860 resultados para Tropical production systems


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Valuable black powder has been produced traditionally by the wheel-mill grinding process. It is a process which evolved since the 12th century until his crowning moment ca. 1850. The current system of manufacturing black powder has barely changed in 150 years. This traditional system has and inherent risk of explosion in several stages which is not avoidable. Laws and restrictions are constantly increasing. So do the transportation costs, whatever are his final use. Nowadays the consumer price could be multiplied by easily more than ten times the original production cost. Traditional factories tend to group, merge and move away from settled areas. Obviously this protects the factories from public opinion in case of an accident thus increases the final cost of the propellant. The wet production could allow plants to scatter and decrease production costs. A wet method of production is proposed and developed in this project. The components are mixed in presence of water and extracted with an organic solvent. This conditions insures there is no risk of explosion. The method uses low and cheap technology. Precise calculations are presented among thermodynamic, legal and economic factors. Although the work is based in traditional (KNO3-C-S) black powder, other oxidizers with present interest like are studied. Furthermore, traditional production systems and quality processes are also discussed. Obtener pólvora negra ha sido posible gracias a la producción por vía seca con el molino de ruedas. Es un procedimiento que ha estado en evolución desde el siglo XII hasta su cénit a mediados del siglo XIX. Las producciones actuales utilizan este sistema que apenas ha variado en 150 años. El proceso clásico implica riesgos inherentes e inevitables de explosión en varias de sus etapas. Cada día la legislación es progresivamente más restrictiva con el transporte de explosivos. Las pólvoras, sean usadas para pirotecnia, cartuchería o materiales energéticos, están sujetas a gravámenes por el transporte. Hoy día el precio al consumidor puede llegar a estar multiplicado hasta más de diez veces el coste de producción. Las producciones tradicionales tienden a agruparse y alejarse de las poblaciones. Esto las protege, en caso de accidente, de la opinión pública aunque a costa de encarecer el producto. La producción húmeda es fácilmente escalable y apenas requiere inversión pudiendo dispersar las producciones y abaratar los costes. En este proyecto se propone un sistema de producción de explosivos salinos por vía húmeda, a través de una incorporación acuosa y una extracción con un disolvente orgánico. Las condiciones de operación aseguran que no hay riesgo ninguno de explosión. El sistema utiliza tecnología muy accesible y económica. Se han incorporado cálculos meticulosos además de discutir aspectos termodinámicos, legislativos y económicos. Aunque el trabajo se centra en la pólvora clásica (KNO3-C-S), se estudian alternativas con mayor interés actual. Así mismo se analizan los métodos de producción tradicionales y los efectos sobre la calidad de la pólvora.

