4 resultados para Agricultural implements.

em Instituto Politécnico do Porto, Portugal


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Desde tempos remotos que homens faziam a vigilância de bens e mercadorias e mais recentemente também de pessoas com o intuito de dissuadir roubos, atos de vandalismo e de violência. Nos últimos anos, com a evolução das novas tecnologias verificou-se a sua adoção para auxílio da vigilância. Os atos de terrorismo que têm acontecido um pouco por todo o mundo trouxeram um clima de insegurança à população mundial. Este fenómeno, juntamente com o elevado número de roubos e atos de violência levou à expansão de utilização dos meios de videovigilância de forma a dissuadir estes tipos de crime podendo mesmo, nalguns casos servir como prova para punir os autores dos mesmos. Em Portugal tem-se verificado uma escalada de crimes nas zonas mais rurais não só de bens como as alfaias agrícolas mas também de frutos e mesmo de animais. Estes crimes predominam em locais rurais, relativamente distantes das povoações e em locais onde não existem (ou são praticamente inexistentes) infraestruturas necessárias para implementar meios de videovigilância como a falta de rede elétrica e internet o que torna quase inviável a existência de sistemas de videovigilância nesses locais. Dotar esses locais das infra estruturas necessárias poderia tornar-se demasiado dispendioso e os vigilantes humanos poderiam correr riscos no meio dos montes ou noutros locais remotos para além dos seus elevados custos. Para além do problema dos roubos, existe um outro flagelo relacionado com os incêndios na floresta portuguesa, que todos os anos é dizimada pelo fogo devido a incêndios que surgem na sua maioria causados pelo homem sendo uma parte significativa os de origem criminosa. Para dar resposta a estes problemas e no sentido de vigiar e dissuadir estes tipos de crimes, iniciamos um estudo que pretende propor um protótipo de um sistema de videovigilância para locais remotos (SVR - Sistema de Videovigilância Remota) de baixo custo de forma a diminuir o número de crimes e assim minimizar os prejuízos económico e sociais causados pelos mesmos. Pretendemos estudar o problema e analisar tecnologias com potencial para propor uma solução que possa auxiliar a vigilância nesse tipo de locais com o pressuposto de poder vir a contribuir para a diminuição deste tipo de crimes devido ao seu efeito dissuasor pelo facto de se poder divulgar que estes locais já têm uma solução de vigilância oculta. A solução proposta contempla um sistema de videovigilância com uma camara construída com base num Raspberry Pi onde o vídeo é transmitido em streaming via Web através de comunicações móveis. A alimentação do sistema nestes espaços sem energia elétrica é feita através de um painel fotovoltaico. É proporcionado ao utilizador uma interface para visualizar o vídeo transmitido e um mecanismo de notificações por email. É ainda possível a visualização de imagens gravadas num cartão de memória relativas a ocorrências de deteção de movimentos. Foram realizados inúmeros testes ao protótipo SVR sendo os resultados obtidos aqui descritos.

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Polyaromatic hydrocarbon (PAH) sorption to soil is a key process deciding the transport and fate of PAH, and potential toxic impacts in the soil and groundwater ecosystems, for example in connection with atmospheric PAH deposition on soils. There are numerous studies on PAH sorption in relatively low organic porous media such as urban soils and groundwater sediments, but less attention has been given to cultivated soils. In this study, the phenanthrene partition coefficient, KD (liter per kilogram), was measured on 143 cultivated Danish soils (115 topsoils, 0–0.25-m soil depth and 28 subsoils, 0.25–1-m depth) by the single-point adsorption method. The organic carbon partition coefficient, KOC (liter per kilogram) for topsoils was found generally to fall between the KOC values estimated by the two most frequently used models for PAH partitioning, the Abdul et al. (Hazardous Waste & Hazardous Materials 4(3):211– 222, 1987) model and Karickhoff et al. (Water Research 13:241–248, 1979) model. A less-recognized model by Karickhoff (Chemosphere 10:833–846, 1981), yielding a KOC of 14,918 Lkg−1, closely corresponded to the average measured KOC value for the topsoils, and this model is therefore recommended for prediction of phenanthrene mobility in cultivated topsoils. For lower subsoils (0.25–1-m depth), the KOC values were closer to and mostly below the estimate by the Abdul et al. (Hazardous Waste & Hazardous Materials 4(3):211–222, 1987) model. This implies a different organic matter composition and higher PAH sorption strength in cultivated topsoils, likely due to management effects including more rapid carbon turnover. Finally, we applied the recent Dexter et al. (Geoderma 144:620–627, 2008) theorem, and calculated the complexed organic carbon and non-complexed organic carbon fractions (COC and NCOC, grams per gram). Multiple regression analyses showed that the NCOC-based phenanthrene partition coefficient (KNCOC) could be markedly higher than the COCbased partition coefficient (KCOC) for soils with a clay/OC ratio <10. This possibly higher PAH sorption affinity to the NCOC fraction needs further investigations to develop more realistic and accurate models for PAH mobility and effects in the environment, also with regard to colloid-facilitated PAH transport.

