP和PM2.5的水溶性组分中Na+和Cl-贡献最大,其它元素主要源自陆地源。林内外TSP和PM2.5c(NO3-)/c(SO42-)比值在0.3以下,表明固定源是大夫山森林公园空气主要污染贡献者,TSP中c(NO3-)/c(SO42-)的比值大于PM2.5的比值,说明移动源对TSP的贡献大于PM2.5。  相似文献   

3.
洋山港潮间带大型底栖动物群落结构及多样性   总被引:6,自引:0,他引:6  
王宝强  薛俊增  庄骅  吴惠仙 《生态学报》2011,31(20):5865-5874
2009-2010年在洋山港海域大洋山岛和圣姑礁进行四个季度潮间带大型底栖动物生态学研究。共采集到大型底栖动物61种,以广布种为主,部分为河口低盐种,其中软体动物22种,环节动物16种,节肢动物12种,苔藓动物5种,腔肠动物4种,星虫动物和棘皮动物各1种。优势种为短滨螺(Littorina brevicula)、多齿围沙蚕(Perinereis nuntia)、日本笠藤壶(Tetraclita japonica)、齿纹蜒螺(Nerita yoldii)和特异大权蟹(Macromedaeus distinguendus)。丰度和生物量在不同季节明显不同(P<0.05):丰度的最高值出现在春季,为(3204.9±837.84)个/m2,最低值出现在秋季,仅为(2213.2±731.27)个/m2;生物量的最高值则出现在夏季(2233.2±1493.42)g/m2,冬季最少,仅为(819.95±484.80) g/m2。大洋山岛和圣姑礁的丰度和生物量具有较大差异(P<0.05):年均丰度以大洋山断面较高,为(3090±742.74)个/m2,圣姑礁断面较低,为(2133±372.51)个/m2;而年均生物量则以圣姑礁断面较高,为(1711.1±1180.76) g/m2,大洋山断面较低,仅为(1028.5±627.61) g/m2。运用ABC曲线、等级聚类和MDS对大型底栖动物群落结构分析发现:大洋山潮带间大型底栖动物群落尚未受到干扰或干扰较轻,群落结构相对稳定;而圣姑礁断面的潮间带大型底栖动物群落受到了中度的干扰,群落结构稳定性下降。与15年前的研究相比,圣姑礁大型底栖动物的密度和生物量均有大幅度的降低,这与洋山港海域盐度的升高、生态环境变化和人为干扰强度增加等有关。  相似文献   

4.
于2006年9月和2007年5月对乐清湾5条潮间带断面进行了大型底栖动物调查。 共鉴定出大型底栖动物113种, 其中软体动物40种, 多毛类25种, 甲壳动物24种, 棘皮动物9种, 其它动物15种。从季节来看, 物种数秋季(81种)高于春季(68种),但平均生物量和平均栖息密度春季(分别为(91.90±59.14) g/m2和(1541±1261.41)个/m2)明显高于秋季(29.20±22.20)g/m2和(201±52.97)个/m2);春季以焦河蓝蛤 幼体、彩虹明樱蛤 、婆罗囊螺 、绯拟沼螺 为主要优势种,而秋季以短拟沼螺 、彩虹明樱蛤、淡水泥蟹 、巢沙蚕 为主要优势种,说明乐清湾大型底栖动物群落特征随着季节有着较大的变化。各断面的Shannon-Winner指数(H')为2.34-3.31,平均为2.85±0.35;Margalef's species richness 指数(d)为3.02-6.42,平均为4.29±1.10;Pielou's evenness 指数(J')为0.46-0.73,平均为0.62±0.09。运用ABC曲线、等级聚类和MDS对大型底栖动物群落结构分析发现,群落结构已受到中度干扰,稳定性差。与以往历史资料相比,乐清湾大型底栖动物向次生型群落转化,原因可能与过度采捕、生境恶化、海岸工程以及围塘养殖等人类活动的影响有关。  相似文献   

