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41.
Seeing the forest for the heterogeneous trees: stand-scale resource distributions emerge from tree-scale structure 总被引:2,自引:0,他引:2
Forest ecosystem processes depend on local interactions that are modified by the spatial pattern of trees and resources. Effects of resource supplies on processes such as regeneration are increasingly well understood, yet we have few tools to compare resource heterogeneity among forests that differ in structural complexity. We used a neighborhood approach to examine understory light and nutrient availability in a well-replicated and large-scale variable-retention harvesting experiment in a red pine forest in Minnesota, USA. The experiment included an unharvested control and three harvesting treatments with similar tree abundance but different patterns of retention (evenly dispersed as well as aggregated retention achieved by cutting 0.1- or 0.3-ha gaps). We measured light and soil nutrients across all treatments and mapped trees around each sample point to develop an index of neighborhood effects (NI). Field data and simulation modeling were used to test hypotheses that the mean and heterogeneity of resource availability would increase with patchiness because of greater variation in competitive environments. Our treatments dramatically altered the types and abundances of competitive neighborhoods (NI) in each stand and resulted in significantly nonlinear relationships of light, nitrogen and phosphorus availability to NI. Hence, the distribution of neighborhoods in each treatment had a significant impact on resource availability and heterogeneity. In dense control stands, neighborhood variation had little impact on resource availability, whereas in more open stands (retention treatments), it had large effects on light and modest effects on soil nutrients. Our results demonstrate that tree spatial pattern can affect resource availability and heterogeneity in explainable and predictable ways, and that neighborhood models provide a useful tool for scaling heterogeneity from the individual tree to the stand. These insights are needed to anticipate the outcomes of silvicultural manipulations and should become more holistically integrated into both basic ecological and management science. 相似文献
42.
Montgomery MT Coffin RB Boyd TJ Smith JP Walker SE Osburn CL 《Environmental pollution (Barking, Essex : 1987)》2011,159(12):3673-3680
The nitrogenous energetic constituent, 2,4,6-Trinitrotoluene (TNT), is widely reported to be resistant to bacterial mineralization (conversion to CO2); however, these studies primarily involve bacterial isolates from freshwater where bacterial production is typically limited by phosphorus. This study involved six surveys of coastal waters adjacent to three biome types: temperate broadleaf, northern coniferous, and tropical. Capacity to catabolize and mineralize TNT ring carbon to CO2 was a common feature of natural sediment assemblages from these coastal environments (ranging to 270+/−38 μg C kg−1 d−1). More importantly, these mineralization rates comprised a significant proportion of total heterotrophic production. The finding that most natural assemblages surveyed from these ecosystems can mineralize TNT ring carbon to CO2 is consistent with recent reports that assemblage components can incorporate TNT ring carbon into bacterial biomass. These data counter the widely held contention that TNT is recalcitrant to bacterial catabolism of the ring carbon in natural environments. 相似文献
43.
Robert A. Montgomery C. Nichole Rubeck-Schurtz Kelly F. Millenbah Gary J. Roloff Mark E. Whalon Larry G. Olsen 《Environmental management》2009,44(1):12-23
In the United States, environmental regulatory agencies are required to use “best available” scientific information when making
decisions on a variety of issues. However, agencies are often hindered by coarse or incomplete data, particularly as it pertains
to threatened and endangered species protection. Stakeholders often agree that more resolute and integrated processes for
decision-making are desirable. We demonstrate a process that uses species occurrence data for a federally endangered insect
(Karner blue butterfly), a readily available habitat modeling tool, and spatially explicit information about an important
Michigan commodity (tart cherries). This case study has characteristics of many protected species regulatory decisions in
that species occurrence data were sparse and unequally distributed; regulatory decisions (on pesticide use) were required
with potentially significant impacts on a viable agricultural industry; and stakeholder relations were diverse, misinformed,
and, in some situations, unjustly contentious. Results from our process include a large-scale, empirically derived habitat
suitability map for the focal species and a risk ranking of tart cherry orchards with risk based on the likelihood that pesticide
applications will influence the focal protected species. Although the majority (77%) of pesticide-influence zones overlapped
Karner blue butterfly habitat, risk scores associated with each orchard were low. Through our process we demonstrated that
spatially explicit models can help stakeholders visualize and quantify potential protected species effects. In addition, model
outputs can serve to guide field activities (e.g., species surveys and implementation of pesticide buffer zones) that help
minimize future effects. 相似文献
44.
Anne A. Weekes Christian E. Torgersen David R. Montgomery Andrea Woodward Susan M. Bolton 《Environmental management》2012,50(6):982-997
Recent studies have demonstrated the geomorphic complexity and wide range of hydrologic regimes found in alpine headwater channels that provide complex habitats for aquatic taxa. These geohydrologic elements are fundamental to better understand patterns in species assemblages and indicator taxa and are necessary to aquatic monitoring protocols that aim to track changes in physical conditions. Complex physical variables shape many biological and ecological traits, including life history strategies, but these mechanisms can only be understood if critical physical variables are adequately represented within the sampling framework. To better align sampling design protocols with current geohydrologic knowledge, we present a conceptual framework that incorporates regional-scale conditions, basin-scale longitudinal profiles, valley-scale glacial macroform structure, valley segment-scale (i.e., colluvial, alluvial, and bedrock), and reach-scale channel types. At the valley segment- and reach-scales, these hierarchical levels are associated with differences in streamflow and sediment regime, water source contribution and water temperature. Examples of linked physical-ecological hypotheses placed in a landscape context and a case study using the proposed framework are presented to demonstrate the usefulness of this approach for monitoring complex temporal and spatial patterns and processes in glaciated basins. This approach is meant to aid in comparisons between mountain regions on a global scale and to improve management of potentially endangered alpine species affected by climate change and other stressors. 相似文献
45.
