292 research outputs found
Naturally Occurring Asbestos in Alaska and Experiences and Policy of Other States Regarding its Use
INE/AUTC 09.0
Overview of the 2010 Carbonaceous Aerosols and Radiative Effects Study (CARES)
Substantial uncertainties still exist in the scientific understanding of the possible interactions between urban and natural (biogenic) emissions in the production and transformation of atmospheric aerosol and the resulting impact on climate change. The US Department of Energy (DOE) Atmospheric Radiation Measurement (ARM) program's Carbonaceous Aerosol and Radiative Effects Study (CARES) carried out in June 2010 in Central Valley, California, was a comprehensive effort designed to improve this understanding. The primary objective of the field study was to investigate the evolution of secondary organic and black carbon aerosols and their climate-related properties in the Sacramento urban plume as it was routinely transported into the forested Sierra Nevada foothills area. Urban aerosols and trace gases experienced significant physical and chemical transformations as they mixed with the reactive biogenic hydrocarbons emitted from the forest. Two heavily-instrumented ground sites – one within the Sacramento urban area and another about 40 km to the northeast in the foothills area – were set up to characterize the evolution of meteorological variables, trace gases, aerosol precursors, aerosol size, composition, and climate-related properties in freshly polluted and "aged" urban air. On selected days, the DOE G-1 aircraft was deployed to make similar measurements upwind and across the evolving Sacramento plume in the morning and again in the afternoon. The NASA B-200 aircraft, carrying remote sensing instruments, was also deployed to characterize the vertical and horizontal distribution of aerosols and aerosol optical properties within and around the plume. This overview provides: (a) the scientific background and motivation for the study, (b) the operational and logistical information pertinent to the execution of the study, (c) an overview of key observations and initial findings from the aircraft and ground-based sampling platforms, and (d) a roadmap of planned data analyses and focused modeling efforts that will facilitate the integration of new knowledge into improved representations of key aerosol processes and properties in climate models.United States. Dept. of Energy. Atmospheric System Research Program (Contract DE-AC06-76RLO 1830)United States. National Oceanic and Atmospheric AdministrationUnited States. National Aeronautics and Space Administration. HQ Science Mission Directorate Radiation Sciences ProgramUnited States. National Aeronautics and Space Administration. CALIPSO ProgramUnited States. Dept. of Energy. Atmospheric Radiation Measurement Program (Interagency Agreement No. DE-AI02-05ER63985
PLoS One
Cooling towers (CTs) are a leading source of outbreaks of Legionnaires' disease (LD), a severe form of pneumonia caused by inhalation of aerosols containing Legionella bacteria. Accordingly, proper maintenance of CTs is vital for the prevention of LD. The aim of this study was to determine the distribution of Legionella in a subset of regionally diverse US CTs and characterize the associated microbial communities. Between July and September of 2016, we obtained aliquots from water samples collected for routine Legionella testing from 196 CTs located in eight of the nine continental US climate regions. After screening for Legionella by PCR, positive samples were cultured and the resulting Legionella isolates were further characterized. Overall, 84% (164) were PCR-positive, including samples from every region studied. Of the PCR-positive samples, Legionella spp were isolated from 47% (78), L. pneumophila was isolated from 32% (53), and L. pneumophila serogroup 1 (Lp1) was isolated from 24% (40). Overall, 144 unique Legionella isolates were identified; 53% (76) of these were Legionella pneumophila. Of the 76 L. pneumophila isolates, 51% (39) were Lp1. Legionella were isolated from CTs in seven of the eight US regions examined. 16S rRNA amplicon sequencing was used to compare the bacterial communities of CT waters with and without detectable Legionella as well as the microbiomes of waters from different climate regions. Interestingly, the microbial communities were homogenous across climate regions. When a subset of seven CTs sampled in April and July were compared, there was no association with changes in corresponding CT microbiomes over time in the samples that became culture-positive for Legionella. Legionella species and Lp1 were detected frequently among the samples examined in this first large-scale study of Legionella in US CTs. Our findings highlight that, under the right conditions, there is the potential for CT-related LD outbreaks to occur throughout the US.201729261791PMC5738086855
Pacific Northwest National Laboratory Site Environmental Report for Calendar Year 2011
The PNNL Site Environmental Report for Calendar Year 2011 was prepared pursuant to the requirements of Department of Energy (DOE) Order 231.1B, "Environment, Safety and Health Reporting" to provide a synopsis of calendar year 2011 information related to environmental management performance and compliance efforts. It summarizes site compliance with federal, state, and local environmental laws, regulations, policies, directives, permits, and orders and environmental management performance
Smart Connect Using Cellular Technology
Technical developments in computer hardware and software make it possible to introduce automation into virtually all aspects of human-machine systems. Automation has made Software applications much more efficient to use. This paper proposes that automation can be applied to desktop sharing in which a system can operate automatically anywhere in the world using GSM technolog
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Cr(VI) Effect on Tc-99 Removal from Hanford Low-Activity Waste Simulant by Ferrous Hydroxide.
