995 resultados para Arundo donax L.
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A maioria dos países está demasiado dependente dos combustíveis fósseis para satisfazer as suas necessidades energéticas, em todos os seus principais sectores de actividade. A produção de culturas energéticas tem vindo a ser equacionada como uma alternativa muito promissora para substituir parcialmente esses recursos fósseis na produção de energia. De entre as diversas espécies, preferencialmente não alimentares, que podem ser cultivadas com o intuito de utilizar a sua biomassa para produzir energia, o Arundo donax apresenta-se como uma das mais promissoras, devido à sua elevada produtividade, resistência a baixos regimes hídricos, característicos dos países mediterrânicos nos meses de Verão, e a pragas. Para alm do potencial de utilização como cultura energética, o Arundo donax também apresenta capacidade para remover metais pesados do substrato onde se encontra estabelecido, podendo ser utilizado para remover contaminantes do solo e das águas residuais. A utilização de águas residuais para irrigação de culturas energéticas, permite, não só, contrabalançar a escassez ou a sazonalidade da precipitação, mas também reduzir a necessidade de utilização de fertilizantes, combinando assim vantagens ambientais e económicas. Neste trabalho, foi avaliada a capacidade do Arundo donax na fitoremediação de águas residuais contendo zinco ou cobre, nomeadamente os efeitos na sua produtividade e qualidade da biomassa, bem como a capacidade de extrair aqueles metais da água residual afluente. Este ensaio foi realizado em vasos, em condições controladas, com diferentes regimes hídricos e com a duração de dois ciclos vegetativos. Os resultados obtidos permitem verificar que as concentrações de zinco e cobre testadas não afectam grandemente a produtividade nem a qualidade da biomassa produzida. Verificou-se uma maior acumulação de zinco nos rizomas e nas folhas e uma maior acumulação de cobre nas folhas e nas raízes. O sistema solo-planta consegue reter acima de 90% do zinco/cobre afluente, resultando na depuração da água residual. As percentagens de remoção pela planta podem ser superiores a 8% e 3% para zinco e para cobre, respectivamente. A rega de Arundo com águas residuais contaminadas com zinco ou cobre apresenta vantagens do ponto de vista ambiental, nomeadamente em termos de sequestro de carbono e na deplecção de recursos hídricos e minerais. Alm disso a biomassa pode ser valorizada economicamente para produção de energia ou biomateriais.
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A torrefação é vista como um pré-tratamento térmico que introduz modificações na biomassa, ou em resíduos de biomassa, que facilitam o seu processamento mecânico e aumentam a sua estabilidade e densidade energética, potenciando, assim, uma valorização posterior. Neste trabalho, estudou-se o impacte da torrefação na gama de 200 a 350 ºC e tempos de residência entre 15 e 90 min nas propriedades da biomassa proveniente da herbácea Arundo donax L. e das palmeiras Phoenix canariensis, espécies muito abundantes em vários locais do país, tendo em vista a sua posterior valorização. A proliferação descontrolada do arundo e a praga do escaravelho das palmeiras leva a que estas espécies sejam alvo de frequentes operações de remoção. A sua estrutura altamente fibrosa dificulta e encarece estas operações, que acarretam custos significativos para as câmaras municipais, e não se conhecem medidas para a sua valorização material ou energética. A torrefação foi também aplicada a peletes de resíduos de pinheiro, na gama de 200 a 250 ºC e com tempos de residência de 30 e 60 min, para averiguar o seu impacte na qualidade desse biocombustível sólido. A torrefação permitiu obter peletes mais resistentes à biodegradação, devido à redução do teor de humidade para valores residuais, sem aumentar significativamente o seu teor de cinzas e sem afetar de forma relevante a sua durabilidade, o teor de finos ou a densidade aparente. Com a biomassa de arundo e de palmeira obtiveram-se produtos com maior poder calorífico e com melhor moabilidade. No entanto, a acentuada diminuição dos rendimentos mássico e energético e o elevado teor de cinzas constrangem a sua utilização como biocombustíveis sólidos. Desta forma, optou-se por testar a sua valorização como adsorventes do corante azul de metileno, bastante comum, por exemplo, na indústria têxtil, nos curtumes ou nas industrias do papel. Os estudos de adsorção revelaram maior afinidade pelo corante por parte da biomassa sujeita a torrefação mais ligeira, com eficiências de remoção muito próximas das do carvão ativado comercial, para concentrações iniciais de corante até 200 mg/L. As isotérmicas foram melhor ajustadas ao modelo de Langmuir, que revelou capacidades máximas de adsorção na monocamada entre 59,92 e 92,68 mg/g, tendo as curvas de cinética sido melhor descritas pelo modelo de pseudo-segunda ordem. A adsorção é bastante rápida nos primeiros minutos, essencialmente devido a atrações eletrostáticas, sendo inicialmente controlada pela difusão no filme e depois pela difusão nos poros. Os adsorventes revelaram seletividade por um corante catiónico e permitiram dessorção de corante, ao contrário do verificado com o carvão ativado comercial, o que é um aspeto da maior relevância tendo em mente a regeneração do adsorvente e a recuperação do corante.