5.
张利敏  王传宽  唐艳 《生态学报》2011,31(17):5017-5024
采用长期定位跟踪实测方法,比较分析我国东北温带森林11个主要树种粗木质残体(CWD)分解初期3a中结构性成分的差异、变化以及与其呼吸速率(RCWD)的关系。测定树种包括:软阔叶树种(白桦、山杨、紫椴)、硬阔叶树种(胡桃楸、蒙古栎、色木槭、春榆、黄檗、水曲柳)和针叶树种(兴安落叶松、红松)。结果表明:11个树种CWD木质素含量(Lc,%)和综纤维素含量(Hc,%)差异显著(P<0.001),其中软阔叶树种的Lc最低。木质素含量与N含量的比值(Lc/N)依次为:针叶树种 >硬阔叶树种 >软阔叶树种。经过3a的分解,大部分树种(除了紫椴和春榆)的Lc略有增加,但变化不显著(P>0.05);而其木质素密度(Ld, g/cm3)和综纤维素密度(Hd, g/cm3)都有不同程度的减小(P<0.05),软阔叶树种损失最多,针叶树种损失最少。所有树种Lc/N值均增大。将RCWD标准化成温度为15 ℃时(R15)比较发现,在CWD形成初期(2005年)不同树种的R15有所差异;阔叶树种的R15及其温度系数(Q10)均高于针叶树种。经过3a的分解,除兴安落叶松、色木槭和水曲柳外,其它树种的R15出现了不同程度减小。总体看来,软阔叶树种R15减少了32.0%,而针叶树种R15则增加了23.1%。另外,针叶树种的Q10增大,而阔叶树种的Q10则基本保持不变。R15Hc呈正相关,与LcLc/N呈负相关。CWD分解初期3a R15的变化率与Hc的变化率之间呈正相关关系,表明结构性成分的变化是导致CWD分解初期RCWD变化的主要因素之一。  相似文献   

6.
丰水期长江感潮河口段网采浮游植物的分布与长期变化   总被引:1,自引:0,他引:1  
于2009年6、8月对长江口门至江阴的河口段浮游植物进行了拖网采集,共检出浮游植物6门99属239种。其中:硅藻123种,甲藻19种,绿藻和蓝藻各42种,裸藻9种,黄藻4种。河口段网采浮游植物丰度以蓝藻占绝对优势,硅藻次之,两者合计在群落中的比例超过了95%。优势种也主要以蓝藻(水华鱼腥藻Anabaena flos-aquae、柔软腔球藻Coelosphaerium kuetzingiarum、微囊藻Microcystis spp.、颤藻Oscillatoria spp.和席藻Phorimidium spp.)构成,硅藻仅有2种(骨条藻Skeletonema spp.和颗粒直链藻Aulacoseira granulata)。口门内盐度均<0.5,群落基本以淡水类群为主,口门附近则以半咸水类群为主,海水类群主要位于口门外(盐度>13)。随着水温和营养盐水平的升高,8月浮游植物平均丰度(347.75×104 个/m3)明显高于6月(204.19×104 个/m3)。根据多维尺度和相似性分析,丰水期长江河口段浮游植物群落组成与分布存在显著(P<0.01)的时空差异。对比20世纪80年代以来的历史资料发现,长江口门内网采浮游植物丰度显著升高,且优势种也从硅藻(骨条藻、直链藻和圆筛藻)转变为蓝藻(颤藻、鱼腥藻和微囊藻)。  相似文献   