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La presente Tesis Doctoral evalúa la contribución de una fachada activa, constituida por acristalamientos con circulación de agua, en el rendimiento energético del edificio. Con especial énfasis en la baja afección sobre su imagen, su integración ha de favorecer la calificación del edificio con el futuro estándar de Edificio de consumo de Energía Casi Nulo (EECN). El propósito consiste en cuantificar su aportación a limitar la demanda de climatización, como solución de fachada transparente acorde a las normas de la energía del 2020. En el primer capítulo se introduce el planteamiento del problema. En el segundo capítulo se desarrollan la hipótesis y el objetivo fundamental de la investigación. Para tal fin, en el tercer capítulo, se revisa el estado del arte de la tecnología y de la investigación científica, mediante el análisis de la literatura de referencia. Se comparan patentes, prototipos, sistemas comerciales asimilables, investigaciones en curso en Universidades, y proyectos de investigación y desarrollo, sobre envolventes que incorporan acristalamientos con circulación de agua. El método experimental, expuesto en el cuarto capítulo, acomete el diseño, la fabricación y la monitorización de un prototipo expuesto, durante ciclos de ensayos, a las condiciones climáticas de Madrid. Esta fase ha permitido adquirir información precisa sobre el rendimiento del acristalamiento en cada orientación de incidencia solar, en las distintas estaciones del año. En paralelo, se aborda el desarrollo de modelos teóricos que, mediante su asimilación a soluciones multicapa caracterizadas en las herramientas de simulación EnergyPlus y IDA-ICE (IDA Indoor Climate and Energy), reproducen el efecto experimental. En el quinto capítulo se discuten los resultados experimentales y teóricos, y se analiza la respuesta del acristalamiento asociado a un determinado volumen y temperatura del agua. Se calcula la eficiencia en la captación de la radiación y, mediante la comparativa con un acristalamiento convencional, se determina la reducción de las ganancias solares y las pérdidas de energía. Se comparan el rendimiento del acristalamiento, obtenido experimentalmente, con el ofrecido por paneles solares fototérmicos disponibles en el mercado. Mediante la traslación de los resultados experimentales a casos de células de tamaño habitable, se cuantifica la afección del acristalamiento sobre el consumo en refrigeración y calefacción. Diferenciando cada caso por su composición constructiva y orientación, se extraen conclusiones sobre la reducción del gasto en climatización, en condiciones de bienestar. Posteriormente, se evalúa el ahorro de su incorporación en un recinto existente, de construcción ligera, localizado en la Escuela de Arquitectura de la Universidad Politécnica de Madrid (UPM). Mediante el planteamiento de escenarios de rehabilitación energética, se estima su compatibilidad con un sistema de climatización mediante bomba de calor y extracción geotérmica. Se describe el funcionamiento del sistema, desde la perspectiva de la operación conjunta de los acristalamientos activos e intercambio geotérmico, en nuestro clima. Mediante la parametrización de sus funciones, se estima el beneficio adicional de su integración, a partir de la mejora del rendimiento de la bomba de calor COP (Coefficient of Performance) en calefacción, y de la eficiencia EER (Energy Efficiency Ratio) en refrigeración. En el recinto de la ETSAM, se ha analizado la contribución de la fachada activa en su calificación como Edificio de Energía Casi Nula, y estudiado la rentabilidad económica del sistema. En el sexto capítulo se exponen las conclusiones de la investigación. A la fecha, el sistema supone alta inversión inicial, no obstante, genera elevada eficiencia con bajo impacto arquitectónico, reduciéndose los costes operativos, y el dimensionado de los sistemas de producción, de mayor afección sobre el edificio. Mediante la envolvente activa con suministro geotérmico no se condena la superficie de cubierta, no se ocupa volumen útil por la presencia de equipos emisores, y no se reduce la superficie o altura útil a base de reforzar los aislamientos. Tras su discusión, se considera una alternativa de valor en procesos de diseño y construcción de Edificios de Energía Casi Nulo. Se proponen líneas de futuras investigación cuyo propósito sea el conocimiento de la tecnología de los acristalamientos activos. En el último capítulo se presentan las actividades de difusión de la investigación. Adicionalmente se ha proporcionado una mejora tecnológica a las fachadas activas existentes, que