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In the current context of serious climate changes, where the increase of the frequency of some extreme events occurrence can enhance the rate of periods prone to high intensity forest fires, the National Forest Authority often implements, in several Portuguese forest areas, a regular set of measures in order to control the amount of fuel mass availability (PNDFCI, 2008). In the present work we’ll present a preliminary analysis concerning the assessment of the consequences given by the implementation of prescribed fire measures to control the amount of fuel mass in soil recovery, in particular in terms of its water retention capacity, its organic matter content, pH and content of iron. This work is included in a larger study (Meira-Castro, 2009(a); Meira-Castro, 2009(b)). According to the established praxis on the data collection, embodied in multidimensional matrices of n columns (variables in analysis) by p lines (sampled areas at different depths), and also considering the quantitative data nature present in this study, we’ve chosen a methodological approach that considers the multivariate statistical analysis, in particular, the Principal Component Analysis (PCA ) (Góis, 2004). The experiments were carried out in a soil cover over a natural site of Andaluzitic schist, in Gramelas, Caminha, NW Portugal, who was able to maintain itself intact from prescribed burnings from four years and was submit to prescribed fire in March 2008. The soils samples were collected from five different plots at six different time periods. The methodological option that was adopted have allowed us to identify the most relevant relational structures inside the n variables, the p samples and in two sets at the same time (Garcia-Pereira, 1990). Consequently, and in addition to the traditional outputs produced from the PCA, we have analyzed the influence of both sampling depths and geomorphological environments in the behavior of all variables involved.

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The excessive use of pesticides and fertilisers in agriculture has generated a decrease in groundwater and surface water quality in many regions of the EU, constituting a hazard for human health and the environment. Besides, on-site sewage disposal is an important source of groundwater contamination in urban and peri-urban areas. The assessment of groundwater vulnerability to contamination is an important tool to fulfil the demands of EU Directives. The purpose of this study is to assess the groundwater vulnerability to contamination related mainly to agricultural activities in a peri-urban area (Vila do Conde, NW Portugal). The hydrogeological framework is characterised mainly by fissured granitic basement and sedimentary cover. Water samples were collected and analysed for temperature, pH, electrical conductivity, chloride, phosphate, nitrate and nitrite. An evaluation of groundwater vulnerability to contamination was applied (GOD-S, Pesticide DRASTIC-Fm, SINTACS and SI) and the potential nitrate contamination risk was assessed, both on a hydrogeological GIS-based mapping. A principal component analysis was performed to characterised patterns of relationship among groundwater contamination, vulnerability, and the hydrogeological setting assessed. Levels of nitrate above legislation limits were detected in 75 % of the samples analysed. Alluvia units showed the highest nitrate concentrations and also the highest vulnerability and risk. Nitrate contamination is a serious problem affecting groundwater, particularly shallow aquifers, especially due to agriculture activities, livestock and cesspools. GIS-based cartography provided an accurate way to improve knowledge on water circulation models and global functioning of local aquifer systems. Finally, this study highlights the adequacy of an integrated approach, combining hydrogeochemical data, vulnerability assessments and multivariate analysis, to understand groundwater processes in peri-urban areas.