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11.
铁路建设对动物生态行为的影响与控制策略   总被引:6,自引:0,他引:6  
从动物生境的破坏与污染两方面分析了铁路建设对动物生态行为的影响,并从铁路的路线选择、防噪减噪、设置动物通道、加强管理等方面论述了其控制对策。  相似文献   
12.
复垦区景观异质性研究   总被引:2,自引:0,他引:2  
景观生态学目前发展较为迅速,研究的领域也日渐广泛,不仅有理论的探讨,也有应用方面的研究,从研究领域来看,研究较多的还是农业景观,森林景观、自然保护区与国家公园。复垦区景观异质性的研究还较少见,本文就这一问题作一初步探讨。  相似文献   
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天山云杉天然林分土壤呼吸速率的时空变化规律分析   总被引:1,自引:0,他引:1  
天山云杉(Picea schrenkiana var.tianschanica(Rupr.)Chen et Fu)是构成天山山地森林生态系统的主体。在天山中部,从天山云杉在此区域分布的底线开始,结合天山云杉自然分布特征,沿每隔约100m的海拔梯度选择典型地段设置样地。根据远红外气体分析原理,采用LI-6400-09土壤呼吸室和LI-6400便携式光合作用测量系统,于2006年6-9月,测定了天山云杉天然林分在生长季内土壤呼吸速率随海拔高度和时间的变化规律。在空间上,林分的土壤呼吸速率并非随海拔高度呈线性增加或减少的关系,而是有规律的波动,在海拔1950~2110m之间,土壤呼吸速率是随着海拔高度的增加而降低,在2110~2428m之间是随着海拔高度的增加而升高,在海拔2428m处达到最大的呼吸速率值后又降低。不同海拔高度林分的土壤呼吸速率主要受土壤表面空气相对湿度及土壤温度的影响。在时间上,林分的土壤呼吸速率在生长季内随不同月份的变化为单峰曲线,其最大值出现在7月份;生长季内土壤呼吸速率与土壤温度呈显著负相关,与土壤表面空气相对湿度呈极显著正相关。而林分土壤呼吸速率的日变化在各时间点上的大小排序为7月>6月>8月>9月。它的变化与土壤温度具有极显著的正相关性,与土壤表面空气相对湿度具有显著的负相关性。  相似文献   
14.
环境是动物生存的基础,人类的活动对环境所造成的影响,直接导致动物种群数量的变动。通过渭河咸阳段气候、水质、水域面积、植物等环境因素的改变对野鸭数量分布影响的调查,表明环境的恶化导致了动物的生存受到威胁,数量减少,分布区域缩小。随着环境保护意识的增强,渭河流域的水土流失,水质污染、退耕还草等环境问题逐渐得到解决,动物的生活环境不断得到改善,其种群数量、分布范围随之增加。  相似文献   
15.
/ Rivers transport sediment from eroding uplands to depositional areas near sea level. If the continuity of sediment transport is interrupted by dams or removal of sediment from the channel by gravel mining, the flow may become sediment-starved (hungry water) and prone to erode the channel bed and banks, producing channel incision (downcutting), coarsening of bed material, and loss of spawning gravels for salmon and trout (as smaller gravels are transported without replacement from upstream). Gravel is artificially added to the River Rhine to prevent further incision and to many other rivers in attempts to restore spawning habitat. It is possible to pass incoming sediment through some small reservoirs, thereby maintaining the continuity of sediment transport through the system. Damming and mining have reduced sediment delivery from rivers to many coastal areas, leading to accelerated beach erosion. Sand and gravel are mined for construction aggregate from river channel and floodplains. In-channel mining commonly causes incision, which may propagate up- and downstream of the mine, undermining bridges, inducing channel instability, and lowering alluvial water tables. Floodplain gravel pits have the potential to become wildlife habitat upon reclamation, but may be captured by the active channel and thereby become instream pits. Management of sand and gravel in rivers must be done on a regional basis, restoring the continuity of sediment transport where possible and encouraging alternatives to river-derived aggregate sources.KEY WORDS: Dams; Aquatic habitat; Sediment transport; Erosion; Sedimentation; Gravel mining  相似文献   
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ABSTRACT: Detailed studies of long-term management impacts on rangeland streams are few because of the cost of obtaining detailed data replicated in time. This study uses government agency aquatic habitat, stream morphologic, and ocular stability data to assess land management impacts over four years on three stream reaches of an important rangeland watershed in northwestern Nevada. Aquatic habitat improved as riparian vegetation reestablished itself with decreased and better controlled livestock grazing. However, sediment from livestock disturbances and road crossings and very low stream flows limited the rate of change. Stream type limited the change of pool variables and width/depth ratio, which are linked to gradient and entrenchment. Coarse woody debris removal due to previous management limited pool recovery. Various critical-element ocular stability estimates represented changes with time and differences among reaches very well. Ocular stability variables tracked the quantitative habitat and morphologic variables well enough to recommend that ocular surveys be used to monitor changes with time between more intensive aquatic surveys.  相似文献   
19.
艾比湖湖周生境恶化及其恢复对策   总被引:1,自引:0,他引:1  
艾比湖是新疆第二大咸水湖,湿地内分布着多种植被类型。自20世纪60年代开始,湖水水位急剧下降,造成湖盆大面积裸露,在当地强风作用下成为巨大风沙之源,从而成为困扰新疆地区的严重生态问题。通过有关资料对艾比湖及其毗邻地区环境恶化的现象进行剖析,提出保护、恢复的相关对策。  相似文献   
20.
Anthropogenic environmental impacts can disrupt the sensory environment of animals and affect important processes from mate choice to predator avoidance. Currently, these effects are best understood for auditory and chemosensory modalities, and recent reviews highlight their importance for conservation. We examined how anthropogenic changes to the visual environment (ambient light, transmission, and backgrounds) affect visual communication and camouflage and considered the implications of these effects for conservation. Human changes to the visual environment can increase predation risk by affecting camouflage effectiveness, lead to maladaptive patterns of mate choice, and disrupt mutualistic interactions between pollinators and plants. Implications for conservation are particularly evident for disrupted camouflage due to its tight links with survival. The conservation importance of impaired visual communication is less documented. The effects of anthropogenic changes on visual communication and camouflage may be severe when they affect critical processes such as pollination or species recognition. However, when impaired mate choice does not lead to hybridization, the conservation consequences are less clear. We suggest that the demographic effects of human impacts on visual communication and camouflage will be particularly strong when human‐induced modifications to the visual environment are evolutionarily novel (i.e., very different from natural variation); affected species and populations have low levels of intraspecific (genotypic and phenotypic) variation and behavioral, sensory, or physiological plasticity; and the processes affected are directly related to survival (camouflage), species recognition, or number of offspring produced, rather than offspring quality or attractiveness. Our findings suggest that anthropogenic effects on the visual environment may be of similar importance relative to conservation as anthropogenic effects on other sensory modalities.  相似文献   
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