143 resultados para 6109 Psicología industrial
Resumo:
Efetuou-se a caracterização física do fruto e físico-química da polpa do bacuri CPATU 207-3, oriundo de uma planta-matriz do Banco de Germoplasma de Bacurizeiro da Embrapa Amazônia Oriental. Para a caracterização física foi utilizada uma amostra de 50 frutos, os quais foram individualmente analisados quanto aos seguintes aspectos: cor do epicarpo, formato, peso, comprimento, diâmetro, espessura da casca, volume da cavidade interna, número de sementes e de segmentos partenocárpicos, rendimentos porcentuais (p/p) de casca, polpa, sementes e do conjunto representado pela coluna placentária e óvulos abortados. A caracterização físico-química foi efetuada em três amostras de polpa congelada a 18ºC negativos, provenientes de frutos em completo estádio de maturação, coletados nos meses de janeiro, fevereiro e março de 2001, tendo sido consideradas as seguintes variáveis: teores de umidade, de sólidos totais e de sólidos solúveis totais (ºBrix), pH, acidez total e a relação sólidos solúveis totais/acidez total titulável. O bacuri CPATU 207-3 apresentou formato ovalado e com ápice ligeiramente pontiagudo, epicarpo de coloração amarelada, fruto de tamanho considerado médio e peso médio de 265,8 g. As principais características diferenciais desse tipo de bacuri são: a espessura da casca (0,75cm), o rendimento porcentual de polpa (27,7%) e o número de segmentos partenocárpicos (2,8 unidades/fruto). A polpa do bacuri CPATU 207-3 apresentou boas características físico-químicas, com 84,35% de umidade, 15,65% de sólidos totais, teor de sólidos solúveis totais de 14,53ºBrix, pH 3,34, acidez total titulável de 1,24% e relação ºBrix/acidez total titulável igual a 11,4. As características físicas e físico-químicas desse tipo de bacuri permitem sua utilização tanto para consumo na forma de fruta fresca como na forma industrializada. Nesse último caso, é particularmente indicado para fabricação de compota, em decorrência do elevado número de segmentos partenocárpicos que apresenta.
Resumo:
Com o objetivo de avaliar a influência de seis porta-enxertos sobre a maturação e as características físico-químicas de frutos de laranjeira 'Valência', instalou-se um experimento em janeiro de 1994, no município de Nova Esperança-PR. O delineamento experimental foi de blocos ao acaso, com quatro repetições, três plantas úteis por parcela e seis tratamentos, constituídos pelos porta-enxertos: limoeiro 'Cravo' (Citrus limonia), tangerineiras 'Cleópatra' (C. reshni) e 'Sunki' (C. sunki), citrangeiro 'Troyer' (Poncirus trifoliata x C. sinensis), tangeleiro 'orlando' (C. tangerina x C. paradisi) e laranjeira 'Caipira'(C. sinensis). Avaliou-se a qualidade dos frutos em sete safras e a curva de maturação foi estimada para os anos de 1999 e 2000. Todos os porta-enxertos proporcionaram qualidade aceitável aos frutos da laranjeira 'Valência', com destaque para o citrangeiro 'Troyer' que superou o limoeiro 'Cravo' em rendimento industrial. Em um ano considerado com padrão climático normal, a evolução do índice tecnológico ajustou-se a uma equação de regressão quadrática, proporcionando melhor rendimento industrial quando os frutos foram colhidos no início de novembro, independentemente do porta-enxerto utilizado.
Resumo:
The content of digoxin and lanatoside C (jointly quantified), lanatoside A, lanatoside B, glucoevatromonoside, odorobioside G, glucogitoroside, glucoverodoxine, glucodigifucoside and digitalinum verum was determined by HPLC in Digitalis lanata harvested in Brazil, as well as in clones industrially employed for the production of cardenolides. The Brazilian plants presented greater variation in the contents of cardenolides than the analyzed clones. Lanatoside C and digoxin concentrations were higher in the clones (6120±640 nmol/g dry leaf) than in the Brazilian plants (1820±900 nmol/g dry leaf). The concentrations of these glycosides were found to be within the range described for native species and also were similar to an European cultivar, what makes possible its industrial use for the cardenolides production.
Resumo:
In this study we describe an experimental procedure based on a chemical industrial process of soya-bean oil extraction applied in general chemistry for undergraduate students. The experiment was planned according to the Science, Technology and Society (STS) approach to teach basic chemical concepts and provide grounding in the management of environmental care. The use of real life chemistry problems seems to salient the relevance of chemistry to our students and enhances their motivation to learn both the practical and theoretical components of the discipline.
Resumo:
The monitoring of the pollution status of the Brazilian coast is hampered by the lack of a consistent environmental indicator. We propose Hg as an environmental proxy to anthropogenic pollution of coastal regions due to its absence in the Brazilian geology, its ubiquity in anthropogenic effluents, and its toxicity. Available data suggest Hg "backgrounds" in coastal sediments of 1-10 ng g-1, in the East and 15-30 ng g-1 in the South. We suggest short sediment cores to establish these values estimating a geo-accumulation index to compare all areas. The distribution of index values showed the majority of southern coast at least moderately contaminated whereas many eastern areas are still pristine.
