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101.
生物质燃烧释放N2O的测定及其分布   总被引:7,自引:0,他引:7  
曹美秋  庄亚辉 《环境化学》1994,13(5):395-400
本文报导了实验室规模的生物质封闭燃烧系统及稻草、玉米秸、麦杆燃烧过程中N2O排放因子的测定结果,测定结果表明:稻草、麦杆及玉米秸燃烧排气中N2O的排放因子分析是84.4g/t,27.3g/t,132g/t。用N2O-N占生物全氮的百分含量表示,稻草及玉米秸分别上0.59%,0.87%。用实验得到的N2O的排放因子计算出了生物质燃烧产生N2O在全国各省、直辖市、县的年排放量,并作出了全国年排放的分布  相似文献   
102.
本文对山-村山地生态系统的结构和功能、能量产投比、生物量等进行实地调查和研究。结果表明,通过多年生态建设,山地生态系统已显示较好的经济、环境和社会效益。  相似文献   
103.
Resilience of Southwestern Amazon Forests to Anthropogenic Edge Effects   总被引:2,自引:0,他引:2  
Abstract:  Anthropogenic edge effects can compromise the conservation value of mature tropical forests. To date most edge-effect research in Amazonia has concentrated on forests in relatively seasonal locations or with poor soils in the east of the basin. We present the first evaluation from the relatively richer soils of far western Amazonia on the extent to which mature forest biomass, diversity, and composition are affected by edges. In a southwestern Amazonian landscape we surveyed woody plant diversity, species composition, and biomass in 88 × 0.1 ha samples of unflooded forest that spanned a wide range in soil properties and included samples as close as 50 m and as distant as >10 km from anthropogenic edges. We applied Mantel tests, multiple regression on distance matrices, and other multivariate techniques to identify anthropogenic effects before and after accounting for soil factors and spatial autocorrelation. The distance to the nearest edge, access point, and the geographical center of the nearest community ("anthropogenic-distance effects") all had no detectable effect on tree biomass or species diversity. Anthropogenic-distance effects on tree species composition were also below the limits of detection and were negligible in comparison with natural environmental and spatial factors. Analysis of the data set's capacity to detect anthropogenic effects confirmed that the forests were not severely affected by edges, although because our study had few plots within 100 m of forest edges, our confidence in patterns in the immediate vicinity of edges is limited. It therefore appears that the conservation value of most "edge" forests in this region has not yet been compromised substantially. We caution that because this is one case study it should not be overinterpreted, but one explanation for our findings may be that western Amazonian tree species are naturally faster growing and more disturbance adapted than those farther east.  相似文献   
104.
东海原甲藻的光周期效应研究   总被引:5,自引:1,他引:5  
孙岁寒  段舜山 《生态环境》2006,15(3):461-464
以东海原甲藻ProrocentrumdonghaienseLu为试验材料,设置了短光周期(A)和长光周期(B)两组试验:A组分光周期1、2、4、6、8、10和12h7个处理,B组分光周期12、14、16、18、20、22和23h7个处理,测定了东海原甲藻的细胞密度、叶绿素a含量、蛋白质含量、生物量和可溶性糖等指标。结果表明,在13个不同的光周期处理中,随着光周期的不断延长,东海原甲藻的细胞密度等一系列指标值均不断上升,各指标和光周期的长度呈现正相关的关系。结果表明东海原甲藻是一种喜长光照的赤潮藻类。  相似文献   
105.
松嫩草甸不同退化程度生境土壤磷素动态研究   总被引:4,自引:0,他引:4  
对松嫩草甸不同退化程度生境的几种代表植物群落土壤磷素状况的研究表明,各群落相同土层的全磷含量没有显著的差异,说明土壤磷库具有较强的弹性,土壤退化落后于地上植物群落的退化.各群落土壤全磷的季节变化相似,均经历迅速累积,达到峰值后下降,之后又有一个缓慢积累的过程.羊草、寸草苔和碱茅群落全磷含量随土层的加深而减少,虎尾草群落土壤全磷聚集于10~20cm土层.随退化程度的加重,土壤速效磷含量增加,虎尾草群落土壤速效磷占全磷的比重最高(2.8%),表明退化生境植物群落对速效磷素的利用并不充分.各群落土壤微生物量磷含量均高于速效磷含量,其季节动态均为单峰曲线,峰值出现在8月.虎尾草群落土壤微生物量磷在10~20cm的土层最多,其他群落土壤微生物量磷在0~10cm土层的含量最多.灰色分析的结果表明,土壤速效磷的形成主要受到土壤养分,尤其是碳、氮养分的影响;而土壤温度、水分状况、酸碱状况和盐化程度等因素对土壤微生物量磷的影响较强.图2表3参26  相似文献   
106.
A simple approach to modeling microbial biomass in the rhizosphere   总被引:4,自引:0,他引:4  
Microorganisms make an important contribution to the degradation of contaminants in bioremediation as well as in phytoremediation. An accurate estimation of microbial concentrations in the soil would be valuable in predicting contaminant dissipation during various bioremediation processes. A simple modeling approach to quantify the microbial biomass in the rhizosphere was developed in this study. Experiments were conducted using field column lysimeters planted with Eastern gamagrass. The microbial biomass concentrations from the rhizosphere soil, bulk soil, and unplanted soil were monitored for six months using an incubation–fumigation method. The proposed model was applied to the field microbial biomass data and good correlation between simulated and experimental data was achieved. The results indicate that plants increase microbial concentrations in the soil by providing root exudates as growth substrates for microorganisms. Since plant roots are initially small and do not produce large quantities of exudates when first seeded, the addition of exogenous substrates may be needed to increase initial microbial concentrations at the start of phytoremediation projects.  相似文献   
107.
