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471.
青藏高原是我国重要的生态屏障,具有重要的水源涵养功能。高寒草地生态系统退化将严重地影响高原的水源涵养功能。为了定量研究人类活动对青藏高原高寒草地水分保持功能的影响,采用大型风洞实验,模拟人类不同的干扰方式和干扰程度对高寒草地土壤水分保持功能的影响。实验样品采自青藏高原三个草地类型:高寒草甸、草原化草甸和高寒草原。干扰方式包括破坏草地地上部分和根系,干扰程度包括轻干扰、中度干扰、重度干扰和全部破坏。实验结果表明,地上部分破坏后,土壤含水率均有下降,降幅分别为:QZ1为6.9%~9.2%、QZ2为6.8%~10.1%、QZ3为9%~10%;当根系遭到破坏后土壤含水率的降幅则分别为:QZ1为16%~30%,QZ2为17.25~32.1%,QZ3为22%~50%,显然,根系破坏后土壤含水率降幅远大于地表植被破坏后的情形。因此,植被根系是高寒草地水分保持功能的关键。随着干扰程度的加剧,土壤含水率在迅速下降。从试验模拟结果看,三个草地类型中土壤水分保持功能分别是高寒草甸>草原化草甸>高寒草原。 相似文献
472.
Haber W 《Environmental science and pollution research international》2007,14(6):359-365
Humans’ superiority over all other organisms on earth rests on five main foundations: command of fire requiring fuel; controlled
production of food and other biotic substances; utilization of metals and other non-living materials for construction and
appliances; technically determined, urban-oriented living standard; economically and culturally regulated societal organization.
The young discipline of ecology has revealed that the progress of civilization and technology attained, and being further
pursued by humankind, and generally taken for granted and permanent, is leading into ecological traps. This metaphor circumscribes
ecological situations where finite resources are being exhausted or rendered non-utilizable without a realistic prospect of
restitution. Energy, food and land are the principal, closely interrelated traps; but the absolutely decisive resource in
question is land whose increasing scarcity is totally underrated. Land is needed for fulfilling growing food demands, for
producing renewable energy in the post-fossil and post-nuclear era, for maintaining other ecosystem services, for urban-industrial
uses, transport, material extraction, refuse deposition, but also for leisure, recreation, and nature conservation. All these
needs compete for land, food and non-food biomass production moreover for good soils that are scarcer than ever. We are preoccupied
with fighting climate change and loss of biodiversity; but these are minor problems we could adapt to, albeit painfully, and
their solution will fail if we are caught in the interrelated traps of energy, food, and land scarcity. Land and soils, finite
and irreproducible resources, are the key issues we have to devote our work to, based on careful ecological information, planning
and design for proper uses and purposes. The article concludes with a short reflection on economy and competition as general
driving forces, and on the role and reputation of today’s ecology.
Updated version of the keynote lecture presented at the EcoSummit 2007 in Beijing, China, May 24. The article is gratefully
dedicated to the memory of my late colleague and friend Frank B. Golley. 相似文献
473.
474.
Predicting Satisfaction with Smart Irrigation Controllers and Their Long‐Term Use among Homeowners in Central Florida
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Maria C. Morera Paul F. Monaghan Michael D. Dukes Eliza Breder 《Journal of the American Water Resources Association》2017,53(4):929-943
Studies throughout Florida have shown smart controllers can substantially reduce irrigation under residential high‐water use conditions. However, successful promotion requires understanding the link between controller performance and the mechanisms by which they are adopted. This article compares irrigation water‐use and survey data collected from households installed with soil moisture sensor and evapotranspiration controllers. The study investigated whether the relative change in irrigation use between two years preceding and two years following installation was a reliable predictor of a homeowner's satisfaction with the device and likelihood of continuing to use it. Results indicated relative changes in irrigation use were only significantly associated with the quality of controller programming. Satisfaction with the controller was largely attributable to satisfaction with the appearance of the landscape and the perceived water‐saving effectiveness of the controller whereas the likelihood of its continued use was only significantly predicted by the level of technical knowledge regarding its functioning and whether or not challenges were experienced with it. Targeting homeowners with supplemental user‐friendly information may best support their long‐term adoption of smart controllers while providing irrigation contractors with training in implementation techniques would represent an integrated strategy for added reductions in residential outdoor water use. 相似文献
475.
