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1.
土壤呼吸作用的空间异质性对土壤碳收支的准确评估起重要作用.通过对新疆伊犁地区3个生长阶段杨树人工林的土壤呼吸速率、土壤环境因子和细根生物量的测定,分析了土壤呼吸速率的空间变异及其影响因素.结果表明:在整个生长季,土壤呼吸空间变异系数(CV)为5.7% ~42.6%.2、7和12年生杨树人工林的平均土壤呼吸速率分别为5.74、5.10和4.71 μmol·m-2·s-1,空间变异系数分别为28.8%、22.4%和19.6%,差异显著.逐步回归分析表明,5 cm土壤温度、表层土壤氮含量及细根生物量是决定土壤呼吸空间异质性的主要因子,可以共同解释86%的土壤呼吸变异.此外,由于测点距树干的位置不同,使土壤温度和细根生物量等因子发生了改变,也会导致土壤呼吸的空间变异.在估算杨树人工林土壤碳排放量时,应考虑其在不同生长阶段土壤呼吸速率的空间变异.  相似文献   

2.
武夷山不同海拔高度土壤活性有机碳变化   总被引:11,自引:0,他引:11  
采用连续熏蒸 培养法,测定了福建武夷山自然保护区不同海拔高度具有代表性的中亚热带常绿阔叶林、针叶林、亚高山矮林以及高山草甸土壤中有效碳含量,分析了土壤有效碳(LOC)与微生物量碳(MBC)、土壤总有机碳(TOC)、细根生物量(FRB)和土壤全氮(TN)之间的关系.结果表明:土壤有效碳占总有机碳的3.40%~7.46%;微生物量碳只是土壤有效碳中的一部分,占土壤有效碳26.87%~80.38%; 不同林分土壤有效碳含量随海拔增高而显著增大,随土层深度的增加而降低;土壤有效碳与微生物量碳、土壤总有机碳、细根生物量、土壤全氮之间呈极显著的相关关系.高海拔土壤有效碳含量显著高于低海拔土壤.  相似文献   

3.
不同树龄杨树人工林的根系呼吸季节动态   总被引:3,自引:0,他引:3  
闫美芳  张新时  周广胜  江源 《生态学报》2010,30(13):3449-3456
根系呼吸是准确评估森林生态系统土壤碳收支的一个重要依据。基于LI-COR-6400-09土壤呼吸系统连续2a测定的3个生长阶段杨树人工林的根系呼吸数据,分析了根系呼吸的季节变化规律及树龄、土壤水热因子和细根生物量对它的影响。结果表明:3个不同树龄人工林的根系呼吸速率均呈明显的季节变化,最大值出现在夏初,最小值出现在秋末,基本上与表层土壤温度的季节变化相一致。根系呼吸的峰值早于土壤温度和细根生物量的峰值,说明林木根系的季节生长节律、地下碳分配模式都可能影响根系呼吸的季节变化。2年生人工林的根系呼吸速率最高,平均为3.78μmolCO2m-2s-1,并随树龄增长呈下降趋势。3个树龄人工林根系呼吸占土壤呼吸的比例介于38.6%-58.0%之间,且2年生人工林最大。不同林龄之间根系呼吸的差异主要与根系的生长周转速率及代谢活性随生长阶段的变化有关。总的来说,表层土壤温度和细根生物量的协同作用可解释根系呼吸速率变化的76%。此外在评估一个轮伐期内的根系呼吸强度时,应考虑不同生长阶段对它的影响。  相似文献   