Here, Cr(VI) effects on Tc-immobilization by Fe(OH)2(s) are investigated while assessing Fe(OH)2(s) as a potential treatment method for Hanford low-activity waste destined for vitrification. Batch studies using simulated low-activity waste indicate that Tc(VII) and Cr(VI) removal is contingent on reduction to Tc(IV) and Cr(III). Furthermore, complete removal of both Cr and Tc depends on the amount of Fe(OH)2(s) present, where complete Cr and Tc removal requires more Fe(OH)2(s) (∼200 g/L of simulant), than removing Cr alone (∼50 g/L of simulant). XRD analysis suggests that Fe(OH)2(s) reaction and transformation in the simulant produces mostly goethite (α-FeOOH), where Fe(OH)2(s) transformation to goethite rather than magnetite is likely due to the simulant chemistry, which includes high levels of nitrite and other constituents. Once reduced, a fraction of Cr(III) and Tc(IV) substitute for octahedral Fe(III) within the goethite crystal lattice as supported by XPS, XANES, and/or EXAFS results. The remaining Cr(III) forms oxide and/or hydroxide phases, whereas Tc(IV) not fully incorporated into goethite persists as either adsorbed or partially incorporated Tc(IV)-oxide species. As such, to fully incorporate Tc(IV) into the goethite crystal structure, additional Fe(OH)2(s) (>200 g/L of simulant) may be required
JRC Testing and Demonstration Hub for the GNSS Component of the EU Space Programme
The European Commission (EC) Joint Research Centre (JRC), in the frame of a scientific and technical support activity with the Satellite Navigation Unit of the EC Directorate General Defence Industry and Space (DEFIS) and the European Union Agency for the Space Programme (EUSPA), has agreed to facilitate testing and demonstrations activities of Research and Development (R&D) Actions under the European Union (EU) Global Navigation Satellite System (GNSS) Programmes. In this context, Horizon Europe and Galileo Fundamental Elements project consortia are invited to come to the JRC and access the GNSS testing facilities based in its Ispra Site. With the aim to promote this testing activities, a reference document providing an up-to-date inventory of the GNSS testing capabilities was published in July 2021 and now, with the present inventory, is updated and extended. From the first release of the inventory, the JRC keeps on improving its GNSS laboratory testing capabilities, addressing in the best manner the new challenges and evolving user needs in the GNSS domain, all with a clear focus on Galileo. Since the declaration of the initial services in 2016, Galileo has enriched its portfolio of services, introducing clear differentiators with respect to other GNSS systems. In particular, the Galileo Open Service (OS) has been upgraded with an improved navigation message, acting as a boost of the robustness and time to first fix, the High Accuracy Service (HAS) enables a decimetre-level accuracy through real-time corrections broadcast by Galileo satellites, the OS Navigation Message Authentication (OSNMA) strengthens the security and resilience against spoofing attacks, the Safety-of-Life (SoL) service enables the implementation of horizontal ARAIM service, responding the requirements of civil aviation. This report is structured as follows. Firstly, it sets the general terms and conditions to request the access to the testing facilities, and secondly, it provides a comprehensive summary of the GNSS testing capabilities that are currently available at the JRC. In many occasions, a reference to past testing campaigns is made to illustrate the typical testbeds and results that were produced. With this reference document at hand, interested project consortia should be able to specify an initial test plan with the required level of detail.JRC.E.2 - Technologies for Space, Security and Connectivit
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