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331.
Historical and Future Stream Temperature Change Predicted by a Lidar‐Based Assessment of Riparian Condition and Channel Width
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Gustav B. Seixas Timothy J. Beechie Caleb Fogel Peter M. Kiffney 《Journal of the American Water Resources Association》2018,54(4):974-991
Riparian forests attenuate solar radiation, thereby mediating an important component of the thermal budget of streams. Here, we investigate the relationship between riparian degradation, stream temperature, and channel width in the Chehalis River Basin, Washington State. We used lidar data to measure canopy opening angle, the angle formed between the channel center and trees on both banks; we assumed historical tree heights and calculated the change in canopy angle relative to historical conditions. We then developed an empirical relationship between canopy angle and water temperature using existing data, and simulated temperatures between 2002 and 2080 by combining a tree growth model with climate change scenarios from the NorWeST regional prediction. The greatest change between historical and current conditions (~7°C) occurred in developed portions of the river network, with the highest values of change predicted at channel widths less than ~40 m. Tree growth lessened climate change increases in maximum temperature and the length of river exceeding biologically critical thresholds by ~50%–60%. Moreover, the maximum temperature of channels with bankfull widths less than ~50 m remained similar to current conditions, despite climate change increases. Our findings are consistent with a possible role for the riparian landscape in explaining the low sensitivity of stream temperatures to air temperatures observed in some small mountain streams. 相似文献
332.
333.
Benjamin D. Trump Christy Foran Taylor Rycroft Matthew D. Wood Nirzwan Bandolin Mariana Cains Timothy Cary Fiona Crocker Nicholas A. Friedenberg Patrick Gurian Kerry Hamilton Jan Jeffrey Hoover Corey Meyer Kaytee Pokrzywinski Ryan Ritterson Paul Schulte Christopher Warner Edward Perkins Igor Linkov 《The Environmentalist》2018,38(4):517-527
Synthetic biology has the potential for a broad array of applications. However, realization of this potential is challenged by the paucity of relevant data for conventional risk assessment protocols, a limitation due to to the relative nascence of the field, as well as the poorly characterized and prioritized hazard, exposure, and dose–response considerations associated with the development and use of synthetic biology-derived organisms. Where quantitative risk assessment approaches are necessarily to fulfill regulatory requirements for review of products containing genetically modified organisms, this paper reviews one potential avenue for early-stage quantitative risk assessment for biosafety considerations of synthetic biology organism deployment into the environment. Building from discussion from a March 2018 US Army Engineer Research and Development Center workshop on developing such quantitative risk assessment for synthetic biology, this paper reviews the findings and discussion of workshop participants. This paper concludes that, while synthetic biology risk assessment and governance will continue to refine and develop in the coming years, a quantitative framework that builds from existing practice is one potentially beneficial option for risk assessors that must contend with the technology’s limited hazard characterization or exposure assessment considerations in the near term. 相似文献
334.
Social learning can be a vital tool in assisting communities to adapt to change. Local governments can be a conduit between the communities they serve and the policy that they are trying to implement. Social learning in this context can be an iterative, often organic process. Based on a case study of coastal planning in South Australia, Australia, this paper presents the results of a qualitative mixed-method approach that documents the aspects of social learning within coastal management and evaluates the various lessons learned by local governments in South Australia. The role of social learning and adaptive governance is discussed. The paper concludes that by deliberatively incorporating the notion of communities of practice into learning frameworks, local governments can more effectively manage their coastal zones in response to global change. 相似文献
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336.
This paper uses a large database of multiple birth cohorts to study relationships between air pollution exposure and non-infant children's respiratory health outcomes. We observe several years of early-life health treatments for hundreds of thousands of English children. Three distinct research designs account for potential socioeconomic, behavioral, seasonal, and economic confounders. We find that marginal increases in carbon monoxide and ground-level ozone are associated with statistically significant increases in children's contemporaneous respiratory treatments. We also find that carbon monoxide exposure over the previous year has an effect on children's health that goes above and beyond contemporaneous exposure alone. 相似文献
337.
Cysteine- and glutathione-mediated uptake of lead and cadmium into Zea mays and Brassica napus roots
Timothy M. Vadas Beth A. Ahner 《Environmental pollution (Barking, Essex : 1987)》2009,157(8-9):2558-2563
This study examines a new mechanism for the uptake of Pb and Cd into Brassica napus and Zea mays roots. During hydroponic experiments, the uptake of Pb and Cd was enhanced in the presence of cysteine and glutathione, whereas no or very low uptake was observed in EDTA and penicillamine controls. Uptake rates were also enhanced after pre-exposure to cysteine or glutathione and inhibited in the presence of vanadate, suggesting a biological mechanism of uptake. Increasing concentrations of glutathione in solution resulted in decreasing Pb uptake rates, indicating competition for transport between free-glutathione and Pb–glutathione species. Pb uptake in the presence of increasing cysteine concentrations resulted in decreased uptake initially but linearly increasing uptake at higher concentrations. Experimentation showed concentration dependent Pb uptake rates. We speculate that there are specific transporters for these thiol ligands and describe what barriers remain for application of this novel transport mechanism in chelator-assisted phytoremediation. 相似文献
338.
