3 resultados para sustainable social enterprise

em Universidad de Alicante


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En este artículo analizamos el desarrollo de empresa social en España e Italia en el marco de la crisis económica y social, en términos de difusión y marco jurídico. De esta manera, definimos los confines del “ecosistema” de la empresa social en los dos países e identificamos elementos comunes y especifidades. La hipótesis es que la empresa social representa una herramienta de generación de respuestas proactivas a la crisis, impulsando trayectorias de innovación económica y social, y contribuyendo a un modelo de desarrollo económica y socialmente sostenible. La innovación surge de la capacidad de las empresas sociales de generar respuestas innovativas a demandas emergentes, de su capacidad de crear al mismo tiempo valor social y económico, de satisfacer necesidades individuales y colectivas, de activar dinámicas de cambio de medio y largo plazo, de estimular dinámicas de emprendimiento, de empoderamiento y de valorización en el territorio. Sin embargo, el carácter innovador de la empresa social no surge simplemente de una empresarializacción del Tercer Sector tradicional, y mucho menos como consecuencia de la transferencia de servicios fundamentales del estado a asociaciones, cooperativas y empresas sociales, si con eso se persigue el simple objetivo de reducción de los gastos públicos. Al contrario, detrás de la retórica de la innovación social se puedan esconder proyectos de reducción de los gastos de servicios a través de la reducción de los salarios y de la cualidad de los servicios. El artículo, a partir de la comparación de la difusión del fenómeno y de las perspectivas de desarrollo en España y en Italia, termina con una reflexión crítica sobre las luces y sombras, los riesgos y las oportunidades, relacionados con la difusión de la empresa social, o sea, de la integración de la acción solidaria y la acción económica en prácticas que son al mismo tiempo empresariales y con finalidades sociales.

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The sustainability strategy in urban spaces arises from reflecting on how to achieve a more habitable city and is materialized in a series of sustainable transformations aimed at humanizing different environments so that they can be used and enjoyed by everyone without exception and regardless of their ability. Modern communication technologies allow new opportunities to analyze efficiency in the use of urban spaces from several points of view: adequacy of facilities, usability, and social integration capabilities. The research presented in this paper proposes a method to perform an analysis of movement accessibility in sustainable cities based on radio frequency technologies and the ubiquitous computing possibilities of the new Internet of Things paradigm. The proposal can be deployed in both indoor and outdoor environments to check specific locations of a city. Finally, a case study in a controlled context has been simulated to validate the proposal as a pre-deployment step in urban environments.

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A hydrological–economic model is introduced to describe the dynamics of groundwater-dependent economics (agriculture and tourism) for sustainable use in sparse-data drylands. The Amtoudi Oasis, a remote area in southern Morocco, in the northern Sahara attractive for tourism and with evidence of groundwater degradation, was chosen to show the model operation. Governing system variables were identified and put into action through System Dynamics (SD) modeling causal diagrams to program basic formulations into a model having two modules coupled by the nexus ‘pumping’: (1) the hydrological module represents the net groundwater balance (G) dynamics; and (2) the economic module reproduces the variation in the consumers of water, both the population and tourists. The model was operated under similar influx of tourists and different scenarios of water availability, such as the wet 2009–2010 and the average 2010–2011 hydrological years. The rise in international tourism is identified as the main driving force reducing emigration and introducing new social habits in the population, in particular concerning water consumption. Urban water allotment (PU) was doubled for less than a 100-inhabitant net increase in recent decades. The water allocation for agriculture (PI), the largest consumer of water, had remained constant for decades. Despite that the 2-year monitoring period is not long enough to draw long-term conclusions, groundwater imbalance was reflected by net aquifer recharge (R) less than PI + PU (G < 0) in the average year 2010–2011, with net lateral inflow from adjacent Cambrian formations being the largest recharge component. R is expected to be much less than PI + PU in recurrent dry spells. Some low-technology actions are tentatively proposed to mitigate groundwater degradation, such as: wastewater capture, treatment, and reuse for irrigation; storm-water harvesting for irrigation; and active maintenance of the irrigation system to improve its efficiency.