ha derivado en la solicitud de una patente, actualmente en tramitación. ABSTRACT This Thesis evaluates the contribution of an active water flow glazing façade on the energy performance of buildings. Special emphasis is made on the low visual impact on its image, and the active glazing implementation has to encourage the qualification of the building with the future standard of Nearly Zero Energy Building (nZEB). The purpose is to quantify the façade system contribution to limit air conditioning demand, resulting in a transparent façade solution according to the 2020 energy legislation. An initial approach to the problem is presented in first chapter. The second chapter develops the hypothesis and the main objective of the research. To achieve this purpose, the third chapter reviews the state of the art of the technology and scientific research, through the analysis of reference literature. Patents, prototypes, assimilable commercial systems, ongoing research in other universities, and finally research and development projects incorporating active fluid flow glazing are compared. The experimental method, presented in fourth chapter, undertakes the design, manufacture and monitoring of a water flow glazing prototype exposed during test cycles to weather conditions in Madrid. This phase allowed the acquisition of accurate information on the performance of water flow glazing on each orientation of solar incidence, during different seasons. In parallel, the development of theoretical models is addressed which, through the assimilation to multilayer solutions characterized in the simulation tools EnergyPlus and IDA-Indoor Climate and Energy, reproduce the experimental effect. Fifth chapter discusses experimental and theoretical results focused to the analysis of the active glazing behavior, associated with a specific volume and water flow temperature. The efficiency on harvesting incident solar radiation is calculated, and, by comparison with a conventional glazing, the reduction of solar gains and energy losses are determined. The experimental performance of fluid flow glazing against the one offered by photothermal solar panels available on the market are compared. By translating the experimental and theoretical results to cases of full-size cells, the reduction in cooling and heating consumption achieved by active fluid glazing is quantified. The reduction of energy costs to achieve comfort conditions is calculated, differentiating each case by its whole construction composition and orientation. Subsequently, the saving of the implementation of the system on an existing lightweight construction enclosure, located in the School of Architecture at the Polytechnic University of Madrid (UPM), is then calculated. The compatibility between the active fluid flow glazing and a heat pump with geothermal heat supply system is estimated through the approach of different energy renovation scenarios. The overall system operation is described, from the perspective of active glazing and geothermal heat exchange combined operation, in our climate. By parameterization of its functions, the added benefit of its integration it is discussed, particularly from the improvement of the heat pump performance COP (Coefficient of Performance) in heating and efficiency EER (Energy Efficiency Ratio) in cooling. In the case study of the enclosure in the School of Architecture, the contribution of the active glazing façade in qualifying the enclosure as nearly Zero Energy Building has been analyzed, and the feasibility and profitability of the system are studied. The sixth chapter sets the conclusions of the investigation. To date, the system may require high initial investment; however, high efficiency with low architectural impact is generated. Operational costs are highly reduced as well as the size and complexity of the energy production systems, which normally have huge visual impact on buildings. By the active façade with geothermal supply, the deck area it is not condemned. Useful volume is not consumed by the presence of air-conditioning equipment. Useful surface and room height are not reduced by insulation reinforcement. After discussion, water flow glazing is considered a potential value alternative in nZEB design and construction processes. Finally, this chapter proposes future research lines aiming to increase the knowledge of active water flow glazing technology. The last chapter presents research dissemination activities. Additionally, a technological improvement to existing active facades has been developed, which has resulted in a patent application, currently in handling process.

