968 resultados para Palos Heights
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Senior thesis for Oceanography 445
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Background: Having previously investigated the dispersal by different hand drying methods of a chemical indicator, fungi and bacteria on the hands of users, this new study assessed the potential for viral dispersal. Aims/Objectives: To determine differences between hand drying methods in their capacity to disperse viruses on the hands of users to other occupants of public washrooms and into the washroom environment. Method: A harmless virus was used to artificially contaminate the hands of participants prior to using three different hand drying devices (jet air dryer, warm air dryer, paper towel dispenser). Viral dispersal was assessed at different heights and distances from the hand drying devices and also at different times after use by means of an air sampler. Results: The jet air dryer was shown to produce significantly more dispersal of virus than the warm air dryer or paper towels. After use of the jet air dryer, high numbers of virus were detected at a range of heights with maximum numbers between 0.61 and 1.22 metres. Virus was also detected at distances of up to 3 metres from the jet air dryer and in the air for up to 15 minutes after its use. The warm air dryer and paper towel dispenser produced low or zero viral counts at different heights, different distances and times after use. Conclusion: Jet air dryers have a greater potential than other hand drying methods to disperse viruses on the hands and contaminate other occupants of a public washroom and the washroom environment.
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The importance of hand hygiene in reducing the spread of pathogens has been long established and this has been highlighted recently in initiatives such as the NHS’s ‘clean your hands’ campaign. However, much of the focus on hand hygiene has concerned effective hand washing; there has been less emphasis on hand drying and its role in hygienic practices. This study aimed to compare three hand drying methods namely paper towels, a warm air dryer and a jet air dryer for their relative ability to disseminate virus particles into the washroom environment during hand drying. A bacteriophage model was used to compare these methods; hands were artificially contaminated with MS2 phage and dried using each device. Both air sampling and contact plates were assessed and a plaque assay was used to quantify virus dissemination. Samples were collected at set times, heights, angles and distances around each device. Both air sampling and contact plate results indicated that the jet air dryer produced significantly more virus dispersal than either paper towels or the warm air dryer in terms of quantity, distance travelled and the time spent circulating in the air around the device and potentially in the washroom environment.
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Background World Health Organization hand hygiene guidelines state that if electric hand dryers are used, they should not aerosolize pathogens. Previous studies have investigated the dispersal by different hand-drying devices of chemical indicators, fungi and bacteria on the hands. This study assessed the aerosolization and dispersal of virus on the hands to determine any differences between hand-drying devices in their potential to contaminate other occupants of public washrooms and the washroom environment. Methods A suspension of MS2, an Escherichia coli bacteriophage virus, was used to artificially contaminate the hands of participants prior to using three different handdrying devices: jet air dryer, warm air dryer, paper towel dispenser. Virus was detected by plaque formation on agar plates layered with the host bacterium. Vertical dispersal of virus was assessed at a fixed distance (0.4 m) and over a range of different heights (0.0 – 1.8 m) from the floor. Horizontal dispersal was assessed at different distances of up to three metres from the hand-drying devices. Virus aerosolization and dispersal was also assessed at different times up to 15 minutes after use by means of air sampling at two distances (0.1 and 1.0 m) and at a distance behind and offset from each of the hand-drying devices. Results Over a range of heights, the jet air dryer was shown to produce over 60 times greater vertical dispersal of virus from the hands than a warm air dryer and over 1300 times greater than paper towels; the maximum being detected between 0.6 and 1.2 metres from the floor. Horizontal dispersal of virus by the jet air dryer was over 20 times greater than a warm air dryer and over 190 times greater than paper towels; virus being detected at distances of up to three metres. Air sampling at three different positions from the hand-drying devices 15 minutes after use showed that the jet air dryer produced over 50-times greater viral contamination of the air than a warm air dryer and over 110-times greater than paper towels. Conclusions Due to their high air speed, jet air dryers aerosolize and disperse more virus over a range of heights, greater distances, and for longer times than other hand drying devices. If hands are inadequately washed, they have a greater potential to contaminate other occupants of a public washroom and the washroom environment. Main messages: Jet air dryers with claimed air speeds of over 600 kph have a greater potential than warm air dryers or paper towels to aerosolize and disperse viruses on the hands of users. The choice of hand-drying device should be carefully considered. Jet air dryers may increase the risk of transmission of human viruses, such as norovirus, particularly if hand washing is inadequate.