Resumo:
The alteration in the quality of groundwater in the industrial zone of Brazil's southernmost state was assessed by a hydrogeochemical study. In 70-85% of the studied area, fluoride, nitrate and phosphate in groundwater surpass the maximum limits for human consumption according to Brazilian environmental legislation. The chemical spectrum of contaminants and their spatial distribution show that fertilizer production processes are responsible for groundwater pollution. The natural conditions of the region are not favorable for minimal protection against infiltration of pollutants into the aquifer.
Resumo:
This study is a result of undergraduate student participation in the Environmental Chemistry discipline provided by the Chemistry Institute/UFBA. The students were involved in the development of passive samplers, a project of the LAQUAM (Environmental Analytical Chemistry Laboratory). The students' residences and other neighborhoods were used to create a passive sampling network, allowing the measurement of atmospheric levels of pollutants in urban areas and in those under industrial influence. The assembly of the passive samplers, including impregnation of filters and chemical analysis were part of the students' practice tasks. The results were analyzed taking into consideration the Brazilian legislation.
Resumo:
REVIEW: Living organisms encountered in hostile environments that are characterized by extreme temperatures rely on novel molecular mechanisms to enhance the thermal stability of their proteins, nucleic acids, lipids and cell membranes. Proteins isolated from thermophilic organisms usually exhibit higher intrinsic thermal stabilities than their counterparts isolated from mesophilic organisms. Although the molecular basis of protein thermostability is only partially understood, structural studies have suggested that the factors that may contribute to enhance protein thermostability mainly include hydrophobic packing, enhanced secondary structure propensity, helix dipole stabilization, absence of residues sensitive to oxidation or deamination, and increased electrostatic interactions. Thermostable enzymes such as amylases, xylanases and pectinases isolated from thermophilic organisms are potentially of interest in the optimization of industrial processes due to their enhanced stability. In the present review, an attempt is made to delineate the structural factors that increase enzyme thermostability and to document the research results in the production of these enzymes.
Resumo:
This manuscript shows an overview of the solid oxide fuel cell (SOFC) technology based on industrial developments. The information presented has been collected mostly at conferences that the authors attended. It is observed that several companies have been pursuing the development of the SOFC technology. Significant advances in stability and power density have raised the economic interest in this technology recently. It is revealed that the SOFC materials are essentially the same ones that have been used in the past decades, and that the two most important designs of pre-commercial SOFC prototypes are the tubular and planar ones.
Resumo:
The performances of eight kinds of insulators from electrical distribution lines in Salvador-BA, Brazil, were evaluated considering the chemical and physical local environmental pollution. The parameters that were chosen as characteristic for the insulators' properties were leakage current and partial electrical discharge. A data storage processing system and a communication link to the lab were built for data acquisition. The results show that the main contribution to the poor performance of the insulators is settleable magnetite particulate matter on the insulator in addition to the long term wetness time, t4.
Resumo:
Potassium carbonate, or potash, was the most important industrial chemical of the 18th century. It was essential for producing glass, soap, saltpeter, dyes, several drugs, and also used for bleaching linens, paper, and sugar. We examine here a book in which Brazilian author José Mariano da Conceição Veloso gathered his translations into Portuguese of English and French articles, letters, patents, and pamphlets with instructions on how to prepare potash. We discuss especially his version of Richard Watson's essay entitled 'Of saline substances', and Veloso's own 'Flora Alographica', a description of the Brazilian plants that could be used to prepare potash.
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The importance of chitosan has grown significantly over the last two decades due to its renewable and biodegradable source, and also because of the recent increase in the knowledge of its functionality in the technological and biomedical applications. The present article reviews the biopolymer chitosan and its derivatives as versatile biomaterials for potential drug delivery systems, as well as tissue engineering applications, analgesia and treatment of arthritis.
Resumo:
The new millennium is marked by a growing search for renewable fuels and alternative raw materials from biomass in the petrochemicals industry. However, there are many challenges to overcome regarding technological and human resources aspects. In this scenario, cashew nut oil, which is rich in natural phenols, is considered to be very promising for the development of synthetic and functional products and as a feedstock for production of fine chemicals and a wide variety of new materials.
Resumo:
Surface sediments from the River São Francisco were analyzed to investigate the impact, due to the presence of metals (Cd, Cu, Pb, Zn) in wastes from a metallurgical industry in the city of Três Marias/MG, Brazil. The concentrations and geochemical associations of Pb, Zn and trace metals associated with the minerals employed in zinc production were measured. Sediments close to discharge locations were highly contaminated with Pb (332-512 μg g-1) and Zn (7872-10780 μg g-1), with values decreasing rapidly due to dilution and hydraulic sorting. Evaluation of toxicity according to the Consensus-based Sediment Quality Guidelines indicated for Cd, Pb and Zn a high probability of adverse effects on aquatic biota at these sites.
Resumo:
Chitosan, poly[β-(1-4)-linked-2-amino-2-deoxy-D-glucose], is the N-deacetylated product of chitin which is a major component of arthropod and crustacean shells such as lobsters, crabs, shrimps, and cuttlefishes. In addition, chitosan has many significant biological and chemical properties such as biodegradability, biocompatibility and bioactivity as well as polycationic properties. Thus, it has been widely used in many industrial and biomedical applications including wastewater treatment, chromatographic support, carriers for controlled drug delivery and enzyme immobilization. This review is an insight into the exploitation of utilization of chitosan based-supports in different geometrical configurations on the immobilization of enzymes by different protocols for further application in biotransformation reactions.