4.
采用连续熏蒸-培养法,测定了福建武夷山自然保护区不同海拔高度具有代表性的中亚热带常绿阔叶林、针叶林、亚高山矮林以及高山草甸土壤中有效碳含量,分析了土壤有效碳(LOC)与微生物量碳(MBC)、土壤总有机碳(TOC)、细根生物量(FRB)和土壤全氮(TN)之间的关系.结果表明:土壤有效碳占总有机碳的3.40%~7.46%;微生物量碳只是土壤有效碳中的一部分,占土壤有效碳26.87%~80.38%;不同林分土壤有效碳含量随海拔增高而显著增大,随土层深度的增加而降低;土壤有效碳与微生物量碳、土壤总有机碳、细根生物量、土壤全氮之间呈极显著的相关关系.高海拔土壤有效碳含量显著高于低海拔土壤.  相似文献   

5.
模拟氮沉降对华西雨屏区撑绿杂交竹林土壤呼吸的影响   总被引:7,自引:1,他引:6  
2008年1月至2009年2月,对华西雨屏区撑绿杂交竹(Bambusa pervariabilis×Den-drocala mopsi)人工林进行模拟氮沉降试验,氮沉降水平分别为对照(CK,0 g N·m-2·a-1)、低氮(5 g N·m-2·a-1)、中氮(15 g N·m-2·a-1)和高氮(30 g N·m-2·a-1),采用红外CO2分析法测定土壤呼吸速率.结果表明:杂交竹林土壤呼吸呈明显的季节变化,7月最高,1月最低.对照样方土壤呼吸年累积量为(389±34)g C·m-2·a-1.土壤呼吸速率与10 cm土壤温度和气温呈极显著正指数关系,与微生物生物量碳、氮呈极显著正线性关系.模拟氮沉降显著促进了土壤呼吸,低氮、中氮处理与对照之间差异达显著水平,但高氮处理与对照之间差异不显著.自然状态下,杂交竹林土壤表层微生物生物量碳和氮分别为0.460和0.020 mg·g-1,而所有氮处理中土壤微生物生物量碳和氮均显著增加.杂交竹林土壤表层(0~20 cm)细根密度为388 g·m-2,模拟氮沉降对杂交竹林细根密度的影响不显著.基于土壤10 cm深度温度和空气温度计算的杂交竹林土壤呼吸Q10值分别为2.66和1.87,短期模拟氮沉降并未显著影响土壤呼吸温度敏感性.杂交竹林土壤呼吸变异主要受温度和微生物生物量的控制,模拟氮沉降可能通过增加土壤微生物生物量促进了该系统土壤CO2排放.  相似文献   

6.
蚂蚁筑巢能够改变热带森林土壤微生物与土壤理化性质的状况,从而对土壤呼吸时间动态产生重要影响。本研究以西双版纳高檐蒲桃热带森林群落为研究对象,采用Li-6400-09便携式土壤呼吸测定仪对蚂蚁筑巢地与非筑巢地土壤呼吸进行测定。研究结果表明:(1)高檐蒲桃群落土壤呼吸呈明显的单峰型季节变化趋势,且土壤呼吸速率蚂蚁筑巢地(4.96μmol CO_2m~(-2)s~(-1))高于非筑巢地(4.42μmol CO_2m~(-2)s~(-1))。(2)土壤温度和土壤水分显著影响土壤呼吸的时间动态(P0.01);蚂蚁筑巢显著改变巢内温度与水分(P0.05),进而影响土壤呼吸动态。土壤温度对土壤呼吸动态的贡献:蚁巢(83.8%—91.8%)大于非巢地(81.2%—83.1%),但由于筑巢地土壤湿度低于非巢地,土壤水分对土壤呼吸动态的贡献率表现为蚁巢低于非筑巢地。(3)蚂蚁筑巢显著增加土壤微生物生物量(P0.05),从而对土壤呼吸速率产生极显著的影响(P0.01)。蚂蚁筑巢引起微生物生物量碳的增加能够解释76.9%—71.1%的土壤呼吸变化。(4)蚂蚁筑巢引起土壤理化性质变化对土壤呼吸产生一定的影响。土壤容重与土壤呼吸速率呈显著负相关;土壤呼吸速率与土壤微生物量碳、有机质、易氧化有机碳、全氮、硝氮和铵氮显著正相关(P0.05或P0.01)。因此,蚂蚁筑巢显著改变土壤微生物(如微生物生物量碳)、土壤物理性质(如土壤温度与水分)、土壤化学性质(如碳和氮养分),进而对热带森林土壤呼吸产生重要影响。  相似文献   

