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1.
William F. Laurance 《Environmental monitoring and assessment》2000,61(1):113-122
This paper describes four global-change phenomena that are having major impacts on Amazonian forests. The first is accelerating deforestation and logging. Despite recent government initiatives to slow forest loss, deforestation rates in Brazilian Amazonia have increased from 1.1 million ha yr–1 in the early 1990s, to nearly 1.5 million ha yr–1 from 1992–1994, and to more than 1.9 million ha yr–1 from 1995–1998. Deforestation is also occurring rapidly in some other parts of the Amazon Basin, such as in Bolivia and Ecuador, while industrialized logging is increasing dramatically in the Guianas and central Amazonia.The second phenomenon is that patterns of forest loss and fragmentation are rapidly changing. In recent decades, large-scale deforestation has mainly occurred in the southern and eastern portions of the Amazon — in the Brazilian states of Pará, Maranho, Rondônia, Acre, and Mato Grosso, and in northern Bolivia. While rates of forest loss remain very high in these areas, the development of major new highways is providing direct conduits into the heart of the Amazon. If future trends follow past patterns, land-hungry settlers and loggers may largely bisect the forests of the Amazon Basin.The third phenomenon is that climatic variability is interacting with human land uses, creating additional impacts on forest ecosystems. The 1997/98 El Niño drought, for example, led to a major increase in forest burning, with wildfires raging out of control in the northern Amazonian state of Roraima and other locations. Logging operations, which create labyrinths of roads and tracks in forsts, are increasing fuel loads, desiccation and ignition sources in forest interiors. Forest fragmentation also increases fire susceptibility by creating dry, fire-prone forest edges.Finally, recent evidence suggests that intact Amazonian forests are a globally significant carbon sink, quite possibly caused by higher forest growth rates in response to increasing atmospheric CO2 fertilization. Evidence for a carbon sink comes from long-term forest mensuration plots, from whole-forest studies of carbon flux and from investigations of atmospheric CO2 and oxygen isotopes. Unfortunately, intact Amazonian forests are rapidly diminishing. Hence, not only is the destruction of these forests a major source of greenhouse gases, but it is reducing their intrinsic capacity to help buffer the rapid anthropogenic rise in CO2. 相似文献
2.
Spatial variations in daily average CO2 concentrations above wetland surface of Xianghai National Nature Reserve, China 总被引:1,自引:0,他引:1
Horizontal and vertical variations of daily average CO2 concentration above the wetland surface were studied in Xianghai National Nature Reserve of China in August, 2000. The primary purpose was to study spatial distribution characteristics of CO2 concentration on the four levels of height(0.1 m, 0.6 m, 1.2 m and 2 m) and compare the differences of CO2 concentration under different land covers. Results showed that daily average CO2 concentration above wetland surface in Xianghai National Natural Reserve was lower than that above other wetlands in northeast China as well as the worldwide average, suggesting that Xianghai wetland absorbed CO2 in August and acted as“sink” of CO2. The horizontal variations on the four levels of height along the latitude were distinct, and had the changing tendency of“decreasing after increasing” with the increase of height. The areas with obvious variations were consistent on different levels of height,and those with the highest variations appeared above surface of shore, sloping field, Typha wetland and Phragmites wetland; the vertical variations were greatly different, with the higher variations in Phragmites wetland and Typha wetland, and the lands near the shore and the sloping field with the lower variations. Spatial variations of daily average CO2 concentrations above wet!and surface were affected by surface qualities and land covers. 相似文献
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4.
目的研究不锈钢-气氮板式热沉中,氮气压力、氮气入口流速以及热沉自身流道深度对热沉传热性能的影响。方法利用AnsysFluent软件,对板式热沉壁面温度分布情况以及进出口压力损失进行模拟仿真。结果提高氮气压力和氮气入口速度可以提升热沉的温度均匀性,但热沉进出口压力损失也会增大。对于气氮-板式热沉而言,流道深度的改变对热沉温度均匀性的影响不大,但流道深度较小时,进出口压力损失较大。结论建议在设计气氮-板式热沉时,流道深度选择在8~10 mm,外流程中氮气压力控制在0.3~0.4 MPa,氮气流速控制在20 m/s为宜。 相似文献
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6.
旱季不同土地利用类型下岩溶碳汇效应差异 总被引:7,自引:4,他引:3
为研究不同土地利用类型下碳酸盐岩溶蚀对土壤CO2消耗量的差异,在2013年11月至2014年5月选取了柏树湾泉、兰花沟泉和后沟泉这3个岩溶泉进行水化学分析及野外监测.结果表明,在上覆植被为林地的柏树湾泉域,泉水的HCO-3浓度最高,草地与耕地下的兰花沟泉次之,耕地为主的后沟泉最低.柏树湾泉的HCO-3主要来自于碳酸对碳酸盐岩的溶蚀,Ca2++Mg2+与HCO-3的摩尔比接近0.5,而兰花沟泉和后沟泉的HCO-3则主要来源于硫酸和硝酸对碳酸盐岩的溶蚀,Ca2++Mg2+与HCO-3的摩尔比远远大于0.5.柏树湾泉域由于凋落物的输入以及土壤透气性差,土壤CO2更容易溶于下渗水并与碳酸盐岩反应,而兰花沟泉和后沟泉的耕地由于土壤疏松,土壤CO2更容易以土壤呼吸的形式返回到大气中.因此,为准确评估岩溶碳汇作用,需要研究不同土地利用类型下碳酸盐岩对CO2消耗量的差异. 相似文献
7.