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La Casa Industrializada supone el ideal de realizar la casa unifamiliar a través de la potencia y los procedimientos de la industria. Como tal, la casa supone un producto industrial más sujeto a la lógica de la reproducción y del consumo. Como producto de consumo la casa debe establecerse como objeto de deseo, accesible al grupo de usuarios-consumidores al que va dirigido. El sueño de la Casa Industrializada se origina en la primera Revolución Industrial y se consolida en la segunda tras la producción del Ford T y la adhesión de los padres del movimiento moderno. A lo largo de su historia se han sucedido casos de éxito y fracaso, los primeros con la realización de un producto de imagen convencional y los segundos la mayor parte de las veces dirigidos por arquitectos. El sueño de la Casa Industrializada de la mano de arquitectos está comenzando a ser una realidad en Japón, Suecia y Estados Unidos a través de marcas como MUJI, Arkitekthus y Living Homes, pero aún dista de ser un hecho extendido en nuestra sociedad. Para que este ideal se cumpla deberá ofrecer valores que permita a la sociedad hacerlo suyo. La Tesis busca analizar la historia y la metodología de la Casa Industrializada, desde el diseño a la comercialización con el fin de ofrecer esos valores en forma de propuestas para la Casa Industrializada en este milenio. La casa como producto industrial-producto de consumo supera las lógicas tradicionales de la arquitectura para operar dentro del contexto de la producción industrial y la reproducción de los objetos. En este sentido es necesario establecer no solo la forma y construcción de la casa sino los mecanismos de reproducción con sus pertinentes eficiencias. La Casa industrializada no se construye, se monta, y para ello utiliza las estrategias de la construcción en seco, la prefabricación, el uso de componentes y los materiales ligeros. Desde la lógica del consumo, la casa debe dirigirse a un determinado público, no es más la casa para todos, característica de las situaciones de crisis y de emergencia. La casa se enfrenta a un mercado segmentado, tanto en cultura, como en deseos y poderes adquisitivos. En la cuestión del diseño debe plantearse más como diseño de producto que como diseño arquitectónico. La Casa Industrializada no es el fruto de un encargo y de una acción singular, debe ofrecerse lista para adquirir y para ser reproducida. Esta reproducción se puede dar tanto en la forma de modelos cerrados o sistemas abiertos que permitan la personalización por parte de los usuarios. Desde el ámbito cultural es necesario entender que la casa es más que una máquina de habitar, es un receptor de emociones, forma parte de nuestra memoria y nuestra cultura. La casa como producto social es una imagen de nosotros mismos, define la manera en la que nos situamos en el mundo y por tanto supone una definición de estatus. En esto, la Tesis se apoya en los textos de Baudrillard y su análisis de la sociedad de consumo y el papel de los objetos y su valor como signo. La Tesis realiza un repaso de los procedimientos industriales con especial énfasis en la producción automovilística y sitúa la evolución de la Casa Industrializada en relación a la evolución de los avances en los sistemas de producción industrial y las transferencias desde las industrias del automóvil y aeronáutica. La tesis se completa con una serie de casos de estudio que parten de las primeras casas de venta por correo de principios del siglo XX, pasando por las propuestas de Gropius, Fuller, el Case Study House Program, Prouvé, Sota y acaban con la situación actual. La Casa Industrializada ha mantenido una serie de valores a lo largo de su historia, como ideal, forma un cuerpo estable de propuestas que no se ha modificado a lo largo del tiempo. Con respecto a este nuevo milenio este ideal no debe ser cambiado sino simplemente actualizado y adaptado a los métodos de producción y las necesidades, sueños y exigencias de la sociedad de hoy. ABSTRACT The industrialized House provides an ideal to manufacture the house through the power and strategies of the industry. As such, the house becomes an industrial product that respond to the logic of reproduction and consumption. As a comodity, the house must become a desirable object, accessible to the group of the consumers to which is targeted The dream of the Industrialized home is originated in the First Industrial Revolution and it is consolidated in the second one after Ford´s production of Model T and the incorporation of the principal figures of the modern movement to the ideal of making houses at the factories. Throughout history there have been cases of success and failure, the first with the completion of a product of conventional image and the second most often led by architects. Industrialized dream house made by architects is starting to become a reality in Japan, Sweden and the United States through brands such as MUJI, Arkitekthus and Living Homes, but still far from beeing a widespread fact in our society. To fulfill this ideal, it should provide values that society could accept as of their own. The Thesis seeks to analyze the history and methodology of industrialized house, from design to marketing in order to offer these values in the form of proposals for industrialized house in this millennium. The house as an industrial-product-comodity extend beyond the traditional architectural logic to operate within the context of industrial production and the reproduction of objects. In this sense it is necessary to establish not only the shape and construction of the house but the mechanisms of reproduction with its relevant efficiencies. Industrialized house is not built it is assembled, and it uses the strategies of dry construction, prefabrication, using lightweight materials and components. From the logic of consumption, the house must go to a certain audience, it is no longer the home for all that is characteristic of crisis respond and emergency. The house faces a segmented market, both in culture and desires and purchasing power. On the question of design it must be considered more like product design than architectural design. Industrialized House is not the result of a commission and a singular action, it should be offered pret-a-porter and able to be reproduced. This reproduction can be given in form of closed or open systems models that allow its customization by users. From the cultural sphere is necessary to understand that the house is more than a machine for living, is a recipient of emotions, is part of our memory and our culture. The home as a social product is an image of ourselves, defines the way in which we place ourselves in the world and therefore represents a definition of status. In this aspect, the thesis is based on the texts of Baudrillard and his analysis of consumption society and the role of objects and its value as a sign in it. The thesis makes a review of the industrial processes with emphasis on automotive production and places the evolution of industrialized House in relation to the evolution of developments in industrial production systems and transfers from the automotive and aeronautics industries. The thesis is completed with a series of case studies that starts from the first mail order houses from the early twentieth century, going through the proposal of Gropius, Fuller, the Case Study House Program, Prouvé, Sota and end up with the current situation. Industrialized House has held a series of values throughout its history, as an ideal, forms a stable corps of proposals that has not changed over time. Regarding this new millennium this ideal should not be changed but simply be updated and adapted to production methods and needs, dreams and demands of today's society.