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Aims To use a MS2 bacteriophage model to compare three hand-drying methods, paper towels (PT), a warm air dryer (WAD) and a jet air dryer (JAD), for their potential to disperse viruses and contaminate the immediate environment during use. Methods and Results Participants washed their gloved hands with a suspension of MS2 bacteriophage and hands were dried with one of the three hand-drying devices. The quantity of MS2 present in the areas around each device was determined using a plaque assay. Samples were collected from plates containing the indicator strain, placed at varying heights and distances and also from the air. Over a height range of 0.15-1.65 m, the JAD dispersed an average of >60 and >1300-fold more plaque-forming units (pfu) compared to the WAD and PT (P <0.0001), respectively. The JAD dispersed an average of >20 and >190-fold more pfu in total compared to WAD and PT at all distances tested up to 3 m (P <0.01), respectively. Air samples collected around each device 15 minutes after use indicated that the JAD dispersed an average of >50 and >100-fold more pfu compared to the WAD and PT (P <0.001), respectively. Conclusions Use of the JAD lead to significantly greater and further dispersal of MS2 bacteriophage from artificially contaminated hands when compared to the WAD and PT. Significance and Impact of Study The choice of hand drying device should be considered carefully in areas where infection prevention concerns are paramount, such as healthcare settings and the food industry.
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Background World Health Organization and EU hand hygiene guidelines state that if electric hand dryers are used, they should not aerosolize pathogens. Previous studies have investigated the dispersal by different hand-drying devices of chemical indicators, fungi and bacteria on the hands. This study assessed the aerosolization and dispersal of virus on the hands to determine any differences between hand-drying devices in their potential to contaminate other occupants of public washrooms and the washroom environment. Methods A suspension of MS2, an Escherichia coli bacteriophage virus, was used to artificially contaminate the hands of participants prior to using three different hand-drying devices: jet air dryer, warm air dryer, paper towel dispenser. Virus was detected by plaque formation on agar plates layered with the host bacterium. Vertical dispersal of virus was assessed at a fixed distance (0.4 m) and over a range of different heights (0.0 – 1.8 m) from the floor. Horizontal dispersal was assessed at different distances of up to three metres from the hand-drying devices. Virus aerosolization and dispersal was also assessed at different times up to 15 minutes after use by means of air sampling at two distances (0.1 and 1.0 m) and at a distance behind and offset from each of the hand-drying devices. Results Over a range of heights, the jet air dryer was shown to produce over 60 times greater vertical dispersal of virus from the hands than a warm air dryer and over 1300 times greater than paper towels; the maximum being detected between 0.6 and 1.2 metres from the floor. Horizontal dispersal of virus by the jet air dryer was over 20 times greater than a warm air dryer and over 190 times greater than paper towels; virus being detected at distances of up to three metres. Air sampling at three different positions from the hand-drying devices 15 minutes after use showed that the jet air dryer produced over 50-times greater viral contamination of the air than a warm air dryer and over 110-times greater than paper towels. Conclusions Due to their high air speed, jet air dryers aerosolize and disperse more virus over a range of heights, greater distances, and for longer times than other hand drying devices. If hands are inadequately washed, they have a greater potential to contaminate other occupants of a public washroom and the washroom environment. Main messages: Jet air dryers with claimed air speeds of over 600 kph have a greater potential than warm air dryers or paper towels to aerosolize and disperse viruses on the hands of users. The choice of hand-drying device should be carefully considered. Jet air dryers may increase the risk of transmission of human viruses, such as norovirus, particularly if hand washing is inadequate.