7.
圈养大熊猫野化培训期的生境选择特征   总被引:1,自引:0,他引:1  
大熊猫(Ailuropoda melanoleuca)是我国特有的珍稀物种,也是世界上最濒危的野生动物之一。为了将人工繁育的部分大熊猫个体重引入其历史分布区或复壮野生种群,中国保护大熊猫研究中心从2003年开始进行圈养大熊猫的野外放归工作,通过野化培训以提高圈养大熊猫适应和选择野外环境的能力。对野化培训大熊猫"淘淘"的生境选择研究表明:该野化培训大熊猫幼仔经常活动于新笋密度较大的区域[生境与对照:(2.68±1.14)对(1.58±0.66)],却避开成竹密度过大[(9.91±2.51)对(12.18±4.68)]、竹子较高[(4.57±1.09) m对(4.98±0.66) m]以及枯死竹过多[(2.52±0.86)对(3.39±1.33)]的区域;喜欢活动于离水源[(1.59±0.67)对(2.19±0.87)]和隐蔽场所较近[(5.37±2.14) m对(8.35±7.76)m],以及距离乔木较远[(3.09±0.69) m对(2.70±0.42) m]和郁闭度较低[(1.85±0.57)对(2.10±0.47)]的区域(P < 0.05),新笋密度大小是该栖息地在整个野化培训期间是否被利用的最重要因素。该野化培训大熊猫幼仔保持着与带仔母兽相近的生境选择特征,对竹子环境的选择也与卧龙野生大熊猫相似,野化培训对该大熊猫幼仔产生了积极的作用。野化培训大熊猫幼仔形成的家域和核域面积分别为9.21 hm2 和1.93 hm2,占野化培训圈面积的51.95%和10.89%,其中家域面积仅有卧龙野生大熊猫的1.4%-2.4%,所以在以后的野化培训过程中需要采取增加野化培训圈中环境丰富度等方式,促进野化培训大熊猫形成较大的家域面积。  相似文献   

8.
城市不同地表覆盖类型对土壤呼吸的影响   总被引:1,自引:0,他引:1  
付芝红  呼延佼奇  李锋  宋英石  赵丹  李慧 《生态学报》2013,33(18):5500-5508
采用Licor-6400-09的土壤呼吸测量系统对北京市区3种不同覆盖类型地表(全硬地表、半透砖地表、草坪覆盖地表)的土壤呼吸速率及其影响因子进行了测定和分析。结果表明:(1)不同地表覆盖类型的土壤呼吸速率年均值分别为7.928 μmol·m-2·s-1(全硬地表),5.592 μmol·m-2·s-1(部分硬化地表)、2.625 μmol·m-2·s-1(草坪覆盖地表);土壤呼吸日均值最高均出现在夏季(14.785,10.296,5.143 μmol·m-2·s-1),最低为冬季(0.490,0.319,0.239 μmol·m-2·s-1);(2)3种地表类型的土壤呼吸速率有显著差异(P<0.05),大小排序为:草坪覆盖地表<部分硬化地表<全硬地表;(3)3种地表类型土壤呼吸速率均与土壤温度呈显著的指数相关,Q10值排序为:草坪覆盖地表<部分硬化地表<全硬地表;(4)土壤含水率和土壤电导率与土壤呼吸均有一定的相关性,但关系较为复杂,有待于进一步研究。  相似文献   

9.
基于树木起源、立地分级和龄组的单木生物量模型   总被引:4,自引:0,他引:4  
李海奎  宁金魁 《生态学报》2012,32(3):740-757
以马尾松(Pinus massoniana)和落叶松(Larix)的大样本实测资料为建模样本,以独立抽取的样本为验证样本,把样本按起源、立地和龄组进行分级,采用与材积相容的两种相对生长方程,分普通最小二乘和两种加权最小二乘,对地上部分总生物量、地上各部分生物量和地下生物量进行模型拟合和验证,使用决定系数、均方根误差、总相对误差和估计精度等8项统计量对结果进行分析。结果表明:两个树种地上部分总生物量,立地分类方法,模型的拟合结果和适用性都最优;马尾松VAR模型较优,而落叶松CAR模型较好;两种加权最小二乘方法,在建模样本和验证样本中表现得不一致。在建模样本中,加权回归2(权重函数1/f0.5)略优于加权回归1(权重函数1/y0.5),但在验证样本中,加权回归1却明显优于加权回归2。而同时满足建模样本拟合结果最优和验证样本检验结果最优的组合中,只有加权回归1。两个树种地上部分各分量生物量,模型拟合结果和适用性,均为干材最优,树叶最差、树枝和树皮居中,样本分类、模型类型和加权最小二乘方法对干材生物量的影响,规律和地上部分总生物量相同;样本分类、模型类型和加权最小二乘方法的最优组合,用验证样本检验的结果,总相对误差树枝不超过±10.0%,树皮不超过±5.0%,树叶马尾松不超过±30.0%,落叶松不超过±20.0%。两个树种地下部分(根)生物量,样本按龄组分类方法,模型拟合结果最优,与材积相容的模型总体上优于与地上部分总生物量相容模型。  相似文献   

