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"Vieira, A. P."
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Climate Change Impacts on Water Resources of the Largest Hydropower Plant Reservoir in Southeast Brazil
by
Viola, Marcelo R.
,
Guzman, Jorge A.
,
Vieira, Nayara P. A.
in
Aquatic resources
,
Basins
,
Brazil
2021
Approximately 70% of all the electric energy produced in Brazil comes from hydropower plants. In this context, the Grande River Basin (GRB) stands out in Brazil. Some studies have been carried out to investigate the impacts of climate change in tropical regions to support water resources’ management and planning. This study aims to project the changes in the runoff that feed the Furnas Hydropower Plant (FHP) reservoir (GRB-Furnas basin), the largest and most important facility in Southeast Brazil. The lavras simulation of hydrology model (LASH) was used to project the impacts on runoff and hydrological droughts over the century in GRB-Furnas. The regional climate models (RCMs) Eta-HadGEM-ES, Eta-MIROC5, and Eta-CanESM2 forced the LASH model from 2007 to 2099, taking the representative concentration pathways (RCPs) 4.5 and 8.5. LASH simulated the runoff adequately for the baseline period (1961–2005) using the RCMs’ outputs. A noticeable reduction in precipitation was identified in the wet season, especially in the 2007–2040 period for RCP4.5 and in the 2071–2099 period for RCP8.5. As a result, a significant reduction in the runoff, mainly in the baseflow, and an increase in droughts’ severity were projected throughout the XXI Century, which may compromise the water security to the FHP reservoir.
Journal Article
Keep-Left Behavior Induced by Asymmetrically Profiled Walls
2016
We show, computationally and analytically, that asymmetrically shaped walls can organize the flow of pedestrians driven in opposite directions through a corridor. Precisely, a two-lane ordered state emerges in which people always walk on the left-hand side (or right-hand side), controlled by the system’s parameters. This effect depends on features of the channel geometry, such as the asymmetry of the profile and the channel width, as well as on the density and the drift velocity of pedestrians, and the intensity of noise. We investigate in detail the influence of these parameters on the flow and discover a crossover between ordered and disordered states. Our results show that an ordered state only appears within a limited range of drift velocities. Moreover, increasing noise may suppress such flow organization, but the flow is always sustained. This is in contrast with the “freezing by heating” phenomenon according to which pedestrians tend to clog in smooth channels for strong noise [Phys. Rev. Lett. 84, 1240 (2000)]. Therefore, the ratchetlike effect proposed here acts on the system not only to induce a “keep-left” behavior but also to prevent the freezing by heating clogging phenomenon. Besides pedestrian flow, this new phenomenon has other potential applications in microfluidics systems.
Journal Article
Reuse of dairy waste in sweet potato fertilization: impacts on productivity
by
Júnior, J. M. Silva
,
Silva, M. G. S.
,
Simplício, J. B.
