988 resultados para Nitrogen balance


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There is growing evidence that organo-nitrogen compounds may constitute a significant fraction of the aerosol nitrogen (N) budget. However, very little is known about the abundance and origin of this aerosol fraction. In this study, the concentration of organic nitrogen (ON) and major inorganic ions in PM2.5 aerosol were measured at the Duke Forest Research Facility near Chapel Hill, NC, during January and June of 2007. A novel on-line instrument was used, which is based on the Steam Jet Aerosol Collector (SJAC) coupled to an on-line total carbon/total nitrogen analyzer and two on-line ion chromatographs. The concentration of ON was determined by tracking the difference in concentrations of total nitrogen and of inorganic nitrogen (determined as the sum of N-ammonium and N-nitrate). The time resolution of the instrument was 30 min with a detection limit for major aerosol components of ∼0.1 mu;gm-3. Nitrogen in organic compounds contributed ∼33% on average to the total nitrogen concentration in PM2.5, illustrating the importance of this aerosol component. Absolute concentrations of ON, however, were relatively low (lt;1.0 mu;gm-3) with an average of 0.16 mu;gm-3. The absolute and relative contribution of ON to the total aerosol nitrogen budget was practically the same in January and June. In January, the concentration of ON tended to be higher during the night and early morning, while in June it tended to be higher during the late afternoon and evening. Back-trajectories and correlation with wind direction indicate that higher concentrations of ON occur in air masses originating over the continental US, while marine air masses are characterized by lower ON concentrations. The data presented in this study suggests that ON has a variety of sources, which are very difficult to quantify without information on chemical composition of this important aerosol fraction.

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SCOPUS: ch.b

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Aquifer denitrification is among the most poorly constrained fluxes in global and regional nitrogen budgets. The few direct measurements of denitrification in groundwaters provide limited information about its spatial and temporal variability, particularly at the scale of whole aquifers. Uncertainty in estimates of denitrification may also lead to underestimates of its effect on isotopic signatures of inorganic N, and thereby confound the inference of N source from these data. In this study, our objectives are to quantify the magnitude and variability of denitrification in the Upper Floridan Aquifer (UFA) and evaluate its effect on N isotopic signatures at the regional scale. Using dual noble gas tracers (Ne, Ar) to generate physical predictions of N2 gas concentrations for 112 observations from 61 UFA springs, we show that excess (i.e. denitrification-derived) N2 is highly variable in space and inversely correlated with dissolved oxygen (O2). Negative relationships between O2 and δ15N NO3 across a larger dataset of 113 springs, well-constrained isotopic fractionation coefficients, and strong 15N:18O covariation further support inferences of denitrification in this uniquely organic-matter-poor system. Despite relatively low average rates, denitrification accounted for 32 % of estimated aquifer N inputs across all sampled UFA springs. Back-calculations of source δ15N NO3 based on denitrification progression suggest that isotopically-enriched nitrate (NO3-) in many springs of the UFA reflects groundwater denitrification rather than urban- or animal-derived inputs. © Author(s) 2012.

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PURPOSE/BACKGROUND: Dynamic balance is an important component of motor skill development. Poor dynamic balance has previously been associated with sport related injury. However, the vast majority of dynamic balance studies as they relate to sport injury have occurred in developed North American or European countries. Thus, the purpose of this study was to compare dynamic balance in adolescent male soccer players from Rwanda to a matched group from the United States. METHODS: Twenty-six adolescent male soccer players from Rwanda and 26 age- and gender-matched control subjects from the United States were screened using the Lower Quarter Y Balance Test during their pre-participation physical. Reach asymmetry (cm) between limbs was examined for all reach directions. In addition, reach distance in each direction (normalized to limb length, %LL) and the composite reach score (also normalized to %LL) were examined. Dependent samples t-tests were performed with significant differences identified at p<0.05. RESULTS: Twenty-six male soccer players from Rwanda (R) were matched to twenty-six male soccer players from the United States (US). The Rwandan soccer players performed better in the anterior (R: 83.9 ± 3.2 %LL; US: 76.5 ± 6.6 %LL, p<0.01), posterolateral (R: 114.4 ± 8.3 %LL ; US: 106.5 ± 8.2 %LL, p<0.01) and composite (R: 105.6 ± 1.3 %LL; US: 97.8 ± 6.2 %LL, p<0.01) reach scores. No significant differences between groups were observed for reach asymmetry. CONCLUSIONS: Adolescent soccer players from Rwanda exhibit superior performance on a standardized dynamic balance test as comparison to similar athletes from the United States. The examination of movement abilities of athletes from countries of various origins may allow for a greater understanding of the range of true normative values for dynamic balance. LEVELS OF EVIDENCE: 3b.

