526 resultados para Saccharum officinarum


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Botanically, green composites belong to an economically important seed plant family that includes maize, wheat, rice, and sorghum known as Saccharum offi cinarum. There are so many natural fibers available in the environment such as rice husk, hemp fibers, flax fibers, bamboo fibers, coconut fiber, coconut coir, grawia optiva and many others also. Life Cycle Assessment (LCA) is a process to estimate the environmental feature and potential impacts related to a product, by organizing a directory of pertinent inputs and outputs of a product system, assessing the potential environmental impacts related with the said inputs and outputs, explaining the results of the inventory analysis and impact evaluation phases in connection to the objectives of the study. Particularly Bagasse, an agricultural residue not only becomes a problem from the environmental point of view, but also affects the profitability of the sugarcane industries. This chapter discusses the properties, processing methods and various other aspects including economic and environmental aspects related to green composites.

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Although it is well known that nutrient imbalance in shoot tissues may impair plant performance, the interactive effect between foliar phosphorus (P) application and varying P availability in the rooting medium on the nutritional status of sugarcane has not been well studied. To fill this research gap, four sugarcane varieties (IAC91-1099, IACSP94-2101, IACSP94-2094 and IACSP95-5000) were evaluated using a combination of two concentrations of P in nutrient solution (P-deficient, PD = 0.02 mmol L^(−1) and P-sufficient, PS = 0.5 mmol L^(−1)) and foliar P application (none and 0.16 mol L^(−1)). The spray was applied until drip point three times during the experiment with 15 days intervals, after which the plants were harvested to quantify growth and shoot concentration of nitrogen (N), P, magnesium (Mg), sulphur (S) and manganese (Mn). The responses of sugarcane plants to foliar P spray at different levels of P supply in the rooting medium was not genotype-dependent. It was demonstrated for the averaged values across varieties, that foliar P application enhanced sugarcane performance under low P, as revealed by improvements of leaf area and dry matter production of shoot and root of PD plants. Under P limitation we also observed diminished shoot concentration of N, P, Mg, S and increased concentration of Mn. However, foliar P spray increased the concentrations of N, P, S and reduced shoot Mn. Furthermore, shoot P:N, P:Mg, P:S, P:Mn and Mg:Mn concentration ratios exhibited a positive relationship with shoot dry matter production. In conclusion, low P supply in the rooting medium impairs nutrient balance in shoot tissues of sugarcane at early growth; however, this effect was ameliorated by foliar P application which merits further study under field conditions.

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v. 46, n. 2, p. 140-148, apr./jun. 2016.

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El objetivo del experimento fue encontrar qué capa del suelo (salinidad) se correlaciona mejor con la producción de azúcar recuperable de la caña. Se realizó en el campo Zapote, de la empresa Tumán, localizada en la costa norte, departamento de Lambayeque, Perú. Este campo (salinidad 2-8 dSm-1) fue sembrado con caña de azúcar (Saccharum spp.) cultivar H32-8560, en 105 parcelas (cosechadas a cinco edades diferentes) que fueron fertilizadas con cinco dosis de N, y un testigo sin fertilizar. Se realizaron correlaciones lineales entre el rendimiento de azúcar y la salinidad (conductividad eléctrica del extracto de saturación : CEe) de diferentes capas del suelo (0-30 cm, 30-60, 60-90, promedio de 0-60, promedio de 0-90, capa más salina de 0-60, capa menos salina de 0-60 cm). También se correlacionó el rendimiento de azúcar con diez promedios aritméticos y ponderados de la salinidad obtenida antes de la siembra y después de la cosecha. Se encontró mayor correlación cuando se usaron los datos de salinidad de antes de la siembra, que cuando se usaron datos de después de la cosecha.Las más altas correlaciones con el rendimiento de azúcar (salinidad antes de la siembra) correspondieron a la salinidad de la capa promedio 0-60 cm (R: 0,27- 0,84 [(p<0,01]); la capa menos salina de 0-60 cm (R: 0,47 [p<0,01]-0,82 [p<0,01]); la capa más salina de 0-60 cm, (R: 0,04-0,81 [p<0,01]). Conclusión: es suficiente muestrear y analizar los suelos sólo hasta la profundidad de 60 cm antes de la siembra.

