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Rheology is the science that studies the deformation and flow of solids and fluids under the influence of mechanical forces. The rheological measures of a product in the stage of manufacture can be useful in quality control. The microstructure of a product can also be correlated with its rheological behavior allowing for the development of new materials. Rheometry permits attainment of rheological equations applied in process engineering, particularly unit operations that involve heat and mass transfer. Consumer demands make it possible to obtain a product that complies with these requirements. Chocolate industries work with products in a liquid phase in conching, tempering, and also during pumping operations. A good design of each type of equipment is essential for optimum processing. In the design of every process, it is necessary to know the physical characteristics of the product. The rheological behavior of chocolate can help to know the characteristics of application of the product and its consumers. Foods are generally in a metastable state. Their texture depends on the structural changes that occur during processing. Molten chocolate is a suspension with properties that are strongly affected by particle characteristics including not only the dispersed particles but also the fat crystals formed during chocolate cooling and solidification. Chocolate rheology is extensively studied, and it is known that chocolate texture and stability is strongly affected by the presence of specific crystals

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The effect of Brea Gum (BG) addition on a basic bread formulation is described. The aim of the study was to investigate the effect of BG on the characteristics of wheat bread in terms of changes in moisture, texture, retrogradation of amylopectin, and microstructure. Bread quality was assessed by the physical parameters (volume, specific volume index, width/height ratio, crumb moisture, color, and hardness) and crumb grain structure (total cell number, total cell area, average size of cells, and number of cells per unit area). The effect of BG on the characteristics of the crumb during 24, 48, and 72 hours of storage was determined according to changes in moisture, hardness, and amylopectin retrogradation. Furthermore, the microstructure of the crumb was analyzed by scanning electron microscopy (SEM). The results show the ability of BG to retain moisture in the bread crumb, which was expressed by the lower hardness of the bread crumbs with the addition of the hydrocolloid at 48 and 72 hours of storage. This effect was also evident in the microstructure.

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The effect of protein lupine isolate (LI) and addition of brea gum (BG) on a basic bread formulation is described. The major objective of this research was to evaluate the influence of the addition of LI on the quality and quantity of the proteins of fresh bread with BG. Protein quality was determinate by the Chemical Score method corrected for protein digestibility (CSCD%). The bread dough characteristics were determined by farinograph and alveograph. Fresh bread characterization was performed by measuring the physical parameters and evaluating the crumb structure. The effect of LI and BG on available lysine, the loss of available lysine ratio, and the chemical composition of the breads were also determined. The addition of LI on the bread formulation improved the protein content and the CSCD% of lysine. The dough with LI was less resistant to prolonged kneading and less manageable. With BG addition, the dough became stickier. The quality of fresh bread was affected by the addition of LI: the fresh bread had lower specific volume and more heterogeneous crumbs than that of the control group. The addition of BG did not influence the quality of the bread made with the mixed flour, but it had a positive effect on the loss of available lysine.

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Papaya is among the currently most important tropical fruits grown in Brazil and in the world. The fruit is mainly consumed fresh although it offers many industrial products. The processing of this fruit, as well as its fresh consumption, results in large amounts of waste, such as peels and seeds. Papaya consumption is one of the causes of significant loss of food value; therefore, new aspects on the use of its waste as by-products, or in the production of food additives, or even the incorporation of its flour in food have aroused great interest because these are products of high nutritional value, and their use may be economically viable. The objective of this study was to produce and characterize peel and seed flours from two papaya cultivars (Havai and Calimosa) for their chemical constituents focusing on possible use in foods. The proximate and mineral composition, titratable acidity, soluble solids, pH, contents of vitamin C, and phenolic compounds were determined. According to the results obtained, the papaya peel and seed flours had high contents of protein and fiber and therefore can be used as alternative sources of nutrients and can also be added in foods avoiding waste and adding value to the fruit.