in
Agricultural production
,
Agriculture
,
Ashes
2026
Abstract There are few studies evaluating the effects of dairy waste application on sweet potato productivity, especially when combined with organic compost fertilization. In this context, the objective was to evaluate the effects of dairy waste fertilization, with or without organic compost, on the yield components and quality of sweet potato. The experiment was conducted under field conditions from April to August 2019 at the UFRPE experimental farm in Garanhuns, Pernambuco, using a randomized block design with different doses of dairy waste (0, 5, 10, and 15 m3 ha−1) in the presence and absence of organic compost, in addition to a control with mineral fertilization. The analyzed variables included ash and starch contents, total and marketable yield, as well as tuber quality parameters. For ash content in the absence of organic compost, the dose of maximum efficiency was 10.21 m3 ha−1, resulting in 0.55% ash, while the number of marketable tubers reached maximum efficiency at 8.05 m3 ha−1, providing 25.09 tubers per plot. The application of dairy waste, either alone or combined with organic compost, promoted increases in sweet potato yield (t ha−1) and quality, showing performance comparable to mineral fertilizer. The highest ash and starch contents were obtained with the exclusive use of dairy waste, highlighting its potential as a sustainable fertilization alternative. Resumo São escassos estudos que avaliam os efeitos da aplicação de resíduos de laticínio sobre a produtividade da batata-doce, sobretudo quando associados à adubação com composto orgânico. Nesse contexto, objetivou-se avaliar os efeitos da adubação com resíduos de laticínio associados ou não ao composto orgânico nos componentes de rendimento e qualidade da batata-doce. O experimento foi conduzido em campo, de Abril a Agosto de 2019, na fazenda experimental da UFRPE em Garanhuns-PE, utilizando um delineamento em blocos casualizados, com diferentes doses de resíduo de laticínio (0, 5, 10 e 15 m3 ha−1) na presença e ausência de composto orgânico, além de uma testemunha com fertilização mineral. As variáveis analisadas incluíram teores de cinzas e amido, produtividade total e comercial, além de parâmetros de qualidade das túberas. Para os teores cinzas na ausência do composto orgânico, a dose de máxima eficiência foi de 10,21 m3 ha-1, proporcionando 0,55% de cinzas, o número de tubérculos comerciais teve dose de máxima eficiência de 8,05 m3 ha-1 proporcionando 25,09 tubérculos por parcela. A aplicação de resíduos de laticínio, isolados ou combinados ao composto orgânico, promoveu aumento na produtividade (t ha-1) e qualidade da batata-doce, apresentando desempenho semelhante ao fertilizante mineral. Os maiores teores de cinza e amido foram obtidos com o uso exclusivo do resíduo de laticínio, evidenciando seu potencial como alternativa sustentável de adubação.
Journal Article
Comparison Between Shaker and Bioreactor Performance Based on the Kinetic Parameters of Xanthan Gum Production
2009
Xanthan gum production was studied using sugarcane broth as the raw material and batch fermentation by Xanthomonas campestris pv. campestris NRRL B-1459. The purpose of this study was to optimize the variables of sucrose, yeast extract, and ammonium nitrate concentrations and to determine the kinetic parameters of this bioreaction under optimized conditions. The effects of yeast extract and ammonium nitrate concentrations for a given sucrose concentration (12.1-37.8 g L⁻¹) were evaluated by central composite design to maximize the conversion efficiency. In a bioreactor, the maximum conversion efficiency was achieved using 27.0 g L⁻¹ sucrose, 2.7 g L⁻¹ yeast extract, and 0.9 g L⁻¹ NH₄NO₃. This point was assayed in a shaker and in a bioreactor to compare bioreaction parameters. These parameters were estimated by the unstructured kinetic model of Weiss and Ollis (Biotechnol Bioeng 22:859-873, 1980) to determinate the yields (Y P/S), the maximum growth specific rate (μ max), and the saturation cellular concentration (X*). The parameters of the model (μ max, X*, m, λ, α, and β) were obtained by nonlinear regression. For production of xanthan gum in a shaker, the values of μ max and Y P/S obtained were 0.119 h⁻¹ and 0.34 g g⁻¹, respectively, while in a bioreactor, they were 0.411 h⁻¹ and 0.63 g g⁻¹, respectively.
Journal Article
Statistical analysis and optimization of nitrogen, phosphorus, and inoculum concentrations for the biodegradation of petroleum hydrocarbons by response surface methodology
2009
In order to optimize and evaluate the influence of nitrogen, phosphorus, and inoculum concentrations on the biodegradation of hydrocarbon contaminated effluents, experiments based on central composite design (CCD) method were carried out for 3 days, employing C1 mixed culture and intermittent aeration. The independent variables were nitrogen concentration (X ₁), phosphorus concentration (X ₂), and inoculum concentration (X ₃) and the removal of total petroleum hydrocarbons (TPH) was the dependent variable. The optimized nutrients ratio (C:N:P = 100:20:2.7) and inoculum concentration (1.32 g/l) provided TPH removal of 71.8% after processing for three days. Analysis using gas chromatography identified five hydrocarbons classes: paraffins, isoparaffins, olefins, naphthenics, and aromatics. The naphthenic compounds did not degrade as readily as the other hydrocarbons that were identified. The following degradation percentages were obtained: 87.1% for the paraffins, 77.7% for the isoparaffins, 78.6% for the olefins, 38.4% for the naphthenics, and 71.7% for the aromatics.