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Artículo en Revista Española sobre la Caña común (Arundo donax L.) como cultivo energético para biocombustibles sólidos.
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Dissertação de Mestrado, Energias Renováveis e Gestão de Energia, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016
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Arundo donax L., commonly known as giant reed or arundo, is a perennial rhizomatous grass that has been studied since the decade of 1980 for bioenergy. In the Mediterranean region -characterised by dry and hot summers- arundo is usually grown with the support of irrigation. However, there is evidence that this plant species can tolerate dry-farming conditions once the crop is fully established. In this work the variation observed in plant growth of a 5-year-old arundo crop when the management changed from irrigated to dry-farming, is assessed. The hypothesis underlying this work was that punctual variations of soil properties might be responsible for the differences observed in plant growth
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El present estudi proposa millores en les tècniques d’eradicació de lArundo donax utilitzades actualment. Per tal de realitzar-lo s’ha fet un extens recull bibliogràfic i d’experiències en leradicació de la canya avaluant els impactes al medi que exerceix cada una d’elles i estudiant-ne la viabilitat o no. Es tracta d’una petita experiència que serveix per sumar esforços en el complicat repte de leradicació de la canya als llocs on ha estat introduïda.
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Dissertação de Mestrado, Biotecnologia em Controlo Biolgico, 18 de Dezembro de 2013, Universidade dos Açores.
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Growing energy crops on marginal land has been promoted as a way of ensuring that biomass production involves an acceptable and sustainable use of land. Saline and saline-prone agricultural lands represent an opportunity for growing energy crops avoiding the displacement of food production and contributing to restoration of degraded land. Giant reed (Arundo donax L.) is a perennial grass that has been proposed as a promising energy crop for lignocellulosic biomass production while its tolerance to salinity has been proved. In this work, the identification of surplus saline lands that could be irrigated with saline waters for growing tolerant-energy crops (giant reed) in the mainland of Spain and the assessment of the agronomically attainable yield in these limiting growing conditions were undertaken. To this purpose, a GIS analysis was conducted using geodatabases related to saline areas, agro-climatic conditions, irrigation water requirements, agricultural land availability, restrictions regarding the range of electrical conductivity tolerated by the crop, competition with agro-food crops and irrigation water provisions. According to the approach developed, the irrigated and saline agricultural area available and suitable for biomass production from giant reed amounted up to 34 412 ha. The agronomically attainable yield in these limiting conditions was estimated at 12.7 – 22.2 t dm ha−1 yr−1 and the potential production of lignocellulosic biomass, 597 338 t dm yr−1. The methodology followed in this study can be applied to other target regions; it allows the identification of this type of marginal lands, where salinity-tolerant plant species could be grown for bioenergy purposes, avoiding competition with agro-food crops, and where soil restoration measurements should be undertaken.
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The main aim of this thesis is to evaluate the economic and socio-economic viability of energy crops as raw material for bioenergy schemes at the local level. The case examined is Greece, a southern Mediterranean country. Based on the current state, on foreseen trends and on the information presented in the literature review (conducted at the beginning of the study), the main goal was defined as follows: To examine the evidence supporting a strong role for dedicated energy crops local bioenergy developments in Greece, a sector that is forecasted to be increasingly important in the short to medium term.' Two perennial energy crops, cardoon (Cynara cardunculus L.) and giant reed (Arundo donax L.) were evaluated. The thesis analysed their possible introduction in the agricultural system of Rhodope, northern Greece, as alternative land use, through comparative financial appraisal with the main conventional crops. Based on the output of this comparative analysis, the breakeven for the two selected energy crops was defined along with a sensitivity analysis for the risk of the potential implementation. Following, the author performed an economic and socio-economic evaluation of a district heating system fuelled with energy crops in the selected region. Finally, the author, acknowledging that bioenergy deployment should be studied in the context of innovations proceeded in examining the different perceptions of the key groups involved, farmers and potential end users. Results indicated that biomass exploitation for energy purposes is more likely to be accepted when it is seen clearly as one strand in a national energy, environmental and agricultural policy which embraces several sources of renewable energy, and which also encourages energy efficiency and conservation.
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Es destaca la presència de tres espècies bioinvasores, tals com la gambúsia(Gambusiaaffinis), la canya (Arundodonax) i el cranc vermell americà (Procambarusclarkii). S’ha detectat que la qualitat de laigua ha disminuït en alguns paràmetres, especialment en lEstanyet del Safareig. En els tres estanyets els sòlids dissolts totalsa TSD) estan al voltant del lmit màxim recomanat per la EPA (Agència de Protecció Ambiental d’Estats Units). S’ha observat que la Cladophora, indicadora de concentracions elevades de nitrogen a laigua, és un cloròfit molt abundant. S’han identificat dos hàbitats d’interès comunitari no prioritari, segons la Directiva Hàbitats: les closes i les freixenedes termòfiles de Fraxinusangustifolia. En funció dels resultats obtinguts s’han elaborat les propostes de gestió i conservació per aquest espai.