10.
The Ria Formosa is a meso-tidal coastal lagoon experiencing enhanced nutrient concentrations. Assessment of sediment–seawater interaction is essential if nutrient dynamics and the risk of eutrophication are to be fully understood. Pore water concentrations of dissolved inorganic and organic phosphorus, ammonium, nitrate and nitrite were determined in cores from six sites. Changes in nutrients concentrations were measured in intertidal pools on sand and mud between tides. Dissolved inorganic phosphorus (DIP) concentrations (~200 μmol l−1) and effluxes (123 ± 14 μmol m−2 h−1) were greater from sand than mud (37 ± 10 μmol m−2 h−1), possibly due to the binding of P with the <63 μm fraction. NH4+ effluxes were high outside the Anc?o Basin (821 ± 106 μmol m−2 h−1) and were associated with Enteromorpha sp. mats. The greatest NO3 efflux was from sediments near a salt marsh (170 ± 67 μmol m−2 h−1). These sediment fluxes of P were not sufficient to account for elevated P concentrations seen by other workers on the ebb tide from the Anc?o Basin. Intertidal pools were sinks for Dissolved Inorganic Nitrogen (DIN) and DIP over the 6 h exposure period. Thus, tidepools may be an important route of nutrients into sediments that enhances the effects of sediments on seawater nutrient concentrations.  相似文献   

11.
Subtropical China has more than 60% of the total plantation area in China and over 70% of these subtropical plantations are composed of pure coniferous species. In view of low ecosystem services and ecological instability of pure coniferous plantations, indigenous broadleaf plantations are being advocated as a prospective silvicultural management for substituting in place of large coniferous plantations in subtropical China. However, little information is known about the effects of tree species conversion on stock and stability of soil organic carbon (SOC). The four adjacent monospecific plantations were selected to examine the effects of tree species on the stock and chemical composition of SOC using elemental analysis and solid-state 13C nuclear magnetic resonance (NMR) spectroscopy. One coniferous plantation was composed of Pinus massoniana (PM), and the three broadleaf plantations were Castanopsis hystrix (CH), Michelia macclurei (MM), and Mytilaria laosensis (ML). We found that SOC stock differed significantly among the four plantations in the upper (0–10 cm) layer, but not in the underneath (10–30 cm) layer. SOC stocks in the upper (0–10 cm) layer were 11, 19, and 18% higher in the CH, MM, and ML plantations than in the PM plantation. The differences in SOC stock among the four plantations were largely attributed to fine root rather than aboveground litterfall input. However, the soils in the broadleaf plantations contained more decomposable C proportion, indicated by lower percentage of alkyl C, higher percentage of O-alkyl C and lower alkyl C/O-alkyl C ratio compared to those in the PM plantation. Our findings highlight that future strategy of tree species selection for substituting in place of large coniferous plantations in subtropical China needs to consider the potential effects of tree species on the chemical composition in addition to the quantity of SOC stock.  相似文献   

12.
Indigenous broadleaf plantations are increasingly developing as a prospective silvicultural management approach for substituting in place of large pure conifer plantations in subtropical China. However, little information is known about the effects of tree species conversion on soil-atmosphere greenhouse gas (GHG) exchanges. Four adjacent monospecific plantations were selected in subtropical China to examine the effects of tree species on soil-atmosphere exchanges of N2O, CH4 and CO2. One coniferous plantation was composed of Pinus massoniana (PM), and the three broadleaf plantations were Castanopsis hystrix (CH), Michelia macclurei (MM) and Mytilaria laosensis (ML). We found that mean soil N2O and CO2 emissions in the PM plantation were 4.34 μg N m?2?h?1 and 43.25 mg C m?2?h?1, respectively, lower than those in the broadleaf plantations (>5.25 μg N m?2?h?1 and >56.38 mg C m?2?h?1). The PM plantation soil had higher mean CH4 uptake (39.03 μg C m?2?h?1) than the broadleaf plantation soils (<32.67 μg C m?2?h?1). Variations in soil N2O emissions among tree species could be primarily explained by the differences in litter C:N ratio and soil total N stock. Differences in soil CH4 uptake among tree species could be mostly attributed to the differences in mean soil CO2 flux and water filled pore space (WFPS). Litter C:N ratio could largely account for variations in soil CO2 emissions among tree species. This study confirms that there is no GHG benefit of converting PM plantation to broadleaf plantations in subtropical China. Therefore, the future strategy of tree species selection for substituting in place of large coniferous plantations in subtropical China needs to consider the potential effects of tree species on soil-atmosphere GHG exchanges.  相似文献   

