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91.
生物质燃烧颗粒物有机示踪化合物的测定和应用   总被引:2,自引:0,他引:2  
使用气相色谱-质谱法对2002年7月-2003年7月的北京市大气粗、细颗粒物样品中的左旋葡聚糖等糖类化合物进行了测定。结果表明,左旋葡聚糖主要存在于细颗粒中,可以作为示踪化合物来研究生物质燃烧现象。生物质燃烧对北京市大气颗粒物有较重要的贡献。对应于12%-40%的PM2.5有机碳和10%-33%的PM10有机碳。北京市在2002年10月和11月受到明显的生物质燃烧的影响,可能由于农田秸杆焚烧和秋季落叶焚烧。2003年5月7日颗粒物样品受到直线距离约为1000km以外的内蒙古自治区呼伦贝尔市大兴安岭林区森林大火烟雾的影响。生物质燃烧事件具有突发性,可以长距离传输;生物质作为农村生物燃料的使用其燃烧排放具有经常性和持久性的特征。  相似文献   
92.
For a thorough and up-to-date evaluation of all the fossil energy costs of ethanol production from sugarcane in both the U.S. and Brazil, every energy input in the biomass production and ultimate conversion process must be included. In this study, more than 12 energy inputs in average U.S. and Brazilian sugarcane production are evaluated. Then in the fermentation/distillation operation, nine more fossil fuel inputs are identified and included. Some energy and economic credits are given for the bagasse to reduce the energy inputs required for steam and electricity. Based on all the fossil energy inputs in U.S. sugarcane conversion process, a total of 1.12 kcal of ethanol is produced per 1 kcal of fossil energy expended. In Brazil a total of 1.38 kcal of ethanol is produced per 1 kcal of fossil energy expended. Some pro-ethanol investigators have overlooked various energy inputs in U.S. and Brazilian sugarcane production, including farm labor, farm machinery, processing machinery, and others. In other studies, unrealistic low energy costs were attributed to such energy inputs, as nitrogen fertilizer, insecticides, and herbicides. Both the U.S. and Brazil heavily subsidize ethanol production. Thus billions of dollars are invested in subsidies and this significantly increases the costs to the consumers. The environmental costs associated with producing ethanol in the U.S. and Brazil are significant but have been generally overlooked. The negative environmental impacts on the availability of cropland and freshwater, as well as on air pollution and public health, have yet to be carefully assessed. These environmental costs in terms of energy and economics should be calculated and included in future ethanol analyses so that sound assessments can be made. In addition, the production of ethanol in the U.S. and Brazil further confirms that the mission of converting biomass into ethanol will not replace oil. This mission is impossible. General concern has been expressed about taking food crops to produce ethanol for burning in automobiles instead of using these crops as food for the many malnourished people in the world. The World Health Organization reports that more than 3.7 billion humans are currently malnourished in the world—the largest number of malnourished ever in history.  相似文献   
93.
阐述了利用Landsat 5 TM影像在鄱阳湖国家自然保护区进行沉水植物地上生物量估算的方法和过程。研究结果显示,采用该影像,结合传统的采样策略和估算方法进行生物量的估算,在此研究区域中具有一定的局限性。分析了产生这一问题的原因,并对后续的研究工作提出了具体的建议。  相似文献   
94.
In recent years, reclaimed wastewater as a water source for urban artificial landscape rivers is being rapidly developed in some coastal cities with limited water resource available in China. However, eutrophication occurs more often in the landscape waterbody with reclaimed wastewater than in natural rivers and lakes. The study of restoration and reconstruction of macrophytes, especially the submerged aquatic vegetation, is essential to inhibit eutrophication of reclaimed wastewater. This study investigated the seasonal variation of biomass of Ruppia maritima in the artificial landscape river using reclaimed wastewater as the only water source in Tianjin, China. It was found that there were two seasonal growth peaks of Ruppia maritima each year in the coastal reclaimedwastewater. The contents of nitrogen and phosphorus of Ruppia maritima varied with the season.  相似文献   
95.
The study by the eddy covariance technique in the alpine shrub meadow of the Qing-hai-Tibet Plateau in 2003 and 2004 showed that the net ecosystem carbon dioxide exchange (NEE) exhibited noticeable diurnal and annual variations, with more distinct daily changes during the warmer seasons. The CO2 emission of the shrub ecosystem culminated in April and September while the CO2 absorption capacity reached a maximum in July and August. The absorbed carbon dioxide during the two consecutive years was 231.4 and 274.8 g CO2·m-2 respectively, yielding an average of 253.1 gCO2·m-2 per year: that accounts for a large proportion of absorbed CO2 in the region. Obviously, the diurnal carbon flux was negatively related to temperature, radiation and other atmospheric factors. Still, minute discrepancies in kurtosis and duration of carbon emission/absorption were detected between 2003 and 2004. It was found that the CO2 flux in the daytime was similarly affected by photosynthetic photon flux density in both years. Temperature appears to be the most important determinant of CO2 flux: specifically, the high temperature during the plant growing season inhibits the carbon absorption capacity. One potential explanation is that soil respiration is enhanced under such condition. Analysis of biomass revealed that the annual net carbon fixed capacity of aboveground and belowground biomass was 544.0 in 2003 and 559.4 g Cm"2 in 2004, which coincided with the NEE absorption capacity (63.1 g C·m-2 in 2003 and 74.9 g C·m-2 in 2004) in the corresponding plant growing season.  相似文献   
96.