We analyzed the relation of the amount and spatial pattern of land cover with stream fish communities, in-stream habitat,
and baseflow in 47 small southeastern Wisconsin, USA, watersheds encompassing a gradient of predominantly agricultural to
predominantly urban land uses. The amount of connected impervious surface in the watershed was the best measure of urbanization
for predicting fish density, species richness, diversity, and index of biotic integrity (IBI) score; bank erosion; and base
flow. However, connected imperviousness was not significantly correlated with overall habitat quality for fish. Nonlinear
models were developed using quantile regression to predict the maximum possible number of fish species, IBI score, and base
flow for a given level of imperviousness. At watershed connected imperviousness levels less than about 8%, all three variables
could have high values, whereas at connected imperviousness levels greater than 12% their values were inevitably low. Connected
imperviousness levels between 8 and 12% represented a threshold region where minor changes in urbanization could result in
major changes in stream condition. In a spatial analysis, connected imperviousness within a 50-m buffer along the stream or
within a 1.6-km radius upstream of the sampling site had more influence on stream fish and base flow than did comparable amounts
of imperviousness further away. Our results suggest that urban development that minimizes amount of connected impervious surface
and establishes undeveloped buffer areas along streams should have less impact than conventional types of development. 相似文献
476.
477.
通过田间试验,在大豆和冬小麦生长季,进行常规翻耕(conventional tillage,T)、免耕(no-tillage with no straw cover,NT)、常规翻耕+秸秆(conventional tillage with straw cover,TS)、免耕+秸秆(no-till with straw cover,NTS)4种耕作措施处理,采用静态箱-气相色谱法测定土壤-作物系统CO_2和N_2O排放通量.结果表明:在大豆生长季,与T相比,NTS在开花-结荚期显著增加了CO_2累积排放量(P=0.045),增幅达27.9%;NT在鼓粒-成熟期显著降低了CO_2累积排放量(P=0.043),降幅达28.9%.与T相比,NT在鼓粒-成熟期的N_2O累积排放量降低了28.3%(P=0.042).在冬小麦生长季,与T相比,TS、NT在拔节-孕穗期使CO_2累积排放量降低了24.3%(P=0.032)和36.0%(P=0.041),在成熟期降低了26.8%(P=0.027)和33.1%(P=0.038).在返青期,NT、NTS、TS的N_2O累积排放量与T比较均没有明显差异,NTS比NT的N_2O累积排放量降低了42.0%(P=0.035).可见,保护性耕作措施对土壤-作物系统CO2排放的影响较大,对N2O排放的影响不明显. 相似文献
478.
中国耕地资源的区域差异与保护问题 总被引:10,自引:2,他引:10
采用土地整理工程手段建设基本农田,有助于实现耕地数量保护与质量提高,但必须遵循因地制宜的原则。论文根据自然地理区划和各地区的地貌特征,从分布特点、地类结构和利用水平等方面,对中国耕地资源的现状进行分析;针对自然条件和经济发展水平的区域差异,提出各地区耕地资源建设和保护的方向与重点。东部季风区应重点完善农田水利设施,改造现有中低产田,提高土地生产能力;西北干旱区不宜大规模开发,要着重发展农业节水技术,提高水资源利用率,防治土地退化;青藏高原区则应限制开垦。在土地整理与耕地资源建设中,因地制宜具体表现在生态保护、量力而行和重在效用3个方面。 相似文献
479.
国外城市自然保护与生态重建及其对我国的启示 总被引:24,自引:0,他引:24
论文对当前国外的城市自然保护与生态重建活动作了介绍。城市自然保护包括野生生物生境保护、城市地区湿地及自然景观保护等内容。城市生态重建则主要有生态公园建设、废弃地生态重建、城市扩散廊道体系建设等方面。城市自然保护与生态重建具有以生态学为基础,多学科交叉;注重生态过程的恢复;多目标、多层次规划设计的特点。在此基础上,论文给出了4点对于我国城市生态建设的启示。 相似文献
480.
武夷山是我国生态文明建设的重点示范区,开展水文调节功能服务价值评估是福建省生态安全保障的重要需求.采用流域分布式时变增益水文模型(DTVGM),在充分考虑流域气象、水文、土地利用类型等信息的基础上,精细化模拟了武夷山流域的水文过程,定量评估了2010年和2015年有植被覆盖和无植被覆盖两种条件下武夷山市及下属各行政区植被生态系统的径流调节量及其价值量.结果表明:①武夷山市2010年和2015年径流调节量分别为5.73×108和5.21×108 m3,折合人民币分别为35.93×108和37.46×108元.②2010年枯水期日均径流调节量相比丰水期下降了0.013×108 m3;2015年枯水期日均径流调节量相比丰水期下降了0.009×108 m3.③星镇村和洋庄乡径流调节价值量明显多于其他行政区,均超过10.48×108元;崇安街道和新丰街道相对较低,均低于1.59×108元;其他几个行政区基本持平,在3.26×108~6.70×108元之间.研究显示,武夷山市区由于植被丰富,林地覆盖面积较大且密度较高,总体水文调节能力较强,但同时也受区域气候条件影响较大,有植被覆盖条件下在应对非极端气候时可以维持较好的径流调节能力,然而在极端特大暴雨事件中,现有植被种类的截留能力还不足以应对短时强降水过程. 相似文献