13.
千烟洲针叶林的比叶面积及叶面积指数   总被引:18,自引:1,他引:18       下载免费PDF全文
 根据实测数据计算了湿地松(Pinus elliotii)、马尾松(P. massoniana) 和杉木 (Cunninghamia lanceolata)不同年龄、不同类型叶片的生 物量和比叶面积,并结合样地调查数据和相对生长方程计算了中国科学院千烟洲试验站20年生湿地松林、马尾松林、杉木林和针叶混交林的叶 面积指数。根据拟合结果,选择如下方程计算3个树种的叶生物量:湿地松W=12.0741D2.1515、马尾松W=6.9727D2.1973和杉木W=5.2619D2.3027 。湿地松林的叶生物量(0.822 kg•m-2)最大,其次为针叶混交林(0.679 kg•m-2),马尾松林和杉木林相差不大(分别为林0.5 28和0.572 kg•m-2)。不同树种、不同年龄、不同类型叶片的比叶面积比较发现,新叶的比叶面积大于老叶,三针一束叶的比叶面积略大于两针一束叶, 马尾松的平均半比表面积(8.62 m2•kg-1)大于湿地松(6.04 m2•kg-1) 和杉木(7.91 m2•kg-1)。胸径与单木叶片半表面积之间的经验方程 为:湿地松 LA=0.073D2.1515、马尾松LA=0.060D2.1973和杉木LA=0.042D2.3027。据此计算湿地松林的叶面积指数为5.03,马尾松林和杉木 林为4.31,针叶混交林为4.77,该结果比利用CI_110植被冠层数字图像仪测得的结果偏大。  相似文献   

14.
北亚热带马尾松净生产力对气候变化的响应   总被引:6,自引:1,他引:5  
掌握马尾松生产力与气候变化的关系,特别是在马尾松自然分布的北界研究生产力对气候变化的响应具有重要意义,以马尾松自然分布北界的河南鸡公山国家级自然保护区内的老龄马尾松林作为研究对象,根据河南信阳的马尾松生物量与树高胸径的关系,利用样地调查和年轮宽度推算出过去的30a中的生物量和生产力动态,并用当地的温度、湿度、降水、光照以及帕尔默干旱度指数5项气候因子与生产力做相关分析,在此基础上用多元逐步回归得到了气候因子与生产力的回归方程。结果显示:鸡公山马尾松林生物量从1980年的59.00 t/hm2逐步增加到2009年的254.75 t/hm2,30a中平均年净生产力为6.64 t/hm2;气候分析表明年净生产力与气候因子关系较为密切:上年8月降水、当年2月温度、3月湿度以及10月的光照和温度与生产力正相关,当年5月光照、10月的降水和湿度与生产力负相关,当年2月到9月的PDSI都与生产力正相关,并且在6月的相关系数最高。研究表明,北亚热带的马尾松生产力的年际变化主要是气候因素引起的,受当年生长季的长短和生长季的土壤水分可用性限制,在未来该地区升温增湿的条件下马尾松林的生产力可能会升高。  相似文献   