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Lower Extremity Joint Arthroplasty (LEJA) surgery is an effective way to alleviate painful osteoarthritis. Unfortunately, these surgeries do not normalize the loading asymmetry during the single leg stance phase of gait. Therefore, we examined single leg balance in 234 TJA patients (75 hips, 65 knees, 94 ankles) approximately 12 months following surgery. Patients passed if they maintained single leg balance for 10s with their eyes open. Patients one year following total hip arthroplasty (THA-63%) and total knee arthroplasty (TKA-69%) had similar pass rates compared to a total ankle arthroplasty (TAA-9%). Patients following THA and TKA exhibit better unilateral balance in comparison with TAA patients. It may be beneficial to include a rigorous proprioception and balance training program in TAA patients to optimize functional outcomes.

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© 2015 Published by Elsevier B.V.Tree growth resources and the efficiency of resource-use for biomass production determine the productivity of forest ecosystems. In nutrient-limited forests, nitrogen (N)-fertilization increases foliage [N], which may increase photosynthetic rates, leaf area index (L), and thus light interception (IC). The product of such changes is a higher gross primary production and higher net primary production (NPP). However, fertilization may also alter carbohydrate partitioning from below- to aboveground, increasing aboveground NPP (ANPP). We analyzed effects of long-term N-fertilization on NPP, and that of long-term carbon storing organs (NPPS) in a Pinus sylvestris forest on sandy soil, a wide-ranging forest type in the boreal region. We based our analyses on a combination of destructive harvesting, consecutive mensuration, and optical measurements of canopy openness. After eight-year fertilization with a total of 70gNm-2, ANPP was 27±7% higher in the fertilized (F) relative to the reference (R) stand, but although L increased relative to its pre-fertilization values, IC was not greater than in R. On the seventh year after the treatment initiation, the increase of ANPP was matched by the decrease of belowground NPP (78 vs. 92gCm-2yr-1; ~17% of NPP) and, given the similarity of IC, suggests that the main effect of N-fertilization was changed carbon partitioning rather than increased canopy photosynthesis. Annual NPPS increased linearly with growing season temperature (T) in both treatments, with an upward shift of 70.2gCm-2yr-1 by fertilization, which also caused greater amount of unexplained variation (r2=0.53 in R, 0.21 in F). Residuals of the NPPS-T relationship of F were related to growing season precipitation (P, r2=0.48), indicating that T constrains productivity at this site regardless of fertility, while P is important in determining productivity where N-limitation is alleviated. We estimated that, in a growing season average T (11.5±1.0°C; 33-year-mean), NPPS response to N-fertilization will be nullified with P 31mm less than the mean (325±85mm), and would double with P 109mm greater than the mean. These results suggest that inter-annual variation in climate, particularly in P, may help explaining the reported large variability in growth responses to fertilization of pine stands on sandy soils. Furthermore, forest management of long-rotation systems, such as those of boreal and northern temperate forests, must consider the efficiency of fertilization in terms of wood production in the context of changes in climate predicted for the region.

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info:eu-repo/semantics/nonPublished

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Tuberculosis-associated immune reconstitution inflammatory syndrome (TB-IRIS) remains a poorly understood complication in HIV-TB patients receiving antiretroviral therapy (ART). TB-IRIS could be associated with an exaggerated immune response to TB-antigens. We compared the recovery of IFNγ responses to recall and TB-antigens and explored in vitro innate cytokine production in TB-IRIS patients.

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El trabajo tiene por objetivo calibrar el modelo CropSyst para simular la producción de materia seca y el balance hídrico de los cultivos de trigo (Triticum aestivum L.) ciclo largo y ciclo corto, colza (Brassica napus), lino (Linum usitatissimum) y arveja proteica (Pisum sativum) en el centro oeste de Entre Ríos. Adicionalmente, se incluyó un análisis de sensibilidad de parámetros que podrían tener, a priori, un mayor impacto sobre el crecimiento y desarrollo y en especial sobre el balance hídrico. La optimización de Cropsyst se realizó utilizando datos obtenidos de un experimento a campo, realizado con un diseño en bloques completos al azar, con cuatro repeticiones. Los parámetros medidos fueron: fenología, humedad del suelo, radiación interceptada por el cultivo, biomasa, índice de área foliar, área foliar específica y rendimiento. Durante el proceso de calibración se utilizó un procedimiento iterativo para optimizar las salidas de crecimiento y desarrollo de los cultivos. Una vez optimizado el modelo agronómico se procedió a evaluar las predicciones relacionadas con el contenido de agua (cm-3 cm-3) por capas y la lámina de agua total (mm) hasta una profundidad de 50 cm. En relación con el contenido de agua se tomaron dos fechas aproximadas de observación y registro, seleccionadas en base al período crítico de cada especie y la lámina de agua total se evaluó durante todo el ciclo de los cultivos. A los efectos de simular la infiltración de agua en el suelo se usaron dos métodos incluidos en modelo: el método en cascada y el método de las diferencias finitas. En general, Cropsyst brindó estimaciones razonables en cuanto a la biomasa, intercepción de radiación y rendimiento. Las predicciones del contenido de agua en el suelo para cada profundidad resultaron poco satisfactorias. Sin embargo, cuando se consideró la lámina de agua a 50 cm. las predicciones fueron más aceptables. Con relación al análisis de sensibilidad, los parámetros evaluados no mostraron cambios significativos en la simulación del agua en el suelo ni en el resto de los indicadores analizados, sugiriendo que mejores ajustes en la predicción del contenido de agua deberían lograrse seleccionando otro tipo de parámetros. La revisión y adaptación de las funciones de pedo-transferencia para estimar los límites máximos y mínimos de almacenaje de agua en el suelo probablemente mejore los resultados obtenidos en este trabajo.