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La caña de azúcar es un importante movilizador de la economía del NO argentino. Su cultivo presenta elevados requerimientos hídricos con potenciales impactos ambientales. La crisis energética incrementa la demanda de biocombustibles derivados del azúcar, con posibles aumentos del área cultivada y de sus impactos. Los antecedentes sobre el uso del agua y de la radiación en caña de azúcar involucran el efecto de unos pocos factores y son localmente escasos. El objetivo de esta tesis fue estudiar los controles de la transpiración y de la eficiencia en el uso del agua (EUA) y de la radiación (EUR) en los agroecosistemas de caña de azúcar del NO argentino, e inferir sobre la sustentabilidad ecológica y productiva. Para ello, ambas eficiencias se calcularon como el cociente entre el rendimiento de caña y la cantidad de recursos (agua o radiación) insumidos. El consumo de agua se estimó con el modelo propuesto por la FAO complementado con información satelital (índice verde normalizado, IVN). La radiación absorbida se estimó a partir de su relación con el IVN. Ambas EUA y EUR presentaron una variabilidad que abarcó todo el rango citado en la bibliografía internacional. El genotipo y la edad del cañaveral fueron los factores con mayor influencia sobre dichas eficiencias. Los requerimientos hídricos estimados superaron hasta en un 100 por ciento a los de los de los ecosistemas prístinos (yungas)y a la precipitación, y representaron una pérdida de energía superficial de hasta 72,6 W m-2 (74,3 por ciento de la radiación de onda corta incidente). Los potenciales impactos identificados dependen de las estrategias de manejo, e incluyen: desequilibrios de la red trófica asociados al flujo de energía, alteraciones de los ríos (reducción del caudal, inundaciones luego de eventos lluviosos y contaminación), modificaciones cuali/cuantitativas de las napas, enfriamiento superficial, exportación regional de vapor de agua, entre otros. Los resultados de esta tesis permiten guiar el manejo del cultivo, minimizando la ocurrencia de dichos impactos.

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Sugarcane (Saccharum spp.) is a plant from Poaceae family that has an impressive ability to accumulate sucrose in the stalk, making it a significant component of the economy of many countries. About 100 countries produce sugarcane in an area of 22 million hectares worldwide. For this reason, many studies have been done using sugarcane as a plant model in order to improve production. A change in gravity may be one kind of abiotic stress, since it generates rapid responses after stimulation. In this work we decided to investigate the possible morphophysiological, biochemical and molecular changes resulting from microgravity. Here, we present the contributions of an experiment where sugarcane plants were submitted to microgravity flight using a vehicle VSB-30, a sounding rocket developed by Aeronautics and Space Institute teams, in cooperation with the German Space Agency. Sugarcane plants with 10 days older were submitted to a period of six minutes of microgravity using the VSB-30 rocket. The morphophysiological analyses of roots and leaves showed that plants submitted to the flight showed changes in the conduction tissues, irregular pattern of arrangement of vascular bundles and thickening of the cell walls, among other anatomical changes that indicate that the morphology of the plants was substantially influenced by gravitational stimulation, besides the accumulation of hydrogen peroxide, an important signaling molecule in stress conditions. We carried out RNA extraction and sequencing using Illumina platform. Plants subjected to microgravity also showed changes in enzyme activity. It was observed an increased in superoxide dismutase activity in leaves and a decreased in its activity in roots as well as for ascorbate peroxidase activity. Thus, it was concluded that the changes in gravity were perceived by plants, and that microgravity environment triggered changes associated with a reactive oxygen specie signaling process. This work has helped the understanding of how the gravity affects the structural organization of the plants, by comparing the anatomy of plants subjected to microgravity and plants grown in 1g gravity

