3 resultados para Production system

em Repositório Científico da Universidade de Évora - Portugal


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Greenhouse production is a very important activity in the West region of Portugal, with an area of approximately 800 ha where the regular production consists in two crops per year, one in winter-spring and the other in summer-autumn. Many growers are now prepared to better exploit market opportunities, since they know that the big export window opportunity is from June to September, when the production is difficult in other regions of south due to high temperatures. Grower’s use new and more productive varieties, either in soil or hydroponic systems, mostly in unheated greenhouses, naturally ventilated, and equipped with modern fertigation systems. Greenhouse production causes some environmental impacts due to the high use of inputs. Several improvements in technologies and crop practices may contribute to increase the use efficiency of resources, decreasing the negative environmental impacts. Greenhouse vegetable production in Northern EU countries is based on the supply of heating and differs significantly from the production system in the Southern EU countries. In the Northern countries, direct energy inputs, mostly for heating, are predominant while in the South the indirect energy input is also important, mainly associated with fertilizers, plastic cover materials and other auxiliary materials. The main objective of this work was to characterise the greenhouse production systems in the West region of Portugal, in order to evaluate the energetic consumptions (direct and indirect), the GHH emissions, the production costs and the farmer’s income. With this work the mostly important inputs were identified, allowing proposing alternative measures to improve efficiency and sustainability. All the data was obtained by surveys performed directly with growers, previously selected to be representative of the crop practices and greenhouse type of the region. However, more research should be performed in order to develop and to test technologies capable to improve resources use efficiency in greenhouse production.

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O café é originário das florestas tropicais da Etiópia e do Sudão, crescendo sobre uma canópia diversa. Devido ao facto de haver uma tendência para o desaparecimento do sombreamento tradicional e consequente perda de biodiversidade, os sistemas de certificação oferecem a oportunidade de aproximar objectivos económicos, sociais e ambientais de modo a beneficiar os agricultores. Este estudo tem como objectivo dar a conhecer a todos os intervenientes da cadeia de custódia, principalmente aos consumidores, qual a certificação que podem optar por se a sua principal preocupação quando tomam um café for a natureza. Caracterizou-se o valor ecológico do sistema de produção sustentável e do sistema convencional. Analisaram-se e comparam-se os diferentes critérios ambientais dos sistemas de certificação, através da construção de uma matriz. Os resultados sugerem que a certificação que melhor responde ao pretendido é a Rainforest Alliance, no entanto, a dupla ou tripla certificação parecem ser também boas opções. ABSTRACT; Coffee originates in Ethiopia and Sudan’s ram forests, growing above a diverse canephora. Due to the fact that there is a tendency to the vanishing of traditional shadowing and consequent loss of biodiversity, certification schemes offer the opportunity of bringing together economical, social and environmental goals allowing benefits to farmers. This study aims to bring cognizance to every intervenient of the custody chain, mainly to consumers, which certification scheme to choose if their major concern when drinking a coffee is nature. The ecological value of sustainable production system has been characterized as well as the conventional system. Different environmental criteria of certification schemes have been analysed and compared trough the construction of an evaluation template. Results suggest that the certification that better suits the desired goal is the Rainforest Alliance, but double or triple certification also appear as options that might be followed.

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This chapter aims to develop a new method for the economical evaluation of Hybrid Systems for electricity production. The different types of renewable sources are specifically evaluated in the economical performance of the overall equipment. The presented methodology was applied to evaluate the design of a photovoltaic-wind-diesel hybrid system to produce electricity for a community in the neighbourhood of Luanda, Angola. Once the hybrid generator is selected, it is proposed to provide the system with a supervisory control strategy to maximize its operating efficiency.