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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
3.
Restoring connectivity between fragmented populations is an important tool for alleviating genetic threats to endangered species. Yet recovery plans typically lack quantitative criteria for ensuring such population connectivity. We demonstrate how models that integrate habitat, genetic, and demographic data can be used to develop connectivity criteria for the endangered Mexican wolf (Canis lupus baileyi), which is currently being restored to the wild from a captive population descended from 7 founders. We used population viability analysis that incorporated pedigree data to evaluate the relation between connectivity and persistence for a restored Mexican wolf metapopulation of 3 populations of equal size. Decreasing dispersal rates greatly increased extinction risk for small populations (<150–200), especially as dispersal rates dropped below 0.5 genetically effective migrants per generation. We compared observed migration rates in the Northern Rocky Mountains (NRM) wolf metapopulation to 2 habitat‐based effective distance metrics, least‐cost and resistance distance. We then used effective distance between potential primary core populations in a restored Mexican wolf metapopulation to evaluate potential dispersal rates. Although potential connectivity was lower in the Mexican wolf versus the NRM wolf metapopulation, a connectivity rate of >0.5 genetically effective migrants per generation may be achievable via natural dispersal under current landscape conditions. When sufficient data are available, these methods allow planners to move beyond general aspirational connectivity goals or rules of thumb to develop objective and measurable connectivity criteria that more effectively support species recovery. The shift from simple connectivity rules of thumb to species‐specific analyses parallels the previous shift from general minimum‐viable‐population thresholds to detailed viability modeling in endangered species recovery planning. Desarrollo de Criterios de Conectividad Metapoblacional a Partir de Datos Genéticos y de Hábitat para Recuperar al Lobo Mexicano en Peligro de Extinción 相似文献
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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.
湖南省碳源与碳汇变化的时序分析 总被引:1,自引:0,他引:1
陈秋红 《长江流域资源与环境》2012,21(6):766-772
在全球气候变暖的背景下,减少温室气体排放、发展低碳经济成为各地区在发展中的普遍共识。以湖南省为研究区域,以1995~2008年为研究时序,从能源消费、主要工业产品生产工艺过程、土地利用变化与牲畜管理、固体废弃物处理与废水处理和排放4个方面综合分析了碳源与碳汇的变化情况。研究表明:1995~2008年,湖南省温室气体排放总量约在220亿t(2000年)至399亿t(2008年)CO2当量之间,14 a间增长了6118%,年均增长374%;碳汇总量约在1754亿t(1995年)至2537亿t(2007年)CO2当量之间,14 a间增长了3607%,年均增长约240%;能源消费与农业部门是湖南省温室气体的主要来源,林地是湖南省碳汇的主要来源;综合碳源与碳汇变化的均衡结果,1995~2008年湖南省呈碳汇盈余状态,净碳汇在2001~2007年持续增加,14 a间增长了31.94%,年均增长2.15% 相似文献
8.
北京现代都市低碳农业的前景与策略 总被引:3,自引:0,他引:3
现代都市发展低碳农业是降低温室气体排放,实现国家宏观战略目标的重要组成部分.本文对低碳农业的定义、特征进行了初步阐述,认为低碳农业是通过技术改进和制度创新建立起来的一种低投、高产、低(负)碳、生态的现代农业,具有系统开放性、技术集成性、生命周期性、过程安全性四个特征.利用碳汇/源平衡方法分析北京农业现状,结果表明:目前北京农业领域的碳源与汇分别为10-20 TgCO2eq·a-1和10.23-14.16 TgCO2eq·a-1,碳源基本稳定,碳汇还有较大的发展潜力.根据北京市生态特点和未来农业的定位,发展低碳农业,在技术层面上,可以加强与种植相关的土壤碳汇建设,与养殖相关的减排和其他减排技术;在制度层面上,建立农业布局调整机制,大力发展清洁生产机制、生态补偿机制、农业准入机制和综合调节机制.预测北京低碳农业的前景,初步估算未来北京农业的碳汇潜力可以达到20-30 TgCO2eq·a-1,直接的碳源可以减少到4-5 TgCO2eq·a-1.通过发展低碳农业,不仅可以抵消农业碳源,还能抵消6%-10%总温室气体,真正起到净碳汇功能. 相似文献
9.
广东长隆碳汇造林项目作为我国首个获得国家发展和改革委员会签发的林业温室气体自愿减排(CCER)项目,对于我国林业碳汇参与应对气候变化具有重要的示范意义。本文对广东长隆碳汇造林项目进行了成本收益分析,发现林业碳汇交易价格被远远低估,从而使该项目不具备经济上的可复制性。为探究交易价格被低估的原因,本文考察了林业碳汇市场的供需关系,发现目前碳交易市场对林业碳汇CCER需求不足仅是表象,供需错配才是实质。首先,从需求侧来看,广东省碳排放配额设置过于宽松,缺乏林业碳汇CCER的接纳能力;其次,就供给侧而言,CCER的交易成本很高,且项目申报要求业主为企业法人,这严重限制了林业碳汇CCER的有效供给。鉴于以上问题,本文提出应同时从林业碳汇CCER的需求侧和供给侧着手改革。就需求侧而言,收紧广东省碳排放配额总量,并将林业碳汇CCER交易由补充机制改为配额管理。就供给侧而言,可以结合广东省推进林业碳普惠制度,将项目申报主体和交易主体放宽到独立法人和个人,广泛吸收民间资本、培育大型林业企业开展碳汇造林项目;降低碳汇项目进入门槛,根据省情制定方法学,简化签批手续。 相似文献
10.
热真空设备中与温度相关的试验技术探讨 总被引:1,自引:0,他引:1
以RZHM-1400-AB型热真空试验箱为实例,简述设备主要工作原理。强调其温度传递方式及航天产品在热真空试验中温度参数的重要性。以无数试验数据为依据,着重论证何种类型测温传感器与实际设备相匹配,同时论证选取何种外形的测温传感器为最佳温度测量工具。同时,进一步介绍几种在热真空试验中使用这些测温传感器的方法,以减少不必要的人为测量误差。 相似文献