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981.
Jeannine H. Richards 《Conservation biology》2021,35(5):1496-1506
Epiphytes, air plants that are structurally dependent on trees, are a keystone group in tropical forests; they support the food and habitat needs of animals and influence water and nutrient cycles. They reach peak diversity in humid montane forests. Climate predictions for Central American mountains include increased temperatures, altered precipitation seasonality, and increased cloud base heights, all of which may challenge epiphytes. Although remaining montane forests are highly fragmented, many tropical agricultural systems include trees that host epiphytes, allowing epiphyte communities to persist even in landscapes with lower forest connectivity. I used structural equations models to test the relative effects of climate, land use, tree characteristics, and biotic interactions on vascular epiphyte diversity with data from 31 shade coffee farms and 2 protected forests in northern Nicaragua. I also tested substrate preferences of common species with randomization tests. Tree size, tree diversity, and climate all affected epiphyte richness, but the effect of climate was almost entirely mediated by bryophyte cover. Bryophytes showed strong sensitivity to mean annual temperature and insolation. Many ferns and some orchids were positively associated with bryophyte mats, whereas bromeliads tended to establish among lichen or on bare bark. The tight relationships between bryophytes and climate and between bryophytes and vascular epiphytes indicated that relatively small climate changes could result in rapid, cascading losses of montane epiphyte communities. Currently, shade coffee farms can support high bryophyte cover and diverse vascular epiphyte assemblages when larger, older trees are present. Agroforests serve as valuable reservoirs for epiphyte biodiversity and may be important early-warning systems as the climate changes. 相似文献
982.
Scientific consensus shows that the changes related to climate change are already occurring and will intensify in the future. This will likely result in significant alterations to coastal ecosystems such as mangroves, increase coastal hazards and affect lifestyles of coastal communities. There is increasing speculation that mangrove, a socio-economically important ecosystem, will become more fragile and sensitive to uncertain climate variability such as sea level rise. As a result, mangrove-dependent societies may find themselves trapped in a downward spiral of ecological degradation in terms of their livelihoods and life security. Strengthening the resilience capacity of coastal communities to help them cope with this additional threat from climate change and to ensure sustainability calls for immediate action. In this context, this paper critically examines the regional implications of expected sea level rise and threats to mangrove-dependent communities through a case study approach. The main objective is to highlight the requirement for climate change communication and education to impart information that will fulfil three expectations: (1) confer understanding; (2) assess local inference on climate change through a participatory approach; and (3) construct a framework for climate change awareness among mangrove-dependent communities through community-based non-formal climate change education. This scale of approach is attracting increasing attention from policymakers to achieve climate change adaptation and derive policies from a social perspective. 相似文献
983.
土壤呼吸是指土壤产生CO2的所有代谢作用,是碳素由陆地生态系统进入大气的主要途径和大气CO:的重要来源,是影响全球碳循环的途径之一,它的变化可能会对大气CO2浓度产生显著的影响。城市化的推进引起世界范围内土地利用/覆盖方式的变化,这种变化对土壤的理化性质、生物学特性等产生深刻影响,从而影响土壤的呼吸作用。因此,研究城市化引起的土壤呼吸变化对于精确地估测陆地碳循环有着重要意义。国外在20世纪90年代就开始了城乡梯度上土壤碳动态的研究,而我国在这这方面的研究还处在起步阶段,尤其是关于由自然土壤转变为城市土壤后,土壤呼吸变化的机制研究较少。已有的研究表明,在干旱和半干旱地区,城市化引起土壤呼吸降低,而非干旱区则相反。此外,城市化过程中,土壤呼吸变化的方向和强度因所处的气候区域、利用的土地来源、城市内部的土地利用方式及植被类型的不同等而存在差异,但仍存在许多不确定的影响因素,如与气候变化的耦合作用等。因此,在未来城市化过程对土壤呼吸作用的研究中,应加强土壤呼吸作用的直接影响因子和间接影响因子、时空差异及其他更精细的研究。 相似文献
984.
Reyer Gerlagh Snorre Kverndokk Knut Einar Rosendahl 《Journal of Environmental Economics and Management》2014
We study the optimal time path for clean energy innovation policy. In a model with emission reduction through clean energy deployment, and with R&D increasing the overall productivity of clean energy, we describe optimal R&D policies jointly with emission pricing policies. We find that while emission prices can be set at the Pigouvian level independently of innovation policy, the optimal level of R&D subsidies and patent lifetime change with the stages of the climate problem. In the early stages of clean energy development, innovators find it more difficult to capture the social value of their innovations. Thus, for a given finite patent lifetime, optimal clean energy R&D subsidies are initially high, but then fall over time. Alternatively, if research subsidies are kept constant, the optimal patent lifetime should initially be long and fall over time. 相似文献
985.
