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431.
Christopher James Lemieux Jessica Thompson D. Scott Slocombe Rudy Schuster 《Journal of Environmental Planning and Management》2015,58(4):654-677
It has been argued that regional collaboration can facilitate adaptation to climate change impacts through integrated planning and management. In an attempt to understand the underlying institutional factors that either support or contest this assumption, this paper explores the institutional factors influencing adaptation to climate change at the regional scale, where multiple public land and natural resource management jurisdictions are involved. Insights from two mid-western US case studies reveal that several challenges to collaboration persist and prevent fully integrative multi-jurisdictional adaptation planning at a regional scale. We propose that some of these challenges, such as lack of adequate time, funding and communication channels, be reframed as opportunities to build interdependence, identify issue-linkages and collaboratively explore the nature and extent of organisational trade-offs with respect to regional climate change adaptation efforts. Such a reframing can better facilitate multi-jurisdictional adaptation planning and management of shared biophysical resources generally while simultaneously enhancing organisational capacity to mitigate negative effects and take advantage of potentially favourable future conditions in an era characterised by rapid climate change. 相似文献
432.
Effects of Climate and Land Cover on Hydrology in the Southeastern U.S.: Potential Impacts on Watershed Planning 下载免费PDF全文
Jacob H. LaFontaine Lauren E. Hay Roland J. Viger R. Steve Regan Steven L. Markstrom 《Journal of the American Water Resources Association》2015,51(5):1235-1261
The hydrologic response to statistically downscaled general circulation model simulations of daily surface climate and land cover through 2099 was assessed for the Apalachicola‐Chattahoochee‐Flint River Basin located in the southeastern United States. Projections of climate, urbanization, vegetation, and surface‐depression storage capacity were used as inputs to the Precipitation‐Runoff Modeling System to simulate projected impacts on hydrologic response. Surface runoff substantially increased when land cover change was applied. However, once the surface depression storage was added to mitigate the land cover change and increases of surface runoff (due to urbanization), the groundwater flow component then increased. For hydrologic studies that include projections of land cover change (urbanization in particular), any analysis of runoff beyond the change in total runoff should include effects of stormwater management practices as these features affect flow timing and magnitude and may be useful in mitigating land cover change impacts on streamflow. Potential changes in water availability and how biota may respond to changes in flow regime in response to climate and land cover change may prove challenging for managers attempting to balance the needs of future development and the environment. However, these models are still useful for assessing the relative impacts of climate and land cover change and for evaluating tradeoffs when managing to mitigate different stressors. 相似文献
433.
几种诱导子对青霉PT95菌株固态发酵产生类胡萝卜素的影响 总被引:3,自引:0,他引:3
分别用粗糙脉孢菌(Neurosporacrassa)、紫红曲霉(Monascuspurpureus)、掷孢酵母(Sporobolomycesroseus)、深红酵母(Rhodotorularubra)、诺卡氏菌(Nocardiasp. )N89和游动放线菌(Actinoplanessp. )A05的细胞壁制成6种诱导子.当在玉米培养基中添加适量诱导子进行诱导培养时,青霉PT95菌株的菌核生物量和菌核中积累的类胡萝卜素含量有了显著的提高(P<0. 01),从而提高了PT95菌株的类胡萝卜素产率.其中, 4种真菌诱导子的效果明显好于另外2种放线菌诱导子,紫红曲霉诱导子的效果最好.当培养基中紫红曲霉诱导子的质量分数为100μg/g时,每百克玉米的类胡萝卜素产率达到14 446μg,比对照提高176%.除紫红曲霉诱导子外,其余5种诱导子都能显著提高总色素中的β-胡萝卜素百分含量(P<0. 01). 表4参9 相似文献
434.
气候变化风险能够在部门内与部门间进行传递和放大,形成多个复杂嵌套的风险互联网络,导致了系统性风险的产生。对气候变化风险互联网络的刻画能够帮助理解风险产生与演化的过程,削减气候变化对社会经济系统的直接物理风险,及碳达峰与碳中和建设过程中可能伴随的转型风险。本文识别了四类典型的气候变化风险互联网络,涵盖食品—能源—水系统、公共健康、宏观经济和金融市场、社会安全等四类部门或领域。针对每一类网络,分别总结了主要的气候变化风险传递路径及当前的研究进展和局限,并概述了开展系统性风险管理的建议。 相似文献
435.
Isabel M. Rojas Megan K. Jennings Erin Conlisk Alexandra D. Syphard Jack Mikesell Alicia M. Kinoshita Krista West Doug Stow Emanuel Storey Mark E. De Guzman Diane Foote Alexandria Warneke Amber Pairis Sherry Ryan Lorraine E. Flint Alan L. Flint Rebecca L. Lewison 《Conservation biology》2022,36(1):e13834
From a conservation perspective, quantifying potential refugial capacity has been predominantly focused on climate refugia, which is critical for maintaining the persistence of species and ecosystems. However, protection from other stressors, such as human-induced changes in fire and hydrology, that cause habitat loss, degradation, and fragmentation is also necessary to ensure that conservation efforts focused on climate are not undermined by other threats. Thus, conceptual and methodological advances for quantifying potential refugia from multiple anthropogenic stressors are important to support conservation efforts. We devised a new conceptual approach, the domains of refugia, for assessing refugial capacity that identifies areas where exposure to multiple stressors is low. In our framework, patterns of environmental variability (e.g., increased frequency of warm summers), thresholds of resilience, and extent and intensity of stressors are used to identify areas of potential refugia from a suite of ongoing anthropogenic stressors (e.g., changes in fire regime). To demonstrate its utility, we applied the framework to a Southern California landscape. Sites with high refugial capacity (super-refugia sites) had on average 30% fewer extremely warm summers, 20% fewer fire events, 10% less exposure to altered river channels and riparian areas, and 50% fewer recreational trails than the surrounding landscape. Our results suggest that super-refugia sites (∼8200 km2) for some natural communities are underrepresented in the existing protected area network, a finding that can inform efforts to expand protected areas. Our case study highlights how considering exposure to multiple stressors can inform planning and practice to conserve biodiversity in a changing world. 相似文献
436.