Leah Mason Timothy Prior Gavin Mudd Damien Giurco 《Journal of Cleaner Production》2011,19(9-10):958-966
The concept of ‘peaks’ in the production of natural resources has attracted attention in the area of energy production, with concerns about ‘peak oil’ driving recent research and investment in alternative sources of energy. There are fundamental and important differences between a peak in the production of oil and peaks in the production of metalliferous minerals, but in both cases production changes from ‘easier and less expensive’ early in a resource’s life to ‘difficult and expensive’ as time progresses. The impacts of this change in production circumstances require critical consideration in the governance of national and sub-national mineral endowments.This paper develops a framework for evaluating the impacts of changing patterns of mineral production. The framework considers three criteria: availability of a resource (considering its geological characteristics and geographical distribution); society’s addiction to the resource (its centrality and criticality to economic, social and environmental systems); and the possibility of finding alternatives (whether the resource can be substituted or recovered). An initial assessment against these criteria provides an overview of how a production peak might affect the production of minerals in Australia and the impacts that this might have on the Australian economy.Assessing important resources against these three criteria will be imperative in future considerations regarding the roles minerals and metals play as service providers in our economic, social and environmental systems. Additionally, this analysis should prompt a reassessment of the value of minerals beyond economic measures. Indicators derived from these criteria will inform strategies that can address future changes in production characteristics – meeting challenges with strong governance, and realising opportunities with proactive policy. 相似文献
339.
The populations of many North American landbirds are showing signs of declining. Gathering information on breeding productivity
allows critical assessment of population performance and helps identify good habitat-management practices. He (Biometrics
(2003) 59 962–973) proposed a Bayesian model to estimate the age-specific nest survival rates. The model allows irregular
visiting schedule under the assumption that the observed nests have homogeneous nest survival. Because nest survival studies
are often conducted in different sites and time periods, it is not realistic to assume homogeneous nest survival. In this
paper, we extend He’s model by incorporating these factors as categorical covariates. The simulation results show that the
Bayesian hierarchical model can produce satisfactory estimates on nest survival and capture different factor effects. Finally
the model is applied to a Missouri red-winged blackbird data set. 相似文献
340.
Michael M. Pollock Timothy J. Beechie Martin Liermann Richard E. Bigley 《Journal of the American Water Resources Association》2009,45(1):141-156
Abstract: We compared summer stream temperature patterns in 40 small forested watersheds in the Hoh and Clearwater basins in the western Olympic Peninsula, Washington, to examine correlations between previous riparian and basin‐wide timber harvest activity and stream temperatures. Seven watersheds were unharvested, while the remaining 33 had between 25% and 100% of the total basin harvested, mostly within the last 40 years. Mean daily maximum temperatures were significantly different between the harvested and unharvested basins, averaging 14.5°C and 12.1°C, respectively. Diurnal fluctuations between harvested and unharvested basins were also significantly different, averaging 1.7°C and 0.9°C, respectively. Total basin harvest was correlated with average daily maximum temperature (r2 = 0.39), as was total riparian harvest (r2 = 0.32). The amount of recently clear‐cut riparian forest (<20 year) within 600 m upstream of our monitoring sites ranged from 0% to 100% and was not correlated to increased stream temperatures. We used Akaike’s Information Criteria (AIC) analysis to assess whether other physical variables could explain some of the observed variation in stream temperature. We found that variables related to elevation, slope, aspect, and geology explain between 5% and 14% more of the variability relative to the variability explained by percent of basin harvested (BasHarv), and that the BasHarv was consistently a better predictor than the amount of riparian forest harvested. While the BasHarv is in all of the models that perform well, the AIC analysis shows that there are many models with two variables that perform about the same and therefore it would be difficult to choose one as the best model. We conclude that adding additional variables to the model does not change the basic findings that there is a relatively strong relationship between maximum daily stream temperatures and the total amount of harvest in a basin, and strong, but slightly weaker relationship between maximum daily stream temperatures and the total riparian harvest in a basin. Seventeen of the 40 streams exceeded the Washington State Department of Ecology’s (DOE) temperature criterion for waters defined as “core salmon and trout habitat” (class AA waters). The DOE temperature criterion for class AA waters is any seven‐day average of daily maximum temperatures in excess of 16°C. The probability of a stream exceeding the water quality standard increased with timber harvest activity. All unharvested sites and five of six sites that had 25‐50% harvest met DOEs water quality standard. In contrast, only nine of eighteen sites with 50‐75% harvest and two of nine sites with >75% harvest met DOEs water quality standard. Many streams with extensive canopy closure, as estimated by the age of riparian trees, still had higher temperatures and greater diurnal fluctuations than the unharvested basins. This suggests that the impact of past forest harvest activities on stream temperatures cannot be entirely mitigated through the reestablishment of riparian buffers. 相似文献