7.
土壤呼吸是陆地生态系统碳循环的重要组成部分,研究土壤呼吸对降水变化和养分沉降的响应有助于评估全球变化对生态系统碳循环的影响。然而,目前降水变化和养分沉降对土壤呼吸的交互影响研究相对较少。本研究以呼伦贝尔草甸草原为对象,通过增减雨和养分添加,模拟研究降水变化和养分沉降及其交互对草甸草原土壤呼吸的影响及其机制。结果表明:增雨对土壤呼吸没有显著影响,干旱显著降低了土壤呼吸;养分添加对土壤呼吸有一定的抑制作用,但其与降水变化的交互作用不显著。增雨显著增加了土壤湿度,但对土壤温度没有显著影响;相反,干旱显著降低了土壤湿度,增加了土壤温度;养分添加显著增加了可溶性无机碳、无机氮和地上净初级生产力,降低了土壤湿度。土壤呼吸与土壤湿度、微生物生物量碳、微生物生物量氮呈显著正相关,而与土壤温度呈显著负相关;土壤湿度、土壤温度、微生物生物量碳和微生物生物量氮可以分别解释土壤呼吸56.3%、26%、16.6%和19.6%的变异,表明土壤水分是调控土壤呼吸的关键因子。本研究有助于增强对全球变化背景下草甸草原土壤呼吸的理解和认识。  相似文献   

8.
随着全球大气氮沉降的明显增加,将有可能显著影响我国西部地区受氮限制的亚高山森林生态系统。土壤微生物是生态系统的重要组成部分,是土壤物质循环和能量流动的重要参与者。由于生态系统类型、土壤养分、氮沉降背景值等的差异,土壤呼吸和土壤生物量碳氮对施氮的响应存在许多不确定性。而施氮会不会促进亚高山森林生态系统中土壤呼吸和微生物对土壤碳氮的固定?基于此假设,选择了川西60年生的四川红杉(Larix mastersiana)亚高山针叶林为研究对象,通过4个水平的土壤施氮控制试验(CK:0 g m~(-2) a~(-1)、N1:2 g m~(-2)a~(-1)、N2:5 g m~(-2) a~(-1)、N3:10 g m~(-2)a~(-1)),监测了土壤呼吸及土壤微生物生物量碳氮在一个生长季的动态情况。结果表明:施氮对土壤呼吸各指标和土壤微生物碳氮都有极显著的影响,施氮能促进土壤全呼吸、自养呼吸、异养呼吸通量和土壤微生物生物量碳氮的增长,施氮使土壤呼吸通量提高了11%—15%,土壤微生物量碳提高了5%—9%,土壤微生物量氮提高了23%—34%。在中氮水平下(5 g m~(-2) a~(-1))对土壤呼吸的促进最显著。相关分析发现,土壤呼吸与微生物生物量碳氮和微生物代谢商极呈显著正相关,微生物量碳氮与土壤温度呈极显著的正相关,与土壤湿度呈极显著负相关。通过一般线性回归拟合土壤呼吸速率与土壤10 cm温湿度的关系,发现土壤呼吸速率与土壤温度呈极显著的正相关,与土壤湿度极显著负相关(P0.001),中氮水平下土壤温度敏感性系数Q_(10)值(7.10)明显高于对照(4.26)。  相似文献   