Kristoffer Hylander Caroline Greiser Ditte M. Christiansen Irena A. Koelemeijer 《Conservation biology》2022,36(3):e13847
Conservation of biodiversity in managed forest landscapes needs to be complemented with new approaches given the threat from rapid climate change. Most frameworks for adaptation of biodiversity conservation to climate change include two major strategies. The first is the resistance strategy, which focuses on actions to increase the capacity of species and communities to resist change. The second is the transformation strategy and includes actions that ease the transformation of communities to a set of species that are well adapted to the novel environmental conditions. We suggest a number of concrete actions policy makers and managers can take. Under the resistance strategy, five tools are introduced, including: identifying and protecting forest climate refugia with cold-favored species; reducing the effects of drought by protecting the hydrological network; and actively removing competitors when they threaten cold-favored species. Under the transformation strategy, we suggest three tools, including: enhancing conditions for forest species favored by the new climate, but currently disfavored by forest management, by planting them at suitable sites outside their main range; and increasing connectivity across the landscape to enhance the expansion of warm-favored species to sites that have become suitable. Finally, we suggest applying a landscape perspective and simultaneously managing for both retreating and expanding species. The two different strategies (resistance and transformation) should be seen as complementary ways to maintain a rich biodiversity in future forest ecosystems. 相似文献
437.
生物可降解地膜覆盖对关中地区小麦-玉米农田温室气体排放的影响 总被引:2,自引:2,他引:0
为探究生物可降解地膜覆盖对冬小麦-夏玉米轮作农田生态系统温室气体排放的影响,布设了普通地膜覆盖(PM)、生物可降解地膜覆盖(BPM)和无覆盖(CK)这3个处理,采用静态暗箱-气相色谱仪法监测了2018~2019年土壤CO2、 CH4和N2O的排放通量,并用水分利用效率(WUE)、温室气体排放强度(GHGI)和净生态系统经济预算(NEEB)指标评估覆膜对作物产量、农田环境和经济效益的影响.结果表明,与CK相比,PM和BPM增加了玉米季土壤CO2的排放,PM处理下CO2排放总量高于BPM处理(P>0.05).PM和BPM处理均能够显著减少土壤对CH4的吸收,CH4的年吸收量较CK处理分别减少了42.0%和24.2%(P<0.05).与CK相比,PM和BPM增加了小麦季N2O排放总量(P>0.05),而显著降低了夏玉米季N2O排放(P<0.05).覆膜能够提高作物产量和水分... 相似文献
438.
This study determines the factor structure of safety climate within a road construction organization using a modified version of the safety climate questionnaire (SCQ). It also investigates the relationship between safety climate and safety performance. The SCQ was administered to 192 employees from two districts and in two job categories — construction and maintenance. A behavioural observation measure of safety performance was also developed. Factor analysis derived six factors, which were similar to those obtained in an earlier study using the SCQ. Differences in the safety climate of job sub-groups were found on two of the factors. No differences between the two districts were found. No relationship was found between safety climate and the safety performance measure. While identical safety climate factors cannot apply to all organizations, some general safety climate factors may emerge. Discussion focuses upon the measurement of safety climate. 相似文献
439.
电子设备机房的空调供冷量与普通办公室相差甚远 ,介绍了其计算方法和影响空调制冷设备实际制冷量的因素 相似文献
440.
Mark C. Stone Rollin H. Hotchkiss Carter M. Hubbard Thomas A. Fontaine Linda O. Mearns Jeff G. Arnold 《Journal of the American Water Resources Association》2001,37(5):1119-1129
ABSTRACT: Water from the Missouri River Basin is used for multiple purposes. The climatic change of doubling the atmospheric carbon dioxide may produce dramatic water yield changes across the basin. Estimated changes in basin water yield from doubled CO2 climate were simulated using a Regional Climate Model (RegCM) and a physically based rainfall‐runoff model. RegCM output from a five‐year, equilibrium climate simulation at twice present CO2 levels was compared to a similar present‐day climate run to extract monthly changes in meteorologic variables needed by the hydrologic model. These changes, simulated on a 50‐km grid, were matched at a commensurate scale to the 310 subbasin in the rainfall‐runoff model climate change impact analysis. The Soil and Water Assessment Tool (SWAT) rainfall‐runoff model was used in this study. The climate changes were applied to the 1965 to 1989 historic period. Overall water yield at the mouth of the Basin decreased by 10 to 20 percent during spring and summer months, but increased during fall and winter. Yields generally decreased in the southern portions of the basin but increased in the northern reaches. Northern subbasin yields increased up to 80 percent: equivalent to 1.3 cm of runoff on an annual basis. 相似文献