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Thiamethoxam is a systemic insecticide from the neonicotinoid group, nitroguanidin family which affects the nicotinic receptor acetyl choline in the insect membrane, wounding the nervous system and causing the death of the insect. It was used with success in the control of initial pests of several crops. It was considered that thiamethoxam has a bioactivator effect, because in the absence of insects promoted increase in vigor, development and productivity of crops. This work was carried out to verify if thiamethoxam causes histological changes in sugarcane roots. In this work, it was used optical microscopy, images arrest, tissue biometrics and statistical analysis, in young roots of sugarcane RB 83 5486 after the treatments with different thiamethoxam concentrations. It was determined changes in histological structure of tissues 7, 14, 21 and 28 days after the treatments, establishing its effects on root plant anatomy. It was verified that thiamethoxam increased root cortex width, increasing the vascular cylinder and the metaxylem vessel elements number in the vascular tissue until 21 days after application.

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No Submédio do Vale do São Francisco, o sistema de cultivo da cana-de-açúcar (Saccharum spp.) é baseado no fornecimento da água durante todo o seu ciclo. Nesta região, a irrigação na cana-de-açúcar tem sido feita por sulcos, aspersão (pivô central e linear) e por gotejamento subsuperficial, os quais proporcionam índices variáveis de eficiência no uso de água pela cultura. Dentre eles, o gotejamento subsuperficial é o mais eficiente, uma vez que disponibiliza água próximo ao sistema radicular e facilita a automação do sistema para irrigação e fertirrigação durante o ciclo da cultura.

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The genus Trichogramma Westwood (Hymenoptera: Trichogrammatidae) includes insect egg parasitoids that are widely used throughout the world as control agents of pest insects. The aim of this study was to identify the species of Trichogramma naturally associated with the eggs of lepidopteran pests of the following agricultural and horticultural crops: collards, Brassica oleracea L. (Brassicales: Brassicaceae); papaya, Carica papaya L. (Capparales: Caricaceae); tomato, Lycopersicon esculentum Mill. (Solanales: Solanaceae); cassava, Manihot esculenta Crantz (Malpighiales: Euphorbiaceae); banana, Musa sp. L. (Zingiberales: Musaceae); passion fruit, Passiflora sp. Degener (Malpighiales: Passifloraceae); sugarcane, Saccharum sp. L. (Poales: Poaceae); and corn (maize), Zea mays L. (Poales: Poaceae); and an invasive species (Sodom?s apple milkweed, Calotropis procera Aiton; Gentianales: Apocynaceae) in the semiarid region of Minas Gerais, Brazil. We report natural parasitism by Trichogramma in eggs of Agraulis vanillae vanillae (L.) (Lepidoptera: Nymphalidae), Antichloris eriphia F. (Lepidoptera: Arctiidae), Danaus sp. (L.) (Lepidoptera: Nymphalidae), Diatraea saccharalis F. (Lepidoptera: Crambidae), Erinnyis ello L. (Lepidopera: Sphingidae), and Protambulyx strigilis L. (Lepidopera: Sphingidae). In total, 2,242 specimens of Trichogramma were obtained, belonging to the species T. pretiosum Riley, T. manicobai Brun, Moraes & Soares, T. marandobai Brun, Moraes & Soares, and T. galloi Zucchi. These species of Trichogramma may be candidates for biological control programs of lepidopteran pests in the semiarid region of Minas Gerais and in other semiarid regions.

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O sorgo sacarino [Sorghum bicolor (L.) Moench] se destaca como cultura complementar à cana-de-açúcar Saccharum spp. na produção de etanol, uma vez que este possui colmos suculentos com presença de açúcares diretamente fermentescíveis. Em decorrência deste fato, existe a necessidade de se analisar as propriedades do sorgo, a fim de atender às demandas da agroindústria. No presente trabalho, buscou-se desenvolver e estudar as curvas de maturação de sete cultivares de sorgo sacarino em dez épocas de colheita. Os resultados mostram que houve diferença significativa para cultivares e épocas de colheita para todos os parâmetros (p≤0,01). Quanto aos teores de açúcares, as cultivares BRS508, XBWS80147 e CMSXS629 apresentaram as maiores médias para as variáveis açúcares redutores totais (ART) e açúcares totais recuperáveis (ATR). Em relação à produção de etanol por tonelada de biomassa, as cultivares BRS 508 e a CMSXS629 apresentaram os melhores resultados.