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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica
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Coastal low-level jets (CLLJ) are a low-tropospheric wind feature driven by the pressure gradient produced by a sharp contrast between high temperatures over land and lower temperatures over the sea. This contrast between the cold ocean and the warm land in the summer is intensified by the impact of the coastal parallel winds on the ocean generating upwelling currents, sharpening the temperature gradient close to the coast and giving rise to strong baroclinic structures at the coast. During summertime, the Iberian Peninsula is often under the effect of the Azores High and of a thermal low pressure system inland, leading to a seasonal wind, in the west coast, called the Nortada (northerly wind). This study presents a regional climatology of the CLLJ off the west coast of the Iberian Peninsula, based on a 9km resolution downscaling dataset, produced using the Weather Research and Forecasting (WRF) mesoscale model, forced by 19 years of ERA-Interim reanalysis (1989-2007). The simulation results show that the jet hourly frequency of occurrence in the summer is above 30% and decreases to about 10% during spring and autumn. The monthly frequencies of occurrence can reach higher values, around 40% in summer months, and reveal large inter-annual variability in all three seasons. In the summer, at a daily base, the CLLJ is present in almost 70% of the days. The CLLJ wind direction is mostly from north-northeasterly and occurs more persistently in three areas where the interaction of the jet flow with local capes and headlands is more pronounced. The coastal jets in this area occur at heights between 300 and 400 m, and its speed has a mean around 15 m/s, reaching maximum speeds of 25 m/s.
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Coal contains trace elements and naturally occurring radionuclides such as 40K, 232Th, 238U. When coal is burned, minerals, including most of the radionuclides, do not burn and concentrate in the ash several times in comparison with their content in coal. Usually, a small fraction of the fly ash produced (2-5%) is released into the atmosphere. The activities released depend on many factors (concentration in coal, ash content and inorganic matter of the coal, combustion temperature, ratio between bottom and fly ash, filtering system). Therefore, marked differences should be expected between the by-products produced and the amount of activity discharged (per unit of energy produced) from different coal-fired power plants. In fact, the effects of these releases on the environment due to ground deposition have been received some attention but the results from these studies are not unanimous and cannot be understood as a generic conclusion for all coal-fired power plants. In this study, the dispersion modelling of natural radionuclides was carried out to assess the impact of continuous atmospheric releases from a selected coal plant. The natural radioactivity of the coal and the fly ash were measured and the dispersion was modelled by a Gaussian plume estimating the activity concentration at different heights up to a distance of 20 km in several wind directions. External and internal doses (inhalation and ingestion) and the resulting risk were calculated for the population living within 20 km from the coal plant. In average, the effective dose is lower than the ICRP’s limit and the risk is lower than the U.S. EPA’s limit. Therefore, in this situation, the considered exposure does not pose any risk. However, when considering the dispersion in the prevailing wind direction, these values are significant due to an increase of 232Th and 226Ra concentrations in 75% and 44%, respectively.
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Dissertação de Natureza Científica elaborada no Laboratório Nacional de Engenharia Civil (LNEC) para obtenção do grau de mestre em Engenharia Civil na Área de Especialização de Hidráulica no âmbito do protocolo de cooperação entre o ISEL e o LNEC
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Se estimó la biomasa de las especies pelágicas anchoveta, sardina, jurel, caballa y samasa mediante la técnica Hidroacústica, entre el 20 de marzo y el 7 de mayo de 1998, a bordo del BIC Humboldt, desde Caleta La Cruz, Tumbes hasta Los Palos, Tacna. El diseño para la obtención de datos fue el sistemático paralelo con transectos perpendiculares a la costa con una separación entre ellos de 12 mn. El equipo utilizado fue la ecosonda científica EK-500 SIMRAD de 38 y 120 kHz de frecuencia, en un rango de detección de 3,5 a 400 m de profundidad. Las calibraciones hidroacústicas se realizaron tanto en la isla Lobos de Afuera (6°55,2 'S y 80°43,7 'W) como en el Callao (12°S). La obtención de la biomasa se determinó por el método de estratificación por áreas isoparalitorales. Las ecuaciones de fuerza de blanco utilizadas fueron las determinadas en noviembre de 1997 por MAC LENNAN et al. y, en este crucero, por GUTIÉRREZ y MAC LENNAN.