9.
鼎湖山三种主要植被类型土壤碳释放研究   总被引:65,自引:11,他引:54  
土壤呼吸是土壤微生物活性和土壤肥力一个重要指标 ,是土壤碳流通的一个主要过程 ,也是陆地生态系统碳循环的一个关键部分 ,对研究全球变化非常重要。国内土壤呼吸的研究主要集中在北京山地温带林区、尖峰岭热带森林及东北羊草草原和中亚热带等地 ,南亚热带地区森林土壤呼吸尚无报道。选取南亚热带鼎湖山自然保护区森林演替系列中的 3种主要植被类型 (季风常绿阔叶林 ,针阔叶混交林和马尾松林 )为研究对象 ,研究了土壤呼吸和与之相关的土壤微生物生物量、土壤温度和土壤含水量以及他们之间的关系。结果表明 ,季风常绿阔叶林、针阔叶混交林和马尾松林年均土壤呼吸速率依次是 477.9,435 .4,42 9.5 mg CO2 · m- 2 ·h- 1,土壤呼吸速率与土壤温度的季节变化规律接近 ;3种植被类型土壤微生物生物量变化规律与土壤呼吸变化规律一致 ,季风常绿阔叶林最高 ,马尾松林最低 ,土壤微生物量高的土壤中碳周转量较大 ,碳素周转还带动了其他营养元素周转 ,有利于生态系统生存和持续发展 ;季风常绿阔叶林、针阔叶混交林和针叶林代谢熵依次是 0 .5 8~ 0 .60 ,0 .92~ 1 .0 0 ,1 .30~ 1 .35 ,表明 3种植被类型土壤中土壤微生物对土壤碳的利用效率依次降低。  相似文献   

10.
亚热带毛竹人工林土壤呼吸组分动态变化及其影响因素   总被引:1,自引:1,他引:0  
杨文佳  李永夫  姜培坤  周国模  刘娟   《生态学杂志》2015,26(10):2937-2945
利用Li-8100土壤碳通量测量系统,研究了2013年4月—2014年3月浙江临安市毛竹人工林土壤呼吸、异养呼吸和自养呼吸速率的动态变化规律.结果表明:毛竹人工林土壤总呼吸速率、异养呼吸速率和自养呼吸速率均呈现出明显的季节变化特征,最高值出现在7月,最低值出现在1月,年平均值分别为2.93、1.92和1.01 μmol CO2·m-2·s-1.毛竹林土壤总呼吸、异养呼吸和自养呼吸年累积CO2排放量分别为37.25、24.61和12.64 t CO2·hm-2·a-1.土壤呼吸各组分均与土壤5 cm温度呈显著指数相关,土壤总呼吸、异养呼吸和自养呼吸的温度敏感系数Q10值分别为2.05、1.95和2.34.土壤总呼吸速率、异养呼吸速率与土壤水溶性有机碳(WSOC)含量均呈显著相关,而自养呼吸与WSOC无显著相关性;土壤呼吸各组分与土壤含水〖JP2〗量以及微生物生物量碳均无显著相关性.土壤温度是影响毛竹人工林土壤呼吸及其组分季节变化的主要驱动因子,土壤WSOC含量是影响土壤总呼吸和异养呼吸的重要环境因子.  相似文献   

11.
两种萝芙木生物量分配与估测模型研究   总被引:1,自引:0,他引:1  
采用样本全收获法测量催吐萝芙木(Rauvolfia vomitoria)和萝芙木(Rauvolfia verticillata)的生物量,比较它们的生长特性及生物量分配,同时以基径(d)和株高(h)的组合d^2h为变量与各器官以及单株总生物量进行估测模型的建立。结果表明,两个种生物量间差异非常大,前者明显高于后者。在各自生物量构成中,茎所占的比例最高,为60%左右;而主要药用部位根只占27%左右。所建立的模型中除萝芙木叶以外,其余的判定系数R^2都较高,模型具有一定的适用性,所建立的估测模型可应用于这两个萝芙木种的幼龄植株生物量估测。  相似文献   