15.
中国南方3种主要人工林生物量和生产力的动态变化   总被引:2,自引:0,他引:2  
基于中国南方杉木、马尾松、桉树3种主要人工林的幼龄林、中龄林、近熟林、成熟林、过熟林5个不同年龄各3块1000 m2样地(共计45块)的建立和调查,采用样木回归分析法(乔木层)和样方收获法(灌木层、草本层、地上凋落物)获取不同林型不同林龄径级样木和其它基本数据,探讨了3种人工林各组分各层次林分生物量和生产力的分配特征及随林龄的变化规律,结果表明,林分生物量和生产力与林龄密切相关,增长模型的拟合度均较高,相关显著;杉木、马尾松、桉树人工林的生物量随林龄的增长呈增加趋势,成熟林的生物量分别为192.30、191.53、105.77 Mg/hm2,其中活体植物分别占95.76%—98.39%、75.01%—99.14%、85.60%—97.61%;生物量的层次分配乔木层占绝对优势,并随年龄而增加,其它层次所占比例较小,总体趋势为凋落物草本层灌木层;乔木层的器官分配以干所占比例最高,杉木、马尾松、桉树分别占54.89%—75.97%、49.93%—83.10%、51.07%—98.48%,随年龄的增加而增加,根的比例次之,枝叶所占比例较小,随林龄而下降;灌木层器官分配以枝的相对生物量较大,草本层的地上和地下分配规律不明显;与其它森林类型相比,杉木和马尾松的生物量处于中上游水平,桉树的生物量较低,但3种人工林的生产力均很高,分别为12.37、8.98、21.10 Mg hm-2a-1,均是光合效率高、固碳潜力大的中国南方速生丰产优良造林树种。  相似文献   

16.

Background and aims

The knowledge of individual tree species impacts on soil respiration based on rigorous experimental designs is limited, but is crucial to help guide selection of species for reforestation and carbon (C) management purposes.

Methods

We assessed monthly soil respiration and its components, litterfall input, fine root production and mortality under 19-year-old native coniferous Cunninghamia lanceolata and broadleaved Mytilaria laosensis plantations in sub-tropical China.

Results

Total soil respiration from October 2011 to March 2013 was significantly lower under the C. lanceolata than the M. laosensis plantation. The difference in respiration rates derived from fine roots and the litter layer explained much of the variation of total soil respiration between the two tree species. We used an exponential equation and base temperature (10 °C) to normalize soil respiration rate and its components (R10) and determined the correlation between R10 and soil moisture. Although soil moisture had a positive relationship with R10 derived from roots or litter under both C. lanceolata and M. laosensis forests, these positive correlations were masked by negative relationships between soil moisture and R10 derived from root-free soil, which resulted in a neutral correlation between total R10 and soil moisture under C. lanceolata forests. Monthly litterfall input was associated with variation in concurrent total soil respiration rate under the M. laosensis plantation and respiration rate lagging 3 months behind under the C. lanceolata plantation, which may suggest that litterfall input from M. laosensis can more rapidly produce C substrates for microbial respiration than litterfall from C. lanceolata.

Conclusions

This study highlighted that tree species-induced variation in the quality and quantity of fine roots and litterfall can impact not only the soil respiration rate but also the seasonal variation model of forest soil respiration.  相似文献   

17.
We have studied the natural regeneration of spruce (Picea abies L.) under a canopy of pine (Pinus sylvestris L.) on loamy soils. Spruce survival and growth depend on the duration of the regeneration period from the creation of the plantation and the local conditions formed as a result of uneven thinning of pine and spruce canopy. The formation of spruce population is mainly determined by trees that regenerated upon intensive thinning of 20- to 40-year-old pine trees. Spruce regeneration may be enhanced by timely cleaning cutting in pine plantations. The first one, done at the age of 15–20 years, favors pine growth and spruce regeneration. At the normal reproduction of spruce population under the canopy of 80-year-old pine plantations, the second spruce layer is formed. Trunk reserve in this layer is 20–25% of the reserves of the first layer. After its formation, the light regime in the forest depends greatly on the space volume occupied by spruce crowns. Their percentage is especially high at the relative height equal to 0.4–0.7 of the mean spruce height in the second layer. Smaller spruce trees may exist for a long time period, but their development is slowed down and they die at the undergrowth stage. When the plantation is 150 years old, the reserves of spruce trees regenerated under the canopy of pine comprise one-third of the total reserves of the plantation. If the growing conditions are favorable for spruce (C3), the stability and productivity of pine-spruce plantations exceed those of the pure spruce plantations. The reasonability of natural spruce regeneration for the creation of pine-spruce plantations under C3 conditions should be substantiated with the consideration of their designation, ages of cuttings, and the possibility of plantation creation and sanitary cuttings according to the valid regulations.  相似文献   