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A multiresidue method was developed for the simultaneous determination of 31 emerging contaminants (pharmaceutical compounds, hormones, personal care products, biocides and flame retardants) in aquatic plants. Analytes were extracted by ultrasound assisted-matrix solid phase dispersion (UA-MSPD) and determined by gas chromatography-mass spectrometry after sylilation. The method was validated for different aquatic plants (Typha angustifolia, Arundo donax and Lemna minor) and a semiaquatic cultivated plant (Oryza sativa) with good recoveries at concentrations of 100 and 25 ng g-1 wet weight, ranging from 70 to 120 %, and low method detection limits (0.3 to 2.2 ng g-1 wet weight). A significant difference of the chromatographic response was observed for some compounds in neat solvent versus matrix extracts and therefore quantification was carried out using matrix-matched standards in order to overcome this matrix effect. Aquatic plants taken from rivers located at three Spanish regions were analyzed and the compounds detected were parabens, bisphenol A, benzophenone-3, cyfluthrin and cypermethrin. The levels found ranged from 6 to 25 ng g-1 wet weight except for cypermethrin that was detected at 235 ng g-1 wet weight in Oryza sativa samples.
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In recent years it has been noticed the progressive disappearance of vernacular sustainable building technologies all over the world mainly due to a strong urban rehabilitation process with modern technologies not compatible with ancient knowledge. Simultaneously new dwellings are needed all over the world and in this sense it was decided to study an ecological and cost-controlled building technology of monolithic walls that can combine the use of low carbon footprint materials, such as earth, fibres and lime using an invasive species: giant reed cane (Arundo Donax). This paper explains the development of this building technology through testing diverse prototypes.
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The aim of this thesis was to evaluate historical change of the landscape of Madeira Island and to assess spatial and temporal vegetation dynamics. In current research diverse “retrospective techniques”, such as landscape repeat photography, dendrochronology, and research of historical records were used. These, combined with vegetation relevés, aimed to gather information about landscape change, disturbance history, and vegetation successional patterns. It was found that landscape change, throughout 125 years, was higher in the last five decades manly driven by farming abandonment, building growth and exotic vegetation coverage increase. Pristine vegetation was greatly destroyed since early settlement and by the end of the nineteenth century native vegetation was highly devastated due to recurrent antropogenic disturbances. These actions also helped to block plant succession and to modify floristical assemblages, affecting as well as species richness. In places with less hemeroby, although significant growth of vegetation of lower seral stages was detected, the vegetation of most mature stages headed towards unbalance between recovery and loss, being also very vulnerable to exotic species encroachment. Recovery by native vegetation also occurred in areas formerly occupied by exotic plants and agriculture but it was almost negligible. Vegetation recovery followed the successional model currently proposed, attesting the model itself. Yet, succession was slower than espected, due to lack of favourable conditions and to recurrent disturbances. Probable tempus of each seral stage was obtained by growth rates of woody taxa estimated through dendrochronology. The exotic trees which were the dominant trees in the past (Castanea sativa and Pinus pinaster) almost vanished. Eucalyptus globulus, the current main tree of the exotic forest is being replaced by other cover types as Acacia mearnsii. The latter, along with Arundo donax, Cytisus scoparius and Pittosporum undulatum are currently the exotic species with higher invasive behaviour. However, many other exotic species have also proved to be highly pervasive and came together with the ones referred above to prevent native vegetation regeneration, to diminish biological diversity, and to block early successional phases delaying native forest recovery.
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Studies on soil organic carbon (SOC) sequestration in perennial energy crops are available for North-Central Europe, while there is insufficient information for Southern Europe. This research was conducted in the Po Valley, a Mediterranean-temperate zone characterised by low SOC levels, due to intensive management. The aim was to assess the factors influencing SOC sequestration and its distribution through depth and within soil fractions, after a 9-year old conversion from two annual systems to Miscanthus (Miscanthus × giganteus) and giant reed (Arundo donax). The 13C natural abundance was used to evaluate the amount of SOC in annual and perennial species, and determine the percentage of carbon derived from perennial crops. SOC was significantly higher under perennial species, especially in the topsoil (0-0.15 m). After 9 years, the amount of C derived from Miscanthus was 18.7 Mg ha-1, mostly stored at 0-0.15 m, whereas the amount of C derived from giant reed was 34.7 Mg ha-1, evenly distributed through layers. Physical soil fractionation was combined with 13C abundance analysis. C derived from perennial crops was mainly found in macroaggregates. Under giant reed, more newly derived-carbon was stored in microaggregates and mineral fraction than under Miscanthus. A molecular approach based on denaturing gradient gel electrophoresis (DGGE) allowed to evaluate changes on microbial community, after the introduction of perennial crops. Functional aspects were investigated by determining relevant soil enzymes (β-glucosidase, urease, alkaline phosphatase). Perennial crops positively stimulated these enzymes, especially in the topsoil. DGGE profiles revealed that community richness was higher in perennial crops; Shannon index of diversity was influenced only by depth. In conclusion, Miscanthus and giant reed represent a sustainable choice for the recovery of soils exhausted by intensive management, also in Mediterranean conditions and this is relevant mainly because this geographical area is notoriously characterised by a rapid turnover of SOC.