Cordylanthus palmatus is a hemiparasitic annual of the family Scrophulareacae. It is on both the federal and state lists of endangered species.
Only four widely separated populations remain, all of them in alkali sinks, where the plant thrives in saline-sodic soils.
The largest population is at Springtown, Alameda County, California. This article reports on efforts to develop a management
plan for both the plant and the alkali sink ecosystem. The plan is based on: (1) characterization of hydrology, soils and
geomorphology of the site; (2) characterization of the land use impacts to the site; (3) analysis of plant distribution in
relation to gradients of elevation and soil chemistry; (4) studies on water potential and water stress inCordylanthus palmatus and associated species. On the basis of this plan, both the State of California and private groups are cooperating to create,
restore, and manage a preserve in the Springtown Alkali Sink. 相似文献
8.
R. A. Olson Edwin C. Seim John Muir 《Journal of the American Water Resources Association》1973,9(2):301-311
ABSTRACT Rainfall, stream flow and groundwater have been sampled systematically throughout Nebraska since 1970 and analyzed for mineral N and P and the character of any sediments contained. Fallout N and P in rainfall ranges from 5–14 pounds N and 1 pounds P/A/yr, increasing from west to east across the state with increasing rainfall. The amount of NH4-N is essentially double that of NO3-N. The mean concentration of 2ppm N in rainfall is four times the mean N concentration of streams, demonstrating a substantial depolluting action of soils and growing crops. Where nutrient levels of streams are elevated, cause can usually be traced especially to industrial, sewage or livestock waste intrusion and not to crop production practices. The only significant quantity of nutrient N and P induced by cultivation is that accompanying sediments from eroded fields. The P content of Nebraska groundwater has remained essentially constant during the past 10 years while average NO3-N has increased slightly, a period during which farmer fertilizer use quadrupled. During the same time, irrigation acreage has increased by 50%, livestock numbers by 30%, with corresponding growth in human population and attendant industries. Indications are that irrigation practice has contributed more than any other factor to the small increase in groundwater NO3-N recorded. Individual cases do exist where groundwater NO3-N has increased substantially, especially in areas of intensive irrigation agriculture on very sandy soils and elsewhere with irrigation development in the proximity of ancient NO3-N deposits in mantlerock above the water table. 相似文献
9.
陆地生态系统碳循环研究是全球变化与地球科学研究领域的前沿与热点问题,准确地评估陆地生态系统碳储量和碳汇量是估算未来大气 CO2浓度,预测气候变化及其对陆地生态系统影响的关键。已有相关研究多集中于对区域生态系统碳储量和碳汇量的量的估算,而缺乏针对时间尺度上的变化过程的分析,以及对变化特征空间差异性的分析。本研究基于MODIS NPP数据,结合土地利用数据及土壤有机碳密度分布数据,对三江源地区2000─2010年草地生态系统碳储量时空变化特征进行了分析,同时,基于MODIS GPP数据及China FLUX和America FLUX数据,建立草地生态系统呼吸估算模型,对其碳汇量的时空变化特征进行了分析,以期明确该地区的碳储存能力及其变化过程,为该区域草地生态系统保护和管理提供科学依据。研究结果表明:(1)三江源地区草地生态系统总碳储量为53.38×108 t,平均碳密度为14.94 kg·m-2(以C计)。土壤和植被碳储量分别为53.07×108 t和0.31×108 t,平均碳密度分别为14.85 kg·m-2和86.77 g·m-2。(2)近10多年来,三江源地区草地生态系统多年平均碳汇量为0.4×108 t,单位面积平均碳汇量为86.80 g·m-2·a-1(以C计),表明该地区草地生态体统是一个碳汇。(3)2000年以来,三江源地区草地生态系统总碳储量及总碳汇量均呈波动增加趋势,碳汇功能有所增强。(4)三江源地区草地生态系统碳储量及碳汇量的空间分布格局及其变化趋势的空间分布均呈现明显的空间差异性。(5)MODIS GPP/NPP数据能够支撑较大尺度草地生态系统碳储量及碳汇量格局与变化趋势分析,较传统方法更为便捷高效。 相似文献
10.
利用静态箱法研究了夏季降雨对上海市城市草坪温室气体排放的影响,结果表明,晴天上海市城市草坪是N_2O和CO_2的源,CH_4的汇;降雨会削弱N_2O和CO_2排放,使得草坪由CH_4的汇转变为排放源。N_2O通量在晴天和雨后分别为1.37±3.47和1.06±2.67μmol/(m2·h),CO_2通量在晴天和雨后分别为13.33±8.59和6.46±2.61mmol/(m~2·h),CH_4通量在晴天和降雨后分别为-0.08±3.77和0.22±6.27μmol/(m~2·h)。明暗箱对比实验显示,草坪生态系统能有效缓解土壤对大气N_2O和CO_2的贡献。N_2O和CO_2通量与光合有效辐射和温度呈显著负相关(p0.01),CH_4和二者相关性不显著。降雨通过降低光合作用和温度,间接削弱城市草坪CO_2和N_2O的排放。降雨可能通过提高含水率抑制城市草坪对CH_4的吸收,促进其排放。 相似文献