12.
Knowledge of the quantitative relationship between plant cover and its corresponding biomass for shrubs is not well known, especially for those on the Tibetan Plateau. Based on investigations of 35 sites, 90 plots and 95 standard individuals for two typical shrub species (Rhododendron nivale Hook. f. and Sophora moorcroftiana (Benth.) Baker) across Tibet, we developed allometric models for biomass estimation from measurements of crown diameter and/or height. We found that the parameters of crown projection area (CPA), height and their product (volume) were all significantly (p < 0.01) correlated with dry mass of different organs for both species at individual level. The CPA rather than volume best predicted aboveground dry mass. This is because that the bulk density declined significantly with increasing plant height, leading to the inappropriateness for plant height itself being employed as a parameter in biomass estimation, especially for shrubs in smaller size groups. At community level, cover was tightly correlated with the aboveground, belowground and total biomass (R2 = 0.97–0.99). Therefore, biomass for the two shrubs can be simply estimated by measuring plant cover, which enables rapid estimation of shrubland carbon stock at large scales by using satellite data and repeated experiments over time. This non-destructive method using cover to estimate shrub biomass can be applied not only in arid ecosystems but also in alpine or subalpine environment.  相似文献   

13.
Two endo-1,4-β-d-xylanases (1,4-β-d-xylan xylanohydrolase, EC 3.2.1.8) were purified from Trichoderma harzianum culture filtrates. From kinetic analyses, apparent Vmax and Km values of 580 U mg?1 protein and 0.16% d-xylan were obtained for the 20 000 dalton endo-1,4-β-d-xylanase, while values of 100 U mg?1 protein and 0.066% d-xylan were obtained for the 29 000 dalton endo-1,4-β-d-xylanase. Substrate levels >1% (w/v) d-xylan were found to be inhibitory to both enzymes. Both d-xylanases were highly active against d-xylans obtained from various sources. Of the polymeric sugars tested, carboxymethyl cellulose was the only substrate which was hydrolysed to any extent. Little or no activity was observed against cellulose. Analyses by h.p.l.c. demonstrated the absence of hydrolytic activity by both d-xylanases on d-xylobiose. d-Xylotriose was cleaved to a limited extent by the 29 000 dalton d-xylanase only, while d-xylotetraose was hydrolysed by both. In the presence of d-xylotetraose, the 20 000 dalton d-xylanase had an associated transxylosidase activity which was not observed with the 29 000 dalton enzyme. When the solubilization assay was used, neither of the d-xylanases was inhibited by high concentrations of d-xylose and xylobiose.  相似文献   

14.
利用植物木质纤维资源发酵生产乙醇越来越受到人们的重视,但是要实现工业化生产仍然存在很多难题。最近,利用植物基因工程技术,改善植物自身性状,包括减少植物自身细胞壁中木质素含量、细胞中积累表达纤维素酶和木聚糖酶等方法,使自生产生的生物质更利于降解利用。目前,对这种新的能源转基因植物的研究取得了一定进展。  相似文献   

15.
云南松林的生物量研究   总被引:17,自引:1,他引:16  
本文研究了云南省易门县海拔1600—1700m的云南松中幼龄林分的生物量。云南松林的生物量随林龄的增加而增加。4年生林分的总生物量为9.985吨/公顷,11年生林分为27.874吨/公顷,23年生林分为69.852吨/公顷。乔木层的器官生物量分配比例随林龄而变化。针叶和树皮的分配比例随林龄的增加而迅速下降;干材和根的比例则不断上升,其中以干材增加最快;树枝的分配比例以11年生林分最大,23年生林分次之,4年生林分最小。  相似文献   