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Em um cenário de aumento de competitividade, crescente expectativa por inovações do produto e necessidade de atender diferentes perfis de consumidores, o conceito de gerenciamento de cadeias de suprimentos globais (GSCM) surge como uma estratégia para coordenar mais eficazmente as atividades dispersas geograficamente dos sistemas produtivos. Na adoção do GSCM, as organizações devem lidar com rupturas que impactam no gerenciamento das suas atividades, tais como a interrupção de vias de transporte, pane no fornecimento de energia, desastres naturais e até ataques terroristas. Nesse contexto, o trabalho introduz um procedimento sistematizado para modelagem das cadeias de suprimentos visto como um sistema a eventos discretos e sua análise por simulação das atividades do GSCM baseada em técnicas formais como a rede de Petri (PN) e o Production Flow Schema (PFS). Um exemplo é também apresentado para ilustrar e comprovar as vantagens do método proposto na análise do GSCM.

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A crescente demanda por recursos naturais e a conseqüente perda de qualidade e quantidade dos mesmos, indica a necessidade do desenvolvimento de alternativas, nas diversas áreas do conhecimento e das atividades humanas. No caso dos agroecossistemas, as práticas convencionais provocaram ao longo do tempo a degradação do solo e dos recursos hídricos, a perda da biodiversidade e a desestruturação dos ecossistemas, que culminaram em desequilíbrios globais de balanço hídrico e temperatura. O presente estudo visa analisar o potencial de utilização de Sistemas Agroflorestais (SAFs). SAFs são práticas de manejo da terra há muito tempo conhecidas, que associam, deliberadamente, árvores com culturas agrícolas temporárias, permanentes e/ou animais simultaneamente ou sucedendo-se temporalmente no espaço; obtendo os benefícios de proteção ambiental e de produção proporcionados pelas árvores. Para a realização do estudo foram utilizadas as bases cartográficas digitalizadas das características ambientais (solo, topografia, hidrologia e clima) do município e as mesmas foram sobrepostas através do Sistema de Informação Geográfica (SIG). As características ambientais de São Carlos, indicam a necessidade da adoção de sistemas de produção sustentáveis, capazes de conservar a qualidade e a quantidade do solo e dos recursos hídricos disponíveis, bem como sua biodiversidade, por isso apresenta grande aptidão para a utilização dos SAFs e uma ampla variedade de espécies com potencial de uso. A prioridade de adoção de SAFs é para áreas degradadas e subutilizadas, áreas de preservação ambiental e adjacentes, reservas legais e áreas suscetíveis à erosão. Sugere-se novos estudos, em campo, para comprovação dos resultados teóricos obtidos.

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O cenário competitivo e globalizado em que as empresas estão inseridas, sobretudo a partir do século XXI, associados a ciclos de vida cada vez menores dos produtos, rigorosos requisitos de qualidade, além de políticas de preservação do meio ambiente, com redução de consumo energético e de recursos hídricos, somadas às exigências legais de melhores condições de trabalho, resultaram em uma quebra de paradigma nos processos produtivos até então concebidos. Como solução a este novo cenário produtivo pode-se citar o extenso uso da automação industrial, fato que resultou em sistemas cada vez mais complexos, tanto do ponto de vista estrutural, em função do elevado número de componentes, quanto da complexidade dos sistemas de controle. A previsibilidade de todos os estados possíveis do sistema torna-se praticamente impossível. Dentre os estados possíveis pode-se citar os estados de falha que, dependendo da severidade do efeito associado à sua ocorrência, podem resultar em sérios danos para o homem, o meio ambiente e às próprias instalações, caso não sejam corretamente diagnosticados e tratados. Fatos recentes de catástrofes relacionadas à sistemas produtivos revelam a necessidade de se implementar medidas para prevenir e para mitigar os efeitos da ocorrência de falhas, com o objetivo de se evitar a ocorrência de catástrofes. De acordo com especialistas, os Sistemas Instrumentados de Segurança SIS, referenciados em normas como a IEC 61508 e IEC 61511, são uma solução para este tipo de problema. Trabalhos publicados tratam de métodos para a implementação de camadas SIS de prevenção, porém com escassez de trabalhos para camadas SIS de mitigação. Em função do desconhecimento da dinâmica do sistema em estado de falha, técnicas tradicionais de modelagem tornam-se inviáveis. Neste caso, o uso de inteligência artificial, como por exemplo a lógica fuzzy, pode se tornar uma solução para o desenvolvimento do algoritmo de controle, associadas a ferramentas de edição, modelagem e geração dos códigos de controle. A proposta deste trabalho é apresentar uma sistemática para a implementação de um sistema de controle para a mitigação de falhas críticas em sistemas produtivos, com referência às normas IEC 61508/61511, com ação antecipativa à ocorrência de catástrofes.

