4 resultados para Economic capacity

em Universidad Politécnica de Madrid


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“Quien contamina, paga“, con esta premisa surgió la idea de este Trabajo Fin de Máster, en adelante TFM, cuyo objetivo era identificar medidas alternativas reales para una optimización del proceso actual de gestión de residuos sólidos urbanos ante una sociedad cada vez más superpoblada y con mayores ratios de consumo. Cada español genera anualmente un volumen de 485 Kg de residuos, de los cuales únicamente el 33 % son reciclados y pueden volver a un flujo normal de uso, especialmente preocupante durante los últimos años es el auge de los productos envasados, tanto de bebidas como de alimentos , cuya utilización se ha duplicado en la última década. La motivación de este trabajo Fin de Máster ha sido la de poner de manifiesto que la sostenibilidad con el medioambiente puede ir de la mano de la rentabilidad y del progreso. Durante este TFM se ha estudiado y analizado la viabilidad económica de implantación de un nuevo modelo de depósito, devolución y retorno en el mercado retail español y como con la adopción de este nuevo sistema se pueden lograr beneficios tanto para el propio minorista, como para el medio ambiente con ratios de reciclado superiores al 98%. La preocupación por el medio ambiente empieza a ser una constante entre los consumidores españoles y dicha preocupación comienza a ser influenciadora en las decisiones de compra (productos eco, sostenibilidad…). Nuestra propuesta consiste en dotar a los principales distribuidores del sector retail español de un sistema de depósito, devolución y retorno para envases de bebidas capaz de generar diferenciación, innovación y rentabilidad frente a la competencia. Dicho sistema consiste en pagar un depósito por cada envase de bebida que se adquiera y su correspondiente devolución en la siguiente compra, una vez que se devuelva vacío al establecimiento. Para ello se ha analizado el sector de la distribución en España, especialmente la distribución de bebidas. Se trata de un sector muy competitivo, que presenta varios formatos en función del tamaño del establecimiento (Hipermercados, Supermercados, tiendas tradicionales). Las principales empresas distribuidoras (Carrefour, Mercadona, Alcampo, Eroski, DIA) se encuentran en procesos de cambios estratégicos para lograr atraer a más consumidores hacia sus tiendas, por lo que nuestra propuesta podrá añadir valor a la hora de influenciar en la decisión del lugar de compra. En nuestro caso, nos dirigiremos principalmente a las grandes empresas distribuidoras, Hipermercados de más de 2.500 m2 ,que cuentan con más de 500 puntos de venta y distribución donde existe la posibilidad real de implantar un SDDR. Además se ha realizado un estudio de mercado sobre la influencia de dicho sistema en el consumidor final, donde se ha detectado dos segmentos principales cuya decisión de compra se vería muy influenciada por la implantación de un SDDR, un segmento Sénior, entre 45-54 años, preocupados por el medio ambiente y con poder adquisitivo suficiente como para que el pago del depósito no sea bloqueante, y un segmento Junior, entre 18-24 años, también muy concienciado el medio ambiente, de capacidad económica menor pero qué influye en la decisión de compra de sus progenitores. Para llevar a cabo este plan de negocio será necesario una inversión inicial de 57.000 €, con unas expectativas de recuperación de dicha inversión en el primer año y una TIR del 56%, presentando un VAN de 127.961 € para los 7 años de vida del proyecto. Para dar a conocer a los clientes del Hipermercado los beneficios de utilizar un sistema SDDR, se realizarán campañas de marketing a través de diferentes canales, promociones de apertura, acciones de marketing exteriores y planes de fidelización. La organización e implantación en el Hipermercado será muy sencilla con roles claramente diferenciados, únicamente involucraría a unos 9 recursos definidos y en aproximadamente 3 meses desde el inicio del proyecto ya se podría ofertar dicho servicio a los clientes del Hipermercado. Además se han analizado los principales riesgos a los que se enfrentaría el negocio, ponderándose en una matriz impacto-probabilidad. Se han establecido medidas correctoras en el caso que dicho riesgo aflore. Habrá que tener especialmente precaución con la pérdida de ventas durante el arranque del negocio en el caso que esto ocurra, por lo que se deberá controlar el gasto, fomentar la captación de clientes y mantener un fondo de maniobra lo suficientemente elevado como para absorber dicho riesgo.---ABSTRACT---“Polluters pay”, with this premise this TFM aimed at identifying real alternative measures for optimization of the current process of solid waste management in a crowded society and with greater consumption ratios. Spaniards generates an annual volume of 485 kg of waste; only 33 % are recycled and can return to a normal flow. Specially concern is the increased of packaged product in recent years, mainly drink and food, their use has been duplicated in the last decade. The motivation for this Thesis was to highlight that sustainability, profitability and progress can go together. During this TFM has been studied and analyzed the economic feasibility of implementing a new model of deposit , refund and return in the Spanish retail market and as with the adoption of this new system can achieve benefits for the retailer itself therefore to the environment with ratios above 98% recycled. Concern for the environment is becoming a constant among Spanish consumers , and this concern is becoming influencer in purchasing decisions ( eco, sustainability ... ) . Our proposal is to provide the main distributors of the Spanish retail sector a system of deposit, refund and return for beverage containers capable of generating differentiation, innovation and profitability over the competition. This system is to pay a deposit for each beverage container they purchase and their corresponding return in the next purchase, once they return empty to the establishment. For this we have analyzed the distribution sector in Spain, especially the distribution of beverages. This is a highly competitive industry, which features various formats depending on the size of establishments (hypermarkets, supermarkets, traditional shops). The main distribution companies (Carrefour, Mercadona, Alcampo, Eroski, DIA) are in the process of strategic changes in order to attract more consumers to their stores, so that our approach can add value in influencing the decision of place shopping. In our case, we will go mainly to large distributors, Hypermarkets of over 2,500 m2, which have more than 500 outlets and distribution where there is a real possibility of implementing a SDDR. It has also conducted a market study on the influence of that system on the final consumer, which has detected two main segments whose purchasing decisions would be greatly influenced by the introduction of a SDDR, a Senior segment, 45-54 years concerned about the environment and purchasing power enough that the deposit is not blocking, and a Junior Segment, aged 18-24, also concern with environment, lower economic capacity but what influences the decision purchase of their parents). To carry out this business plan will require an initial investment of 57,000 €, with expectations of recovery of such investment in the first year and an IRR of 56%, with an NPV of € 127,961 for the 7 years of the project . To publicize hypermarket customers the benefits of using a SDDR system, marketing campaigns conducted through different channels, opening promotions, marketing activities and external loyalty schemes. The organization and implementation in the Hypermarket is easy with distinct roles, involve only about 9 resourced and in about 3 months from the start of the project and could offer this service to customers in the hypermarket. We have also analyzed the main risks and established corrective measures to surface that risk . We should take caution with lost sales during startup of the business, such as control spending, customer retention and maintaining enough working capital.