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La evolución estructural de los suelos y su relación con la dinámica del agua son aspectos clave en la sustentabilidad de los agro-ecosistemas. La siembra directa (SD) combinada con la simplificación de secuencias de cultivos, generan la necesidad de estudiar nuevos aspectos de la degradación física de suelos cultivados. El objetivo de esta tesis fue identificar factores condicionantes de la evolución estructural de suelos limosos bajo SD y analizar las consecuencias de la presencia de estructura laminar y otras estructuras asociadas sobre el balance de agua. Se aplicó el método del perfil cultural en distintos sitios de la pampa húmeda norte y se realizaron ensayos de campo (tránsito, cobertura, secuencias) y laboratorio (humedecimiento-secado, intervalo hídrico óptimo) para modelar la evolución de la estructura laminar, identificar sus factores formadores y cuantificar su efecto sobre el funcionamiento hídrico. El desarrollo de estructura laminar está generalizado en la pampa húmeda norte. Su proporción en el perfil está asociada con el número de años bajo SD. El tránsito agrícola y la cobertura superficial no afectaron su evolución. La estructura laminar se forma por fisuración por humedecimiento-secado de una estructura masiva subyacente. La distribución de macroporos de esta estructura y su estabilidad, afectan la microfisuración y la formación de agregados elongados. Las raíces contribuyen con el crecimiento lateral y la exploración de la capa superficial del suelo por impedimento en su profundización cuando la densidad aparente es crítica (mayor a1,44 Mg m-3). La estructura laminar altera el patrón de drenaje y aumenta el escurrimiento superficial en función de su proporción en el perfil del horizonte A. La secuencia de cultivos implementada bajo SD condiciona su formación y en consecuencia el funcionamiento hídrico del suelo. Las ecuaciones generadas permitirán identificar secuencias de cultivos que mejoren la captación de agua para aumentar rendimientos y minimizar riesgos ambientales.

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La deforestación a gran escala de los bosques secos de Argentina es un ejemplo de la intensificación del uso de la tierra que está sufriendo el planeta. Aprovechando la aplicación de una técnica de manejo que elimina grandes extensiones de vegetación arbustiva (rolado), este trabajo evaluó cómo los cambios en la estructura de la vegetación afectaron el balance hídrico y la productividad de un bosque seco del centro de la provincia de San Luis, Argentina. Mediante experimentos a campo (escala de parcela) y usando imágenes satelitales (escala de paisaje) se realizaron comparaciones de la dinámica del agua y de la dinámica de la vegetación en sitios pareados de bosque/desmonte. A escala de parcela, la eliminación de los arbustos produjo un aumento en la cobertura de los pastos y en la biomasa radical fina del primer metro de suelo. A lo largo del tiempo, los sitios deforestados presentaron cada vez menores cantidades de sal en los primeros metros del perfil pero también menores cantidades de agua, sugiriendo un lixiviado de sales, que elevó el potencial osmótico y permitió una reducción del potencial mátrico de magnitud similar. A escala de paisaje, el desmonte produjo una caída en la productividad total, acortando la estación de crecimiento hasta 3 meses. El cambio en la proporción leñosas/herbáceas incrementó el albedo (de 0.8 a 0.12) y la temperatura superficial (entre 1.5- 4°C dependiendo de la fecha) y redujo la evapotranspiración en un 30 por ciento. La sabanización de este ecosistema ilustra cómo, al simplificarse las comunidades vegetales, los flujos de agua se pueden modificar al punto de alterar la dinámica de las sales, las que a su vez pueden producir a mediano plazo efectos suficientes sobre la vegetación como para alterar el balance hídrico y llevar el sistema hacia un funcionamiento hidrológico diferente.

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p.31-47