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- Measuring the exposure of ecosystems to ecologically relevant pollutants is needed for evaluating ecosystem effects and to identify regions and resources at risk. In California, ozone (O3) and nitrogen (N) pollutants are of greatest concern for ecological effects. "Passive" monitoring methods have been developed to obtain spatially extensive measurements of atmospheric pollutant concentrations and deposition flux inputs of N and other nutrient ions in California ecosystems. Two general types of passive samplers have been used: (1) passive samplers for determining time-averaged concentration...AuthorsMark E. Fenn, Andrzej Bytnerowicz, Susan L. SchillingKeywordsSourceGen. Tech. Rep. PSW-GTR-257. Albany, CA: U.S. Department of Agriculture, Forest Service, Pacific Southwest Research StationYear2018
- Shade factors, defined as the percentage of sky covered by foliage and branches within the perimeter of individual tree crowns, have been used to model the effects of trees on air pollutant uptake, building energy use and rainfall interception. For the past 30 years the primary source of shade factors was a database containing values from 47 species. In most cases, values were obtained from measurements on a single tree in one location. To expand this database 11,024 shade factors were obtained for 149 urban tree species through a photometric process applied to the predominant species in...AuthorsE. Gregory McPherson, Qingfu Xiao, Natalie S. van Doorn, Nels G. Johnson, Shannon Albers, Paula PeperKeywordsSourceUrban Forestry & Urban Greening. 31: 204-211Year2018
- The capacity to forecast climate and land-use driven changes to runoff, soil erosion and sediment transport in the tropics is hindered by a lack of long-term data sets and model study systems. To address these issues we utilized three watersheds characterized by similar shape, geology, soils, vegetation cover, and land use arranged across a 900 mm gradient in mean annual rainfall (MAR). Using this space-for-time design, we quantified suspended sediment (SS) and particulate organic carbon (POC) export over 18 months to examine how large-scale climate trends (MAR) affect sediment supply and...AuthorsAyron M. Strauch, Richard A. MacKenzie, Christian P. Giardina, Gregory L. BrulandSourceGeomorphology. 306: 28-39Year2018
- The aim of this study was to quantify street tree population dynamics in the city of Claremont, CA. A repeated measures survey (2000 and 2014) based on a stratified random sampling approach across size classes and for the most abundant 21 species was analyzed to calculate removal, growth, and replacement planting rates. Demographic rates were estimated using a hierarchical Bayesian framework. The community-level (all species) median growth rate was 1.41% per year (95% CI: 1.21–1.65%) with Pinus brutia and Pistacia chinensis growing significantly faster than the community-level median. The...AuthorsNatalie S. van Doorn, E. Gregory McPhersonKeywordsSourceUrban Forestry & Urban Greening. 29: 200-211Year2018
- The conservation and management of species-at-risk requires periodically collecting information about their distributions and abundances. A comprehensive monitoring plan should, in addition to monitoring the population itself, also assess the status of habitat elements that are key factors in species survival. Places where animals seek safe and secure places to rest are such key habitat elements. We used previously published models to predict resting habitat for fishers (Pekania pennanti) throughout much of their range in California. Unique to this work is that the two models (northwestern...AuthorsBill Zielinski, Andrew GraySourceForest Ecology and Management. 409: 899-908Year2018
- Long-term, accurate observations of atmospheric phenomena are essential for a myriad of applications, including historic and future climate assessments, resource management, and infrastructure planning. In Hawai‘i, climate data are available from individual researchers, local, State, and Federal agencies, and from large electronic repositories such as the National Centers for Environmental Information (NCEI). Researchers attempting to make use of available data are faced with a series of challenges that include: (1) identifying potential data sources; (2) acquiring data; (3) establishing...AuthorsRyan J. Longman, Thomas W. Giambelluca, Michael A. Nullet, Abby G. Frazier, Kevin Kodama, Shelley D. Crausbay, Paul D. Krushelnycky, Susan Cordell, Martyn P. Clark, Andy J. Newman, Jeffrey R. ArnoldKeywordsSourceScientific DataYear2018
- Due to recent outbreaks of native bark beetles, forest ecosystems have experienced substantial changes in landscape structure and function, which also affect nearby human populations. As a result, land managers have been tasked with sustaining ecosystem services in impacted areas by considering the best available science, public perceptions, and monitoring data to develop strategies to suppress bark beetle epidemics, and in some cases to restore affected lands and ecosystem services. The effects of bark beetle outbreaks are often detrimental to the provision of ecosystem services, including...AuthorsJesse L Morris, Stuart Cottrell, Christopher J. Fettig, R. Justin DeRose, Katherine M Mattor, Vachel A Carter, Jennifer Clear, Jessica Clement, Winslow D Hansen, Jeffrey A Hicke, Philip E Higuera, Alistair WR Seddon, Heikki Seppä, Rosemary L Sherriff, John D Stednick, Steve J. SeyboldSourceFrontiers in Ecology and the Environment. 16(S1): S34-S43Year2018
- Massive tree mortality has occurred rapidly in frequent-fire-adapted forests of the Sierra Nevada, California. This mortality is a product of acute drought compounded by the long-established removal of a key ecosystem process: frequent, low- to moderate-intensity fire. The recent tree mortality has many implications for the future of these forests and the ecological goods and services they provide to society. Future wildfire hazard following this mortality can be generally characterized by decreased crown fire potential and increased surface fire intensity in the short to intermediate...AuthorsScott L Stephens, Brandon M. Collins, Christopher J. Fettig, Mark A. Finney, Chad M Hoffman, Eric E. Knapp, Malcolm P. North, Hugh Safford, Rebecca B WaymanKeywordsSourceBioScience. 68(2): 77-88Year2018
- We provide updated spatial distribution and inventory data for on-road NH3 emissions for the continental United States (U.S.) On-road NH3 emissions were determined from on-road CO2 emissions data and empirical NH3:CO2 vehicle emissions ratios. Emissions of NH3 from on-road sources in urbanized regions are typically 0.1–1.3 t km− 2 yr− 1 while NH3 emissions in agricultural regions generally range from 0.4–5.5 t km− 2 yr− 1, with a few hotspots as high as 5.5–11.2 t km− 2 yr− 1. Counties with higher vehicle NH3 emissions than from agriculture include 40% of the U.S. population. The amount of...AuthorsMark E. Fenn, Andrzej Bytnerowicz, Susan L. Schilling, Dena M. Vallano, Erika S. Zavaleta, Stuart B. Weiss, Connor Morozumi, Linda H. Geiser, Kenneth HanksKeywordsSourceScience of The Total Environment. 625: 909-919Year2018
- Mountain runoff ultimately reflects the difference between precipitation (P) and evapotranspiration (ET), as modulated by biogeophysical mechanisms that intensify or alleviate drought impacts. These modulating mechanisms are seldom measured and not fully understood. The impact of the warm 2012–15 California drought on the heavily instrumented Kings River basin provides an extraordinary opportunity to enumerate four mechanisms that controlled the impact of drought on mountain hydrology. Two mechanisms intensified the impact: (i) evaporative processes have first access to local precipitation,...AuthorsRoger C. Bales, Michael L. Goulden, Carolyn T. Hunsaker, Martha H. Conklin, Peter C. Hartsough, Anthony T. O’Geen, Jan W. Hopmans, Mohammad SafeeqKeywordsSourceScientific Reports. 8(1): 690Year2018