不同灌水条件下冬小麦的产量、水分利用与氮素利用特点 总被引:4,自引:0,他引:4
了解不同灌水量(次数)处理条件下华北平原地区冬小麦的产量形成、氮素利用与水分利用的特点.在大田相同的施肥量与施肥方式、播前浇底墒水750m3.hm-2条件下,设置春季不灌水、春季灌2水(拔节+开花)和春季灌4水(起身+孕穗+开花+灌浆)3个水分处理(每次灌水定额750 m3.hm-2),分析了不同灌水量(次数)对植株氮素吸收利用、产量、土壤水分动态及利用效率的影响.冬小麦生育期内总耗水量和开花后耗水量均表现为随灌水次数(量)增加而增大的趋势,但耗土壤水量却随灌水增加而显著减少.春季灌水处理的经济产量均显著高于春季不灌水处理,但春灌2水和春灌4水之间无显著差异.水分利用效率(WUE)在春不灌水和春灌2水间无显著差异.但它们均显著高于春季灌4水处理.植株总吸氮量均随着灌水次数(灌水量)的增加而呈现出上升的趋势,春灌2水和灌4水处理的总吸氮量无显著差异,但它们均显著大于不灌水处理.氮素生理效率和氮素收获指数随灌水量(次数)增加略有下降,不同灌水处理之间并无显著差异.春灌2水处理相对春季不灌水处理显著提高了经济产量和植株总吸氮量,水分利用效率并没有明显下降;与春灌4水处理相比,经济产量和植株总吸氮量没有明显降低.但水分利用效率和水分边际效益显著提高.冬小麦节水栽培(春灌2水)有利于节水、氮素高效利用和高产的实现. 相似文献
986.
987.
Shams Ali Baig Linglin Huang Tiantian Sheng Xiaoshu Lv Zhe Yang Muhammad Qasim 《Chemistry and Ecology》2017,33(1):76-87
Cyanobacterial bloom events in South Taihu Lake cause serious water quality problems and disturb aesthetic view of lake’s environment. In this study, correlations between cyanobacterial blooms and hydro-meteorological factors, including water quality, temperature and precipitation were investigated. Results demonstrated that South Taihu Lake was heavily affected by cyanobacteria and the proliferation of cyanobacteria due to variations in hydro-meteorological factors and water quality conditions. Water quality parameters, including COD, NH3-N, TN and TP improved significantly since 2008 even at an elevated cyanobacterial bloom situation. Correlation analyses have shown that the development of cyanobacterial density and chlorophyll a concentration was sensitive to a wider temperature variation. The optimum temperature for cyanobacteria was 20°C, while extremely low and high temperatures were found to suppress their growth. Moreover, unusual rainfall patterns were measured during the study period (2003–2009), which showed an adverse impact on cyanobacterial development. Findings from this study suggested that seasonal lake’s water quality monitoring; suitable treatment of cyanobacterial blooms and strict policy implementation can solve the water quality issues in highly eutrophic lakes like Taihu. 相似文献
988.
William R. L. Anderegg Leander D. L. Anderegg Clare Sherman Daniel S. Karp 《Conservation biology》2012,26(6):1082-1090
Forest die‐off around the world is expected to increase in coming decades as temperature increases due to climate change. Forest die‐off will likely affect understory plant communities, which have substantial influence on regional biological diversity, ecosystem function, and land–atmosphere interactions, but how die‐off alters these plant communities is largely unknown. We examined changes in understory plant communities following a widespread, drought‐induced die‐off of trembling aspen (Populus tremuloides) in the western United States. We assessed shrub and herbaceous cover and volume in quadrats in 55 plots located across a wide range of levels of aspen mortality. We measured species richness and composition of herbaceous plant communities by recording species presence and absence in 12 sets of paired (1 healthy, 1 dying) aspen plots. Although understory composition in healthy and dying stands was heterogeneous across the landscape, shrub abundance, cover, and volume were higher and abundance of herbaceous species, cover, and volume were lower in dying aspen stands. Shrub cover and volume increased from 2009 to 2011 in dying stands, which suggests that shrub growth and expansion is ongoing. Species richness of herbs declined by 23% in dying stands. Composition of herbs differed significantly between dying and healthy stands. Richness of non‐native species did not differ between stand types. The understory community in dying aspen stands was not similar to other shrub‐dominated plant communities in the region and may constitute a novel community. Our results suggest that changes in understory plant communities as forests die off could be a significant indirect effect of climate change on biological diversity and forest communities. Efectos de la Mortalidad Extensiva de Álamos Inducida por Sequía sobre Plantas del Sotobosque 相似文献
989.
Jan Karlas 《环境政策》2017,26(5):825-846
Why do some states and state coalitions, acting within the United Nations Framework Convention on Climate Change (UNFCCC), support harder legalization of the global climate regime? In order to explain why, the effects of four causal factors are considered: climate vulnerability, the emission intensity of the national economy, a state’s power position, and socialization into climate norms. To identify the legalization positions of UNFCCC actors, an original content analysis is conducted of all the submission and meeting statements made at the Ad Hoc Working Group on the Durban Platform during the years 2012–2015. Subsequently, a qualitative comparative analysis is carried out to find out which combinations of the causal factors offer a sufficient explanation for the analyzed outcome, leading to the identification of two causal pathways that lead states to endorse harder legalization of the climate regime. 相似文献
990.
Jon Birger Skjærseth 《环境政策》2018,27(3):498-518
European Union (EU) climate/energy targets and policies are poised for the first full climate policy cycle – from adoption and implementation of the policy package for 2020, to reform for 2030. A dynamic approach to the ways in which EU policies affect policy development is developed by applying theories of domestic implementation, policy feedback and integration. Implementation experiences in Poland – the ‘least climate ambitious’ EU member state – affected Polish preferences for reformed EU policies. Existing EU policies, their ‘fit’ with Poland’s energy interests and change in anticipation of future EU policies explain much of the variation in preferences. Second, policy feedback from Poland significantly affected the EU 2030 climate and energy framework. As yet, the EU has succeeded only partly in gathering momentum through a ‘snowball’ effect whereby positive policy feedback from implementation generates further steps. 相似文献