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Cloud Agile Manufacturing is a new paradigm proposed in this article. The main objective of Cloud Agile Manufacturing is to offer industrial production systems as a service. Thus users can access any functionality available in the cloud of manufacturing (process design, production, management, business integration, factories virtualization, etc.) without knowledge — or at least without having to be experts — in managing the required resources. The proposal takes advantage of many of the benefits that can offer technologies and models like: Business Process Management (BPM), Cloud Computing, Service Oriented Architectures (SOA) and Ontologies. To develop the proposal has been taken as a starting point the Semantic Industrial Machinery as a Service (SIMaaS) proposed in previous work. This proposal facilitates the effective integration of industrial machinery in a computing environment, offering it as a network service. The work also includes an analysis of the benefits and disadvantages of the proposal.

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This paper proposes a new manufacturing paradigm, we call Cloud Agile Manufacturing, and whose principal objective is to offer industrial production systems as a service. Thus users can access any functionality available in the cloud of manufacturing (process design, production, management, business integration, factories virtualization, etc.) without knowledge — or at least without having to be experts — in managing the required resources. The proposal takes advantage of many of the benefits that can offer technologies and models like: Business Process Management (BPM), Cloud Computing, Service Oriented Architectures (SOA) and Ontologies. To develop the proposal has been taken as a starting point the Semantic Industrial Machinery as a Service (SIMaaS) proposed in previous work. This proposal facilitates the effective integration of industrial machinery in a computing environment, offering it as a network service. The work also includes an analysis of the benefits and disadvantages of the proposal.

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La cerámica es uno de los testimonios arqueológicos más abundantes y reconocibles. Generalmente se le atribuye un importante valor histórico en tanto que informa sobre procesos socioeconómicos de gran importancia y constituye un significativo referente cronológico. No obstante, son varias las perspectivas de estudio ceramológico: sus formas de producción, las formas de distribución y comercialización y las pautas de consumo, etc. Todas ellas arrojan luz sobre aspectos que permiten estudiar las sociedades del pasado. En el caso que nos ocupa queremos discutir el valor de la cerámica en la comprensión del proceso de islamización social, es decir de integración en un nuevo sistema social y cultural. El siglo VII marca en el Mediterráneo occidental el final de un sistema económico de ámbito “mundial”, capaz de producir y distribuir cerámicas altamente estandarizadas y especializadas por todo el ámbito mediterráneo. El siglo X permite reconocer la reconstrucción de los mercados y la uniformización productiva y formal, que refleja la nueva sociedad representada en el Califato. Entre ambos extremos se abre un periodo interesante y complejo, plagado de luces y sombras, que permite reconocer tanto los procesos de reestructuración económica como la generalización de nuevos patrones culturales. En este trabajo se intentarán plantear los temas más importantes y novedosos sobre la cerámica de los siglos VII a X, a partir de varios trabajos recientes, leyendo a través de la cerámica el proceso de islamización.

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The institutionalisation of early retirement has become a universal feature of postwar industrial economies, though there are significant cross-national variations. This paper studies the impact of different types of welfare regimes, production systems and labour relations on early exit from work. After an analysis of the main trends, the paper discusses the costs and benefits of early retirement for the various actors — labour, capital and the state — at different levels. The paper outlines both the "pull” and "push” factors of early exit. It first compares the distinct welfare state regimes and private occupational pensions in their impact on early retirement. Then it looks at the labour-shedding strategies inherent to particular employment regimes, production systems and financial governance structures. Finally, the impact of particular industrial relations systems, and especially the role of unions is discussed. The paper finds intricate "institutional complementarities” between particular welfare states, production regimes and industrial relations systems, and these structure the incentives under which actors make decisions on work and retirement. The paper argues that the "collusion” between capital, labour and the state in pursuing early retirement is not merely following a labour-shedding strategy to ease mass unemployment, but also caused by the need for economic restructuration, the downsizing pressures from financial markets, the maintenance of peaceful labour relations, and the consequences of a seniority employment system.