Journal Article
Assessment of teeth as biomarkers for skeletal fluoride exposure
2005
Skeletal fluorosis and dental fluorosis are diseases related to fluoride (F) ingestion. Bone is the largest storage site of F in our body. Therefore, bone F concentrations are considered biomarkers for total F body burden (exposure). However, difficult accessibility limits its use as a biomarker. Thus, a more accessible tissue should be considered and analyzed as a biomarker for total F body burden. The objective of this study, which was divided into two parts, was to evaluate teeth as a biomarker for skeletal F exposure. In part 1 of the study, 70 mice of three different strains (SWR/J, A/J and 129P3/J) were exposed to different levels of water fluoridation (0, 25, 50 and 100 ppm). Bone (femora and vertebrae) and teeth from these mice were then analyzed for F concentration using Instrumental Neutron Activation Analysis (INAA). In part 2 of the study, human teeth (enamel and dentin) and bone from 30 study subjects were collected and analyzed for F concentration using INAA. Study subjects lived in areas with optimum levels of water fluoridation (0.7 and 1 ppm) and underwent therapeutic extraction of their unerupted third molars. The values of bone and teeth F concentration were correlated for parts 1 and 2 of this study. The results showed that in the animal model, where animals were exposed to a wide range of F in their drinking water, tooth [F] correlated with bone [F]. However, no correlation was seen between bone and enamel F concentrations or between bone and dentin F concentrations in the human samples. Therefore, teeth are not good biomarkers for skeletal F exposure in humans when exposure is confined to optimum levels of F in the drinking water.
Journal Article
Differences among children, adolescents and adults with severe leptospirosis: A comparative analysis
by
Daher, E
,
Vieira, A. P. F.
,
Neto, R. J. P.
in
Causes of
,
Comparative analysis
,
Demographic aspects
2014
Leptospirosis is a zoonosis of global importance caused by Leptospira interrogans. The aim of this study was to compare the data between children, adolescents and adults with leptospirosis. This is a retrospective study including a total of 373 consecutive patients with leptospirosis, admitted to tertiary hospitals in Northeast of Brazil, from May 1985 to August 2010. The patients were divided into two groups (age ≤21 years and >21 years). The adults were 304 (81.5%) of the population, with a mean ge of 41 ± 13 (range 22-84) years. The pediatric group was 16 ± 3 (range 9-21) years. Signs and symptoms where similar between the groups, excepting arrhythmia, which was more frequent in adults and vomiting, more common in children (16% vs. 0%, P = 0.04 and 65% vs. 79%, P = 0.02), respectively. Adult group presented with higher serum urea (137 vs. 97 mg/dl, P = 0.002) and creatinine (4.3 vs. 3.0 mg/dl, P = 0.007). Acute kidney injury (AKI) was observed in 80%, mainly in adults (83% vs. 70% P < 0.005). Adults required renal replacement therapy more frequently than children (38% vs. 11%, P < 0.0001). Mortality was higher in adults (14.8% vs. 2.8%, P = 0.005) and in adults with AKI (93% vs. 7%, P < 0.05). There are important differences between the adults and children with leptospirosis. AKI was more frequent in adults and it was associated with increased mortality.
Journal Article
Is Fluoride Concentration in Dentin and Enamel a Good Indicator of Dental Fluorosis?
by
GRYNPAS M. D.
,
HANCOCK R.