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Principales resultados sobre los aspectos biológico-pesqueros de las principales especies capturadas en el Crucero de Evaluación de Recursos Pelágicos 9803-05, realizado a bordo del BIC Humboldt y las LP IMARPE IV y V, entre el 20 de marzo y el 07 de mayo de 1998 desde la Caleta La Cruz, Tumbes, hasta Los Palos, Tacna. Se prospectó la franja de 30 millas náuticas próximas a la costa. Las especies mayormente capturadas fueron la anchoveta (Engraulis ringens) y la samasa (Anchoa nasus), adicionalmente la sardina (Sardinops sagax), el jurel (Trachurus picturatus), la caballa (Scomber japonicus), bagres (Bagre panamensis y Galeichthys peruvianus), cachema (Cynoscion analis) y falso volador (Prionotus stephanophrys). Destaca la presencia de algunas especies que se han aproximado con las aguas cálidas del norte y oeste.
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Se presentan los resultados del comportamiento de la red de arrastre pelágico modelo alemán Engel 988/400 utilizada para la evaluación de los recursos pelágicos anchoveta (Engraulis ringens), sardina (Sardinops sagax sagax), jurel (Trachurus picturatus murphyi), caballa (Scomber japonicus peruanus) y samasa (Anchoa nasus) durante el Crucero Hidroacústico 9803-05 a bordo del BIC Humboldt entre Caleta La Cruz, Tumbes y Los Palos, Tacna, del 20 de marzo al 7 de mayo 1998. Se determinó la distancia entre puertas, el área de la boca de la red y el volumen de agua filtrada que tuvo la red en los arrastres efectivos de una milla náutica de distancia durante los 144 lances de comprobación, obteniéndose un buen rendimiento; se capturó un total de 39.912,14 kg, correspondiendo para anchoveta 16.838,15 kg, sardina 6.800,74 kg, jurel 1.384 kg, caballa 1.404,58 kg, samasa 8.071,8 kg y otros recursos hidrobiológicos 5.413,48 kg, con un índice de captura (CPUE) de 788,79 kg/h. Los valores de datos de comportamiento de la red como la abertura horizontal de la boca, abertura vertical, profundidad de la red y distancia entre la relinga inferior al fondo, etc., se obtuvo en forma directa por medio de una net sonda FS 900 SIMRAD, los arrastres tuvieron en promedio una duración de de 20,8 minutos con una velocidad de arrastre promedio de 3 nudos.
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Se efectuaron mediciones de TS (Fuerza de Blanco, Target Strenght) durante los 108 lances de comprobación de ecotrazos realizados por el BIC Humboldt en el marco del Crucero 9808-09 de Evaluación Hidroacústica de Recursos Pelágicos. Se consideran para el análisis únicamente aquellos lances donde más del 90% de la captura perteneció a una sola especie. Los factores b20 de la ecuación de TS (TS=20 log L - b20) que han sido determinados, las cuales deberán ser considerados como provisionales, son las siguientes: Pez cinta (Trichiurus lepturus) = 70,95 (120 kHz); Vinciguerria o pez linterna (Vinciguerria lucetia pacifici) = 83,29 (120 kHz); Samasa (Anchoa nasus) = 86,57 (120 kHz); Caballa (Scomber japonicus) = 83,09 (120 kHz); Pez cinta (Trichiurus lepturus) = 71,41 (38 kHz); y Vinciguerria o pez linterna (Vinciguerria lucetia pacifici)= 82,04 (38kHz).
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Describe los cambios en la distribución, estructura por tamaños y estructura de la biomasa de los principales recursos pelágicos. La biomasa de anchoveta continúa en bajos niveles y su disminución está altamente correlacionada con el incremento de la salinidad y los bajos volúmenes de plancton. Otros recursos mesopelágicos y demersales como, vinciguerria, falso volador, y bagre han incrementado sus biomasas. El porcentaje de juveniles de la mayoría de recursos pesqueros se ha incrementado notablemente, indicándonos que se encuentran en proceso de renovación total de sus poblaciones. Las tallas de anchoveta mostraron un cambio significativo respecto a los cruceros anteriores, con predominio de ejemplares pequeños de talla modal en 6,15 cm, mientras que en sardina, jurel y caballa persiste la incidencia de buenos reclutamientos. En el aspecto reproductivo destaca la continuidad del proceso reproductivo de anchoveta iniciado en otoño de 1998, coincidente con el inicio del periodo post-niño. Se incluyen además algunas notas sobre distribución de cefalópodos.