选择岷江上游海拔2100-2300m地段的辽东栎萌生株个体69株,测定了每株生长参数(年龄、高度、基径、冠幅)、各器官生物量及地上总生物量,分析了各器官生物量及构件分配与生长参数的相互关系。结果表明,辽东栎萌生株构件分配的大小排序为:茎干〉枝〉皮〉叶:随径级增大。茎干、大枝生物量所占总生物量比例上升,其他器官所占比例减小。辽东栎年龄与高度呈S曲线关系,其他均表现出很好的幂指数函数关系;各构件器官生物量与生长参数大多也呈幂指数函数W=aD^h(D为基径)关系。基径为估测辽东栎萌生株地上各器官生物量及总生物量的最佳因子。  相似文献   
97.
罗丹  张宏  泽柏 《山地学报》2006,24(B10):275-281
生物量是重要的植物群落数量特征,直接反映生态系统生产者的物质生产量,是生态系统生产力的重要体现。高寒草甸广泛分布于青藏高原,是高寒生态系统的主要植被类型。回顾了高寒草甸生物量的研究成果。高寒草甸生物量呈典型的金字塔式垂直分布格局,地上生物量主要集中于0—10cm的冠层,地下生物量也集中分布于0—10cm的土层内。增温和多雨会降低生物量,叶面积和物种丰富度与地上生物量成正相关关系,氮素的增加有助于植被生物量的增长,而放牧率与生物量成显著负相关。  相似文献   
98.
An evaluation of the distribution of P concentrations in streamflow, P fractions andthe microbial biomass P pool was made of bed and bank sediments along a lowlandstream in New Zealand. Agricultural intensification increased downstream. However,most P fractions decreased downstream (total P decreased from c. 400 to 250 mg kg-1) in bed sediments, while P in streamflow remained relatively constant (generally < 0.005 mg l-1) and sediment microbial P increased from 2 to 8 mg kg-1. An investigation of P release from dried and rewetted sediments showed that solution P (CaCl2-P) increased, on average > 300%, and proportional to the size of the microbial biomass P pool before drying, except in sediments with much organic carbon (OC). When supplied with a P source (1 mg l-1) and then simultaneously with a C source (glucose, 100 mg l-1), all sediment behaved similarly and biotic sorption accounted for, on average, 27 and 34% of the total sediment uptake, respectively (maximum of 58%). The quantity of P taken up was related to the initial size of the microbial biomass P pool, and the availability of P as influenced by organic P complexes and OC. The sediment microbial biomass represents a transient, but small store of P could be useful to indicate bioavailable P inputs.  相似文献   
99.
岷江干旱河谷三种主要灌丛地上生物量的分布规律   总被引:24,自引:1,他引:24  
灌丛是岷江干旱河谷主要的植被类型之一,也是该地区相对稳定的生态系统类型。在岷江干旱河谷的水土保持中发挥着重要的作用。本文通过野外样地调查和实验,研究了岷江干旱河谷分布最为广泛的莸灌丛、小花滇紫草灌丛和川甘亚菊灌丛3种灌丛类型的地上生物量,并探讨了其分布规律和影响因素。结果表明:(1)在3种灌丛类型中,川甘亚菊灌丛的平均地上生物量最大,达4819 8kg·hm-2,其次是莸灌丛,为1652 9kg·hm-2,而滇紫草灌丛的平均地上生物量最小,仅为1407 2kg·hm-2;(2)在同一灌丛类型中,不同样地的灌丛地上生物量存在着差异,其中莸灌丛的地上生物量的变化幅度最大,为304 2~5804 7kg·hm-2;滇紫草灌丛地上生物量的变化幅度为241 1~3889 2kg·hm-2;川甘亚菊灌丛地上生物量的变化幅度相对较小,为2089 8~6457 5kg·hm-2;说明川甘亚菊灌丛的群落结构相对稳定。(3)莸灌丛的地上生物量随海拔的上升而减少,而小花滇紫草灌丛和川甘亚菊灌丛的地上生物量则随海拔梯度的升高而增加,但三者都呈现出较好的相关性。(4)在3种灌丛类型中,莸灌丛的土壤水分条件相对较好,其次为小花滇紫草灌丛,川甘亚菊灌丛的土壤水分条件最差。3种灌丛中,小花滇紫草灌丛和川甘亚菊灌丛的地上生物量受土壤水分条件的影响较大,表现为随着土壤水  相似文献   
100.
青藏公路铁路沿线生态系统特征及道路修建对其影响   总被引:36,自引:2,他引:36  
陈辉  李双成  郑度 《山地学报》2003,21(5):559-567
根据2001—08和2002—08月野外调查数据及2001年1:100万中国植被图、1996年1:400万青藏高原植被区划图和2000年青藏铁路沿线自然保护区分布及功能区界调整图,以青藏公路铁路沿线植被生态系统为研究对象,运用ARCVIEW和ARC/INFO软件研究青藏公路铁路建设对沿线生态系统结构的影响,结论如下:①青藏公路铁路南北跨越9个纬度,东西跨越12个经度,共穿越青东祁连山地草原地带、柴达木山地荒漠地带、青南高寒草甸草原地带、羌塘高寒草原地带、果洛那曲高寒灌丛草甸地带和藏南山地灌丛草原地带6个自然区,对植被类型的统计结果显示了地带性。②青藏公路铁路的建设对生态系统产生直接的切割,使景观更加破碎。③青藏公路铁路的建设直接破坏沿线植被生态系统(主要为50m缓冲区内),年损失总净初级生产量为30504.62t,损失总生物量432919.25~1436104.3t/a。损失总净初级生产量占1km缓冲区年净初级生产量535005.07~535740.11t/a的百分比为5.70%,占10km缓冲区年净初级生产量3408950.45~3810480.92t/a的0.80~0.89%;损失生物量占1km缓冲区生物总量7502971.85~25488342.71t/a的5.70%,占10km缓冲区总生物量43615065.35~164150665.37t/a的0.80%~0.89%。  相似文献   
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