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In the last years, vulnerability assessment has emerged as a need for policy making instead of being a pure academic exercise (Hinkel, 2010). In the current context of changing climate, increasing water scarcity threatens economic activities in many arid or semi-arid regions of the World. Climate change (CC) science and policy debates have traditionally focused on CC mitigation and impact assessment (Krysanova et al., 2010). However, even if mitigation policies are successfully enforced some climate change is still expected. Then, adaptation is strongly necessary and, for that, improved knowledge on vulnerability and adaptive capacity is required.

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Growing scarcity, increasing demand and bad management of water resources are causing weighty competition for water and consequently managers are facing more and more pressure in an attempt to satisfy users? requirement. In many regions agriculture is one of the most important users at river basin scale since it concentrates high volumes of water consumption during relatively short periods (irrigation season), with a significant economic, social and environmental impact. The interdisciplinary characteristics of related water resources problems require, as established in the Water Framework Directive 2000/60/EC, an integrated and participative approach to water management and assigns an essential role to economic analysis as a decision support tool. For this reason, a methodology is developed to analyse the economic and environmental implications of water resource management under different scenarios, with a focus on the agricultural sector. This research integrates both economic and hydrologic components in modelling, defining scenarios of water resource management with the goal of preventing critical situations, such as droughts. The model follows the Positive Mathematical Programming (PMP) approach, an innovative methodology successfully used for agricultural policy analysis in the last decade and also applied in several analyses regarding water use in agriculture. This approach has, among others, the very important capability of perfectly calibrating the baseline scenario using a very limited database. However one important disadvantage is its limited capacity to simulate activities non-observed during the reference period but which could be adopted if the scenario changed. To overcome this problem the classical methodology is extended in order to simulate a more realistic farmers? response to new agricultural policies or modified water availability. In this way an economic model has been developed to reproduce the farmers? behaviour within two irrigation districts in the Tiber High Valley. This economic model is then integrated with SIMBAT, an hydrologic model developed for the Tiber basin which allows to simulate the balance between the water volumes available at the Montedoglio dam and the water volumes required by the various irrigation users.

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In the face of likely climate change impacts policy makers at different spatial scales need access to assessment tools that enable informed policy instruments to be designed. Recent scientific advances have facilitated the development of improved climate projections, but it remains to be seen whether these are translated into effective adaptation strategies. This paper uses existing databases on climate impacts on European agriculture and combines them with an assessment of adaptive capacity to develop an interdisciplinary approach for prioritising policies. It proposes a method for identifying relevant policies for different EU countries that are representative of various agroclimatic zones. Our analysis presents a framework for integrating current knowledge of future climate impacts with an understanding of the underlying socio-economic, agricultural and environmental traits that determine a region’s capacity for adapting to climate change.