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O presente trabalho teve como objetivo determinar a produtividade agrícola e a qualidade tecnológica do caldo das variedades da cana-de-açúcar, submetidas a diferentes regimes hídricos. O delineamento experimental foi em blocos ao acaso com três repetições em parcelas subdivididas, com três variedades RB855156, RB835486 e RB867515 (parcela), e sete regimes hídricos correspondendo a 0, 7, 17, 36, 46, 75 e 100% da ETc (subparcela). Foram avaliadas as características de produção: comprimento do entrenó (CE), peso do colmo (PC), número de perfilhos por hectare e produtividade; e tecnológicos do caldo: ºBrix do caldo, Pol do caldo (Teor de sacarose), pureza (PZA), AR (teor de açúcares redutores do caldo), ARC (açúcares redutores da cana), fibras, Pol da cana (PCC), açúcares totais recuperáveis (ATR) e o valor da megagrama da cana (VMgC). O máximo de produtividade da cana-de-açúcar foi de 182,31 Mg ha-1 registrado com irrigação equivalente a 69,01% da ETc; A cana-de-açúcar cultivada com irrigação equivalente a 75% da ETc não proporcionou diferença significativa para a qualidade industrial das variedades testadas em relação ao cultivo em sequeiro (0% da ETc). Não houve diferença significativa para os valores do teor de açúcares redutores (AR), açúcares redutores da cana (ARC) e a pureza do caldo (PZA) entre as variedades. ABSTRACT: This work aimed to determine the agricultural productivity and the technological quality of the juice of the sugarcane varieties, which were submitted to different hydrological regimes. The experimental design was made in randomized blocks with three repetitions in subdivided plots, with three varieties: RB855156, RB835486 and RB867515 (plot), and seven hydrological regimes corresponding to 0, 7, 17, 36, 46, 75 and 100% of ETc (subplot). The following production characteristics were evaluated: length of internode (LI), stem weight (SW), number of tillers per hectare and productivity; and technological components of the juice: ºBrix of the juice, Pol of the juice (sucrose levels), purity (PTY), RS (amount of reducing sugars of the juice), RSC (reducing sugars of the sugarcane plant), fibers, Pol of the sugarcane plant (CPP), total retrievable sugars (TRS) and the value of the sugarcane megagram (Mg). The maximum productivity of sugarcane was 182.31 Mg ha-1, which was registered with irrigation equivalent to 69.01% of ETc. The sugarcane cultivated with irrigation equivalent to 75% of ETc did not provide significant difference for the industrial quality of varieties tested in relation to the non-irrigated cultivation (0% of ETc). There was no significant difference for the values of reducing sugars (RS), the reducing sugars of the sugarcane plant (RSC) and the juice purity (PTY) among varieties.

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A agricultura é responsável por boa parte das emissões de gases de efeito estufa (GEEs), como o dióxido de carbono (CO2), o metano (CH4) e o óxido nitroso (N2O). Esses gases destacam-se pela capacidade de absorver energia, estabilidade na atmosfera e alta capacidade de reagir com a camada de ozônio, sendo alvo de pesquisas recentes. Em cultivos de cana-de-açúcar esses estudos têm sido mais frequentes, principalmente após a obrigatoriedade da colheita de cama sem queima, tratando-se principalmente do efeito dessa prática nas emissões desses gases para a atmosfera. Nesse sentido, objetivou-se com esta revisão, reunir informações sobre as fontes que contribuem para as emissões dos gases de efeito estufa pela agricultura, especialmente nos cultivos de cana-de-açúcar.