围栏禁牧对川西北亚高山高寒草甸群落结构的影响   总被引:2,自引:0,他引:2  
围栏禁牧4a后,与放牧草地相比较:1)围栏草地物种数量有所下降,群落内出现物种27种,而长期放牧草地为33种.2)围栏草地物种平均高度较高,为20.23cm,群落分层现象明显;放牧草地物种平均高度仅为8.14cm,群落无分层现象.3)围栏草地内,杂草类的盖度(98%)大于禾草类的盖度(14%);放牧草地上,杂草类的盖度(53%)小于禾草类的盖度(56%)。4)围栏草地以禾草为主的优良牧草的生产能力(35.24g/m2)低于放牧草地的生产能力(75.47g/m2).5)围栏草地的地上生物量(272.64g/m2)和地下0~30cm生物量(801.61g/m3)都高于放牧草地的地上生物量(184.84g/m2)和地下0~30cm生物量(683.82g/m3).研究结果表明,围栏草地具有比放牧草地更复杂的群落结构,但其物种组成和优良牧草的生产能力,都低于放牧草地.  相似文献   
108.
九寨沟主要植物群落生物量的空间分布   总被引:7,自引:0,他引:7  
研究了九寨沟自然保护区主要植物群落的生物量以及生物量在九寨沟的空间分布格局 ,并用群落的总生物量量度不同群落在九寨沟陆生生态系统中的相对重要性 .在野外实地调查中 ,采取皆伐法测定了乔木群落林下层以及灌丛和草甸群落的地上部分生物量 ;对样方中乔木的胸径、树高进行了测量 ,利用经验公式估算乔木层的生物量 .研究结果表明 ,所有群落中生物量最大的为亚高山暗针叶林 ,平均为 380thm-2 左右 ,总生物量亦占了整个九寨沟生物量总量的 90 %以上 ,为九寨沟陆地生态系统中最重要的植物群落 ;高山草甸和流石滩植被生物量最小 ,平均为 1thm-2以下 .整个九寨沟的总生物量约为 8.3× 10 6t,平均生产力大于 5 .89thm-2 a-1.垂直分布上 ,生物量一般随海拔的升高而增加 ,在halt=30 0 0m以上达到最大值 ,之后则随海拔的升高而急剧下降 ,这种分布格局与土壤、气候、人类干扰等各种环境因素密切相关 .与全国平均水平相比 ,九寨沟几乎所有类型的群落的平均生物量都要高于全国同类群落的平均水平 .图 3表 4参 18  相似文献   
109.
不同AM真菌对三叶草耐油性的影响   总被引:9,自引:0,他引:9  
在盆栽条件下研究了4个油浓度(0、5000、10000和50000w/mgkg^-1)下接种辽河油田污染土壤中分离出的3种AM真菌(Glomus mosseae,G.geospora,G.constrictum)对三叶草耐油性的影响。试验结果表明:1)随着油浓度的增加,侵染率亦增加,10000mgkg^-1时G.geospora和G.constrictum的侵染率分别为67.65%和82.86%;2)从侵染率、地上部生物量和菌根依赖性来看,随着油浓度的增加,最适的AM真菌亦不一样,油浓度为0、5000和10000mgkg^-1时,最适AM真菌分别是G.geospora、G.mosseae和G.constrictum;3)油污染土壤上接种AM真菌能促进植株的地下部和地上部的生长,接菌处理的茎干重比相应的对照增加62.2%-267.1%;4)随着油浓度的增加和植物的生育进程,AM真菌的接种效应在增强。图3表3参14  相似文献   
110.
Adoption of agroforestry is paramount as a climate change mitigation and adaptation strategy. The assessment of plant biomass is crucial for understanding the vulnerability of biological systems to climate change. In the present study, agroforestry systems viz., agrisilviculture (AS), agrihorticulture (AH), agrihortisilviculture (AHS) and agrisilvihorticulture (ASH) were investigated for biomass production and carbon stock in vegetation as well as in soil in the Indian central Himalaya along the elevation i.e. E1 (<1100 m), E2 (1100–1400 m), E3 (1400–1700 m), E4 (1700–2000 m) and E5 (>2000 m). Mean aboveground and belowground biomass were 73.9% and 26.1%, respectively, of total biomass (64.4 t ha?1) in agroforestry systems. Fodder and/or timber trees accounted for 31% (in AHS) to 74% (in AS) of total biomass, while fruit trees accounted for 18% (in ASH) to 73% (in AH) of total biomass. The contribution of agriculture crops to total biomass fluctuated between 19% (in ASH) and 26% (in AH). Total vegetation biomass, soil carbon and total carbon density in agroforestry systems increased significantly along the elevation, with maximum biomass at elevation E5 (32.0 t ha?1, 64.7 t C ha?1 and 96.7 t C ha?1). Total biomass of vegetation among agroforestry systems differed significantly. Soil carbon stock was highest in AHS (59.5 t C ha?1) and total carbon density (vegetation + soil) was highest in ASH (93.0 t C ha?1). Thus, in Indian Himalayas, vegetation biomass, carbon stock, soil and total carbon (vegetation + soil) stock increased along the elevation.

Abbrviations: AG: aboveground; BG: belowground; WD: wood density; VOB: volume over bark; BEF: biomass expansion factor; AS: agrisilviculture; AH: agrihorticulture; ASH: agrisilvihorticulture; AHS: agrihortisilviculture; E: elevation; C: carbon; CO2: carbon-di-oxide; IPCC: Intergovernmental Panel on Climate Change; DBH: diameter at breast height; AGBD: aboveground biomass density; BGBD: belowground biomass density; GSVD: growing stock volume density  相似文献   

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