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The aim of this study was to incorporate astaxanthin to yogurts with different fat content to match apricot (Prunus armeniaca L.) color. The samples containing astaxanthin were stored at 5 ± 3 °C, and color stability and astaxanthin content were determined by colorimetry and high performance liquid chromatography (HPLC), respectively. Yogurt samples were analyzed in triplicate every 24 hours for one week and subsequently every week for 3 more weeks There were no significant differences (p < 0.05) between astaxanthin concentration values at 0 and 28 days for both samples; therefore, it can be said that the fat content in the yogurt had not effect on the stability of pigment. The low dispersion of the data showed uniformity in the three chromaticity coordinates L*, a*, b* throughout the storage period for both types of yogurt. Values of ∆E ≥ 5.0 were not obtained at any time during storage, indicating high stability of the pigment.

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The aim of this work was to study the changes induced by BG in the behaviour of wheat starch, and observe the influence of these variations on the quality of a basic white bread. The effect of four BG addition levels in the wheat flour functional characteristics (WAI, WSI, and pasting properties) and bread quality (physical parameters, crumb grain structure, moisture and hardness) was investigated. The highest levels of BG (1% and 2%) decreased the peak viscosity, and increased the stability and setback of the flour. This was due to a lower gelatinization of the starch granules, caused by a competition for water between the hydrocolloid and starch. These changes influenced the bread quality. The loaves added with 1% and 2% of BG presented smaller alveoli: this resulted in more compact, hard and less airy crumbs. Nevertheless, the moisture of the samples at 1% and 2% of added gum was higher than the control bread. However, the incorporation of BG at 0.5% did not affect the pasting parameters and bread quality, but increased moisture of crumb, so this concentration would be most recommended for baking, since higher humidity could favour the shelf- life of the product.

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O objetivo do trabalho foi caracterizar a morfologia do fruto e da semente de três espécies florestais nativas do Brasil, Solanum granuloso-leprosum Dunal, S. lycocarpum A.St.-Hil. e S. pseudoquina A.St.-Hil., recomendadas para plantações destinadas à recuperação de áreas degradadas. Os frutos são indeiscentes, carnosos, do tipo baga, globosos, polispérmicos e constituídos por dois ou mais lóculos. As sementes são estenospérmicas, campilótropas, elipsóides, comprimidas, apresentando seção longitudinal largo-ovalada ou achatado-ovalada e seção transversal elíptica. Hilo mediano-marginal localizado em uma depressão e micrópila arredondada. Sementes albuminosas, com endosperma abundante, periférico, carnoso-firme, semitransparente e de coloração esbranquiçada. Embrião axial, linear, contínuo e curvado. Em Solanum lycocarpum e S. pseudoquina o embrião é circinado e em S. granuloso-leprosum é espiralado.

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Foi objetivo deste trabalho obter informações básicas sobre a germinação de sementes de três espécies do gênero Solanum: S. granuloso-leprosum (gravitinga), S. lycocarpum (lobeira) e S.pseudoquina (quina-de-são paulo). Dependendo da espécie, foram testados diferentes lotes, bem como sementes de diferentes densidades e colorações. Os testes de germinação foram conduzidos a 25ºC e a 20-30ºC, com fotoperíodo de oito horas sob luz branca, sobre papel de filtro. Foram avaliados a porcentagem final e o índice de velocidade de germinação das sementes e determinados os períodos de duração do teste, adotando diferentes critérios de germinação. Os resultados mostraram que as sementes de gravitinga de baixa densidade devem ser descartadas; as sementes de gravitinga de coloração amarela e as de quina-de-são paulo de coloração verde são de maior qualidade fisiológica; houve diferença na germinação das sementes de lobeira e de quina-de-são paulo extraídas de diferentes lotes. A alternância da temperatura e luz beneficiou a germinação das sementes das três espécies. O teste padrão de germinação, teve a duração de 60 dias para as sementes de gravitinga (primeira contagem com 37 dias), de 62 dias para as de quina-de-são paulo (primeira contagem com 33 dias) e de 88 dias para as de lobeira (primeira contagem com 39 dias). Quando o critério botânico para germinação foi adotado (emissão da raiz primária) houve redução no período de duração de germinação em 30 dias para as sementes de gravitinga e de quina-de-são paulo e de 58 dias para as sementes de lobeira.