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The flux of materials to the deep sea is dominated by larger, organic-rich particles with sinking rates varying between a few meters and several hundred meters per day. Mineral ballast may regulate the transfer of organic matter and other components by determining the sinking rates, e.g. via particle density. We calculated particle sinking rates from mass flux patterns and alkenone measurements applying the results of sediment trap experiments from the Atlantic Ocean. We have indication for higher particle sinking rates in carbonate-dominated production systems when considering both regional and seasonal data. During a summer coccolithophorid bloom in the Cape Blanc coastal upwelling off Mauritania, particle sinking rates reached almost 570 m per day, most probably due the fast sedimentation of densely packed zooplankton fecal pellets, which transport high amounts of organic carbon associated with coccoliths to the deep ocean despite rather low production. During the recurring winter-spring blooms off NW Africa and in opal-rich production systems of the Southern Ocean, sinking rates of larger particles, most probably diatom aggregates, showed a tendency to lower values. However, there is no straightforward relationship between carbonate content and particle sinking rates. This could be due to the unknown composition of carbonate and/or the influence of particle size and shape on sinking rates. It also remains noticeable that the highest sinking rates occurred in dust-rich ocean regions off NW Africa, but this issue deserves further detailed field and laboratory investigations. We obtained increasing sinking rates with depth. By using a seven-compartment biogeochemical model, it was shown that the deep ocean organic carbon flux at a mesotrophic sediment trap site off Cape Blanc can be captured fairly well using seasonal variable particle sinking rates. Our model provides a total organic carbon flux of 0.29 Tg per year down to 3000 m off the NW African upwelling region between 5 and 35° N. Simple parameterisations of remineralisation and sinking rates in such models, however, limit their capability in reproducing the flux variation in the water column.

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Understanding, and controlling, the conditions under which calcite precipitates within geothermal energy production systems is a key step in maintaining production efficiency. In this study, I apply methods of bulk and clumped isotope thermometry to an operating geothermal energy facility in northern Nevada to see how those methods can better inform the facility owner, AltaRock Energy, Inc., about the occurrence of calcite scale in their power plant. I have taken water samples from five production wells, the combined generator effluent, shallow cold-water wells, monitoring wells, and surface water. I also collected calcite scale samples from within the production system. Water samples were analyzed for stable oxygen isotope composition (d18O). Calcite samples were analyzed for stable oxygen and carbon (d13C) composition, and clumped isotope composition (D47). With two exceptions, the water compositions are very similar, likely indicating common origin and a well-mixed hydrothermal system. The calcite samples are likewise similar to one another. Apparent temperatures calculated from d18O values of water and calcite are lower than those recorded for the system. Apparent temperatures calculated from D47 are several degrees higher than the recorded well temperatures. The lower temperatures from the bulk isotope data are consistent with temperatures that could be expected during a de-pressurization of the production system, which would cause boiling in the pipes, a reduction in system temperature, and rapid precipitation of calcite scale. However, the high apparent temperature indicated by the D47 data suggests that the calcite is depleted in clumped isotopes given the known temperature of the system, which is inconsistent with this hypothesis. This depletion could instead result from disequilibrium isotopic fractionation during the aforementioned boil events, which would make both the apparent d18O-based and D47-based temperatures unrepresentative of the actual water temperature. This research can help improve our understanding of how isotopic analyses can better inform us about the movement of water through geothermal systems of the past and how it now moves through modern systems. Increased understanding of water movement in these systems could potentially allow for more efficient utilization of geothermal energy as a renewable resource.