18.
合理的森林恢复方式能提高植物多样性,进而提高生态系统服务功能.在我国南方红壤区研究了3种典型森林恢复方式(引进种恢复的湿地松(Pinus elliottii)人工林本地种恢复的马尾松(Pinus massoniana)人工林和自然恢复的天然次生林)的植物区系构成和植物群落多样性.结果表明:(1)湿地松人工林有155种植物,隶属66科118属,马尾松人工林有137种植物,隶属59科97属;天然次生林有226种植物,隶属86科160属,3种森林恢复方式的乔木层、灌木层和草本层的优势科属明显不同,马尾松人工林的优势物种和天然次生林更相似;(2)天然次生林的植物区系基本构成、植物区系类型种类高于马尾松人工林和湿地松人工林,并且天然次生林的温带成分比例高于湿地松人工林;(3)恢复方式对植物群落的多样性指数有显著影响,天然次生林的物种丰富度、辛普森指数明显高于马尾松人工林和湿地松人工林,两种人工林之间差异不显著;(4)3种森林恢复方式的植物群落结构存在显著差异,相比湿地松人工林,马尾松人工林的植物群落组成与天然次生林更相似.总之,自然恢复的天然次生林植物群落多样性高于人工恢复的马尾松人工林和湿地松人工林,本地种马尾松人工林在维持区域植物群落结构功能上优于引进种湿地松人工林.  相似文献   

19.
The influences of thinning (50% of standing density) and liming (Ca+Mg, 2 Mg ha−1) on soil chemical properties were investigated for 2 years (2001, 2002) in 40-year-old pitch pine (Pinus rigida Mill.) and 44-year-old Japanese larch (Larix leptolepis Gord.) plantations established on similar soils. In general, soil properties varied significantly among plantations and treatments. For both plantations, thinning significantly increased soil organic C (SOC) concentrations whereas there were no significant changes in soil pH and Ca and Mg concentrations. In addition, thinning increased total soil N and Na concentrations for the pitch pine plantation and available P concentration for the Japanese larch plantation in the second year after the treatment. Liming did not affect soil chemical characteristics for the pitch pine plantation except for Na concentration. However, for the Japanese larch plantation, liming significantly increased soil pH and K, Ca and Mg concentrations and decreased SOC and total soil N concentrations. For both plantations, soil Al concentration did not change after thinning and liming and decreased exponentially with increased pH values. The increases in SOC and total soil N concentrations after thinning were possibly due to increases in decomposition of organic matter and root death. Although differences were not statistically significant, soil available P concentration tended to increase at early stages of liming for both plantations. These results suggested that thinning and liming seemed to regulate soil chemical properties for pitch pine and Japanese larch plantations established on similar soils.  相似文献   

20.
我国南亚热带几种人工林生态系统碳氮储量   总被引:9,自引:0,他引:9  
以我国南亚热带格木(Erythrophleumfordii)、红椎(Castnopsis hystrix)和马尾松(Pinus massoniana)人工林为研究对象,对其碳氮储量及分配格局进行研究.结果表明,不同树种体内碳的分布与器官年龄的关系不明显,而氮的分布与年龄的关系则较为密切,表现为幼嫩器官中的氮含量大于老化器官,而老化器官的C/N比值大于幼嫩器官.格木人工林生态系统内各组分的氮含量均高于其他两种人工林生态系统,并且3种人工林生态系统碳氮在土壤表层具有明显的富集作用.格木、红椎和马尾松人工林碳储量分别为236.22、267.84、200.57 t/hm2,氮储量分别为17.91、12.38、10.59 t/hm2.乔木层碳储量分别占42.57%、36.31%和40.28%,0-100 cm土壤碳储量分别占55.77%、62.52%和57.83%;氮储量则是土壤占绝对优势,分别为92.00%、93.72%和95.53%.说明3种人工林生态系统碳氮储量主要分布在土壤中,且红椎人工林生态系统具有较高的固碳能力.  相似文献   

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