16.
Bryophyte production and decomposition in tundra ecosystems   总被引:3,自引:0,他引:3  
Bryophytes attain maximum relative importance in terms of biomass and production in the tundra biome. They contribute an average of 30% to the vegetation cover across a broad range of tundra sites, but often reach 100% cover in wetter and more protected situations. Figures for bryophyte phytomass span several orders of magnitude depending on severity of habitat conditions. Very high standing crops reflect organic matter accumulation due to low decomposition rates at the wettest sites. Initial annual loss rates are commonly below 10% in bryophyte-dominated habitats throughout the tundra. Bryophyte production ranges from less than 1 g m-2 yr-1 in polar desert, to more than 1000gm-2yr-l at wetter sites in the sub-Antarctic where a long growing season prevails.
However, many published values for tundra bryophyte production are based on suspect methodology and cannot be accurately compared between sites. The new generation of lightweight field-portable equipment for measuring gas exchange and microclimatic variables provides the potential for improving our knowledge of bryophyte productivity in relation to environmental factors in the tundra biome.
It is unfortunate, therefore, that the emphasis has shifted away from bryophyte autecological studies at important northern sites where increasing human impact is threatening this fragile biome type.  相似文献   

17.
The formulation of microbial biomass represents a critical step in advancing the commercial development of prospective biological control products. Trichoderma asperellum has demonstrated biological control capability against Fusarium head blight. In the present studies, Trichoderma asperellum was grown in liquid media of differing composition. The effect of various amendments on the preservation of the viability and competitiveness, in vitro, of fungal mycelium and spores in a liquid paste was determined. The amendments with greatest effect were the addition of starch as a food base, reduction of metabolic activity by lowering the pH of the biomass paste and the addition of small amounts of copper. Oxygen availability was also shown to be important in maintaining biomass viability and competitiveness. Optimization of these factors produces a biomass paste formulation of T. asperellum that remains active, in vitro, for at least 6 months at room temperature.  相似文献   

18.
Moon JH  Lee JW  Lee UD 《Bioresource technology》2011,102(20):9550-9557
An economic analysis of biomass power generation was conducted. Two key technologies--direct combustion with a steam turbine and gasification with a syngas engine--were mainly examined. In view of the present domestic biomass infrastructure of Korea, a small and distributed power generation system ranging from 0.5 to 5 MW(e) was considered. It was found that gasification with a syngas engine becomes more economically feasible as the plant size decreases. Changes in the economic feasibilities with and without RPS or heat sales were also investigated. A sensitivity analysis of each system was conducted for representative parameters. Regarding the cost of electricity generation, electrical efficiency and fuel cost significantly affect both direct combustion and gasification systems. Regarding the internal rate of return (IRR), the heat sales price becomes important for obtaining a higher IRR, followed by power generation capacity and electrical efficiency.  相似文献   

19.
Allometric equations to estimate aboveground biomass (AGB) and plant part biomasses (PPB) of three mangrove species, Rhizophora mangle, Avicennia schaueriana, and Laguncularia racemosa, were determined in Itamaracá, Pernambuco, Brazil (7°48′44″S and 34°49′39″W). Twenty-three to thirty-six trees of each species, ranging in height (H) from 1.6 to 11.8 m and in diameter, at breast height or above prop roots (D), from 2 to 21 cm, were measured, cut, and separated into stems, branches, leaves, and prop roots. Biomass proportions in each tree part were similar among species, excluding prop roots: stems 37–47%, branches 41–46%, and leaves 11–17%. Prop roots represented 37% of AGB in R. mangle. Tree size had a significant but not large influence on biomass distribution among plant parts: as stem diameters increased the proportions allocated to leaves decreased and those to stems and branches increased. AGB and PPB were significantly related to D and D2 × H and the best fittings were obtained with power equations. A few equations from literature fitted the data reasonably well for AGB of one or two of the species but resulted in large errors for the others. Applying the equations to previous measurements of tree diameters in a sample area, AGB for the mangrove site was estimated at 105 Mg ha−1, with 78, 19, and 3% corresponding to biomasses of R. mangle, L. racemosa, and A. schaeuriana trees, respectively.  相似文献   

20.
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