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Pathogen challenge can trigger an integrated set of signal transduction pathways, which ultimately leads to a state of high alert, otherwise known as systemic or induced resistance in tissue remote to the initial infection. Although large-scale gene expression during systemic acquired resistance, which is induced by salicylic acid or necrotizing pathogens has been previously reported using a bacterial pathogen, the nature of systemic defense responses triggered by an incompatible necrotrophic fungal pathogen is not known. We examined transcriptional changes that occur during systemic defense responses in Arabidopsis plants inoculated with the incompatible fungal pathogen Alternaria brassicicola. Substantial changes (2.00-fold and statistically significant) were demonstrated in distal tissue of inoculated plants for 35 genes (25 up-regulated and 10 down-regulated), and expression of a selected subset of systemically expressed genes was confirmed using real-time quantitative polymerase chain reaction. Genes with altered expression in distal tissue included those with putative functions in cellular housekeeping, indicating that plants modify these vital processes to facilitate a coordinated response to pathogen attack. Transcriptional up-regulation of genes encoding enzymes functioning in the beta-oxidation pathway of fatty acids was particularly interesting. Transcriptional up-regulation was also observed for genes involved in cell wall synthesis and modification and genes putatively involved in signal transduction. The results of this study, therefore, confirm the notion that distal tissue of a pathogen-challenged plant has a heightened preparedness for subsequent pathogen attacks.

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The PDF1.2 gene of Arabidopsis encoding a plant defensin is commonly used as a marker for characterization of the jasmonate-dependent defense responses. Here, using PDF1.2 promoter-deletion lines linked to the beta-glucoronidase-reporter gene, we examined putative promoter elements associated with jasmonate-responsive expression of this gene. Using stably transformed plants, we first characterized the extended promoter region that positively regulates basal expression from the PDF1.2 promoter. Second, using promoter deletion constructs including one from which the GCC-box region was deleted, we observed a substantially lower response to jasmonate than lines carrying this motif. In addition, point mutations introduced into the core GCC-box sequence substantially reduced jasmonate responsiveness, whereas addition of a 20-nucleotide-long promoter element carrying the core GCC-box and flanking nucleotides provided jasmonate responsiveness to a 35S minimal promoter. Taken together, these results indicated that the GCC-box plays a key role in conferring jasmonate responsiveness to the PDF1.2 promoter. However, deletion or specific mutations introduced into the core GCC-box did not completely abolish the jasmonate responsiveness of the promoter, suggesting that the other promoter elements lying downstream from the GCC-box region may also contribute to jasmonate responsiveness. In other experiments, we identified a jasmonate- and pathogen-responsive ethylene response factor transcription factor, AtERF2, which when overexpressed in transgenic Arabidopsis plants activated transcription from the PDF1.2, Thi2.1, and PR4 (basic chitinase) genes, all of which contain a GCC-box sequence in their promoters. Our results suggest that in addition to their roles in regulating ethylene-mediated gene expression, ethylene response factors also appear to play important roles in regulating jasmonate-responsive gene expression, possibly via interaction with the GCC-box.

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The ATP-binding cassette (ABC) transporters are encoded by large gene families in plants. Although these proteins are potentially involved in a number of diverse plant processes, currently, very little is known about their actual functions. In this paper, through a cDNA microarray screening of anonymous cDNA clones from a subtractive library, we identified an Arabidopsis gene (AtPDR12) putatively encoding a member of the pleiotropic drug resistance (PDR) subfamily of ABC transporters. AtPDR12 displayed distinct induction profiles after inoculation of plants with compatible and incompatible fungal pathogens and treatments with salicylic acid, ethylene, or methyl jasmonate. Analysis of AtPDR12 expression in a number of Arabidopsis defense signaling mutants further revealed that salicylic acid accumulation, NPR1. function, and sensitivity to jasmonates and ethylene were all required for pathogen-responsive expression of AtPDR12. Germination assays using seeds from an AtPDR12 insertion line in the presence of sclareol resulted in lower germination rates and much stronger inhibition of root elongation in the AtPDR12 insertion line than in wild-type plants. These results suggest that AtPDR12 may be functionally related to the previously identified ABC transporters SpTUR2 and NpABC1, which transport sclareol. Our data also point to a potential role for terpenoids in the Arabidopsis defensive armory.