,
MAIA R.
in
Adult
,
Cariostatic Agents - analysis
,
Dental Enamel - chemistry
2004
Despite some studies correlating dental fluorosis (DF) and fluoride (F) concentration in dental enamel, no information is available about DF and dentin F concentration. Our objective was to determine the correlation between teeth F concentration and DF severity in unerupted human 3rd molars, and the correlation between dentin and enamel F concentrations in the same tooth. Ninety-nine 3rd molars were studied—53 from Fortaleza, Brazil (F water, 0.7 ppm), 22 from Toronto (1.0 ppm), and 24 from Montreal (0.2 ppm). DF severity was evaluated according to the Thylstrup-Fejerskov Index, while F concentration was analyzed by Instrumental Neutron Activation Analysis. DF severity varied between TF0 and TF4, while F concentration ranged between 39 and 550 ppm in enamel and 101 and 860 ppm in dentin. Our results showed correlation between dentin F concentration and DF (rS = 0.316, p = 0.001), but no correlation between enamel F concentration and DF (rS = 0.154, p = 0.133). No correlation was observed between dentin and enamel F concentrations in the same tooth (rS = 0.064, p = 0.536).
Journal Article
Fluctuation Analyses for Pattern Classification in Nondestructive Materials Inspection
2010
We review recent work on the application of fluctuation analyses of time series for pattern classification in nondestructive materials inspection. These analyses are based on the evaluation of time-series fluctuations across time intervals of increasing size, and were originally introduced in the study of fractals. A number of examples indicate that this approach yields relevant features allowing the successful classification of patterns such as (i) microstructure signatures in cast irons, as probed by backscattered ultrasonic signals; (ii) welding defects in metals, as probed by TOFD ultrasonic signals; (iii) gear faults, based on vibration signals; (iv) weld-transfer modes, as probed by voltage and current time series; (v) microstructural composition in stainless steel, as probed by magnetic Barkhausen noise and magnetic flux signals.
Journal Article
Tooth Quality in Dental Fluorosis
by
Vieira, A. P. G. F.
,
Eggertsson, H.
,
Everett, E. T.
in
Administration, Oral
,
Animals
,
Cariostatic Agents - administration & dosage
2005
Dental fluorosis (DF) affects the appearance and structure of tooth enamel and can occur following ingestion of excess fluoride during critical periods of amelogenesis. This tooth malformation may, depending on its severity, influence enamel and dentin microhardness and dentin mineralization. Poor correlation between tooth fluoride (F) concentration and DF severity was shown in some studies, but even when a correlation was present, tooth fluoride concentration explained very little of DF severity. This fact calls into question the generally accepted hypothesis that the main factor responsible for DF severity is tooth fluoride concentration. It has been shown previously that genetic factors (susceptibility to DF) play an important role in DF severity although DF severity relates to individual susceptibility to fluoride exposure (genetics), tooth fluoride concentration relates to fluoride ingestion (environmental). The objective of this study was to investigate the correlation between tooth fluoride concentration, DF severity, and tooth mechanical and materials properties. Three strains of mice (previously shown to have different susceptibility to DF) at weaning were treated with four different levels of F in their water (0, 25, 50, and 100 ppm) for 6 weeks. Mice teeth were tested for fluoride by instrumental neutron activation analysis (INAA), DF severity determined by quantitative light-induced fluorescence [QLF], and tooth quality (enamel and dentin microhardness and dentin mineralization). Tooth fluoride concentration (environment factor) correlated positively with DF severity (QLF) (rs=0.608), fluoride treatment group (rs=0.952). However, tooth fluoride concentration correlated negatively with enamel microhardness (rs=-0.587), dentin microhardness (rs=-0.268) and dentin mineralization (rs=-0.245). Dental fluorosis (genetic factor) severity (QLF) correlated positively with fluoride treatment (rs=0.608) and tooth fluoride concentration (rs=0.583). DF severity correlated negatively with enamel microhardness (rs=-0.564) and dentin microhardness (rs=-0.356). Genetic factors (DF severity) and the environmental factor (fluoride concentration in tooth structure) have similar influence on tooth biomechanical properties, whereas only the environmental factor has an influence on tooth material property (mineralization).
Journal Article