T.L. Montgomery W.B. Norris F.W. Thomas S.B. Carpenter 《Journal of the Air & Waste Management Association (1995)》2013,63(5):388-394
A simplified method which is used by the Tennessee Valley Authority to estimate ambient concentrations of atmospheric emissions from its large power plants is presented. The technique requires the use of three nomogrdms for the rapid graphic solution of three dispersion models—coning, inversion breakup, and trapping. A discussion of the meteorological conditions that are associated with these dispersion models, supporting appendices, and a worked example are also presented. 相似文献
46.
Tami A. Montgomery Gary S. Samuelsen Lawrence J. Muzio 《Journal of the Air & Waste Management Association (1995)》2013,63(5):721-726
Nitrous oxide (N2O) levels in the atmosphere are increasing, potentially contributing to the greenhouse effect and depletion of stratospheric ozone. From a limited data base, combustion sources have been identified as a major anthropogenic source of N2O. However, the existing data base (obtained by traditional grab sampling techniques followed by gas chromatographic analysis) is in question due to the discovery of a sampling artifact. A continuous on-line N2O analyzer would enable and facilitate the accurate characterization of combustion sources over a range of operating conditions, and also aid in the development of an appropriate sampling technique. This paper addresses the development of a continuous measurement technique, and the evaluation and initial use of a field prototype continuous N2O analyzer developed at the UCI Combustion Laboratory in cooperation with a major instrument manufacturer. The analyzer is capable of measuring N2O levels down to a few ppm. The analyzer has been evaluated and used to study the N2O emissions from a pulverized coal-fired boiler. The N2O levels found with the analyzer are substantially lower than levels previously attributed to such sources. Initial N2O measurements made with the analyzer suggest that N2O levels are not a substantial fraction of the NOX levels, as previously suggested. 相似文献
47.
城市的发展改变了许多河流的自然水文环境,并导致河流生态系统中水质、物理生境和生物完整性下降。评估受损河流水体修复的效果,需要结合物理、化学的参数,以及对生物结构、多样性和过程的影响。构建了包含河流水力、水质、水生生物、河岸带及物理结构5个方面15个指标的城市河流生态修复评估指标体系,运用群组决策的层次分析法(AHP),确定了各指标的权重,重要性排序前5位依次为:水质污染指数、鱼类IBI、水源补给量、藻类多样性、透明度。并以我国南方城市岐江河整治修复状况为例进行综合评价,结果表明,河流生态系统修复评估结果为可以接受,体现了河流整治工程使河流水质、生态的状况有所改善,但河流生态系统恢复需要较长的周期,修复初期生态系统仍处于受损状态。〖 相似文献
48.
Matt W. Hayward Alex Callen Benjamin L. Allen Guy Ballard Femke Broekhuis Cassandra Bugir Rohan H. Clarke John Clulow Simon Clulow Jennifer C. Daltry Harriet T. Davies-Mostert Peter J. S. Fleming Andrea S. Griffin Lachlan G. Howell Graham I. H. Kerley Kaya Klop-Toker Sarah Legge Tom Major Ninon Meyer Robert A. Montgomery Katherine Moseby Daniel M. Parker Stéphanie Périquet John Read Robert J. Scanlon Rebecca Seeto Craig Shuttleworth Michael J. Somers Cottrell T. Tamessar Katherine Tuft Rose Upton Marcia Valenzuela-Molina Adrian Wayne Ryan R. Witt Wolfgang Wüster 《Conservation biology》2019,33(4):760-768
Compassionate conservation focuses on 4 tenets: first, do no harm; individuals matter; inclusivity of individual animals; and peaceful coexistence between humans and animals. Recently, compassionate conservation has been promoted as an alternative to conventional conservation philosophy. We believe examples presented by compassionate conservationists are deliberately or arbitrarily chosen to focus on mammals; inherently not compassionate; and offer ineffective conservation solutions. Compassionate conservation arbitrarily focuses on charismatic species, notably large predators and megaherbivores. The philosophy is not compassionate when it leaves invasive predators in the environment to cause harm to vastly more individuals of native species or uses the fear of harm by apex predators to terrorize mesopredators. Hindering the control of exotic species (megafauna, predators) in situ will not improve the conservation condition of the majority of biodiversity. The positions taken by so-called compassionate conservationists on particular species and on conservation actions could be extended to hinder other forms of conservation, including translocations, conservation fencing, and fertility control. Animal welfare is incredibly important to conservation, but ironically compassionate conservation does not offer the best welfare outcomes to animals and is often ineffective in achieving conservation goals. Consequently, compassionate conservation may threaten public and governmental support for conservation because of the limited understanding of conservation problems by the general public. 相似文献
49.
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