986 resultados para circular economy


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A Circular Economy (CE) values material, technical or biological, as nutrient. CE thinking seeks to accelerate the conversion of technical nutrient cycles along the lines of biological nutrient cycles by re-designing systems till the scale of the economy. Though the notion of products being technical nutrient exists, its situation as an outcome of design intent is not contextually made. One objective of this article is to situate design and nutrient cycles of the earth system as and within natural cycles. This situation emphasizes the mechanism by which design affects nutrient availability to vital earth systems and draws attention to the functions that nutrients afford and serve by default before being embodied in products by human intent. The first principle of CE seeks to eliminate waste and re-purpose nutrients with minimal energy. Towards this, the historic trend of perceiving waste is drawn and Gestalts identified to arrive at the concept of tenancy and inform design. Tenancy is defined as the duration for which the nutrient embodied serves some purpose. Identifying the 6R scenarios as nutrient re-purposing functions, corresponding design strategies are stated.

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The global economy is based on a take-make-consume and dispose model where natural resources are turned into products and the waste disposed of instead of being reused as a resource. In the Asia-Pacific region climate change along with rapid population and economic growth is resulting in increased demand for water and food, potentially leading to economic and political instability. Europe has developed policy and technological innovations that can facilitate the transition towards a circular economy where waste becomes a resource. By using existing instruments Europe can transfer its circular economy knowledge and technology to the Asia-Pacific region to increase security of supply of scarce resources. This can help ensure global security, influence climate change negotiations and create jobs in Europe.

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The characteristics of the traditional linear economic model are high consumption, high emission and low efficiency. Economic development is still largely at the expense of the environment and requires a natural resource investment. This can realize rapid economic development but resource depletion and environmental pollution become increasingly serious. In the 1990's a new economic model, circular economics, began to enter our vision. The circular economy maximizes production and minimizes the impact of economic activities on the ecological environment through organizing the activities through the closed-loop feedback cycle of "resources - production - renewable resource". Circular economy is a better way to solve the contradictions between the economic development and resource shortages. Developing circular economy has become the major strategic initiatives to achieving sustainable development in countries all over the world. The evaluation of the development of circular economics is a necessary step for regional circular economy development. Having a quantitative evaluation of circular economy can better monitor and reveal the contradictions and problems in the process of the development of recycling economy. This thesis will: 1) Create an evaluation model framework and new types of industries and 2) Make an evaluation of the Shanghai circular economy currently to analyze the situation of Shanghai in the development of circular economy. I will then propose suggestions about the structure and development of Shanghai circular economy.

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The ‘circular economy’ is gaining momentum as a concept in both academic and policy circles, and circular business models have been linked to significant economic benefits. This paper identifies barriers and enablers to adopting circular economy business practices, and presents key messages for policy-makers. It draws on input from a literature review, on discussions held in the context of the GreenEcoNet project and on an analysis of two SME circular business models.

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Many groups had expressed support for the EU’s circular economy package, now abandoned with the promise of “more ambitions” proposals. But can we afford to wait?

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Redistributed manufacturing is an emerging concept which captures the anticipated reshoring and localisation of production from large scale manufacturing plants to smaller-scale localised, customisable production units, largely driven by new additive digital production technologies. Critically, community based digital fabrication workshops, or makespaces, are anticipated to be the hothouse for this new era of localised production and as such are key to future sustainable design and manufacturing practices. In parallel, the concept of the circular economy (CE) conceptualises the move from a linear economy of take-make-waste to a closed loop system, through repair, remanufacturing, refurbishment and recycling which maintains the value of materials and resources. Despite the clear interplay between RdM and CE, there is limited research exploring this relationship. In light of these interconnected developments, the aim of this paper is to explore the role of makespaces in contributing to a circular economy through RdM activities. This is achieved through six semi-structured interviews with thought leaders on these topics. The research findings identify barriers and opportunities to both CE and RdM, uncover key overlaps between CE and RdM, and identify a range of future research directions that can support the coming together of these areas. The research contributes to a wider conversation on embedding circular practices within makespaces and their role in RdM.

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Redistributed manufacturing is an emerging concept which captures the anticipated reshoring and localisation of production from large scale mass manufacturing plants to smaller-scale localised, customisable production units, largely driven by new digital production technologies. Critically, community-based digital fabrication workshops, or makespaces, are anticipated to be one hothouse for this new era of localised production and as such are key to future sustainable design and manufacturing practices. In parallel, the concept of the circular economy conceptualises the move from a linear economy of take-make-waste to a closed loop system, through repair, remanufacturing, and recycling to ultimately extend the value of products and materials. Despite the clear interplay between redistributed manufacturing and circular economy, there is limited research exploring this relationship. In light of these interconnected developments, the aim of this paper is to explore the role of makespaces in contributing to a circular economy through redistributed manufacturing activities. This is achieved through six semi-structured interviews with thought leaders on these topics. The research findings identify barriers and opportunities to both circular economy and redistributed manufacturing, uncover overlaps between circular economy and redistributed manufacturing, and identify a range of future research directions that can support the coming together of these areas. The research contributes to a wider conversation on embedding circular practices within makespaces and their role in redistributed manufacturing.

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An economy based on the exchange of capital, assets and services between individuals has grown significantly, spurred by proliferation of internet-based platforms that allow people to share underutilized resources and trade with reasonably low transaction costs. The movement toward this economy of “sharing” translates into market efficiencies that bear new products, reframe established services, have positive environmental effects, and may generate overall economic growth. This emerging paradigm, entitled the collaborative economy, is disruptive to the conventional company-driven economic paradigm as evidenced by the large number of peer-to-peer based services that have captured impressive market shares sectors ranging from transportation and hospitality to banking and risk capital. The panel explores economic, social, and technological implications of the collaborative economy, how digital technologies enable it, and how the massive sociotechnical systems embodied in these new peer platforms may evolve in response to the market and social forces that drive this emerging ecosystem.

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Peer reviewed

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Química e Biológica

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The thesis aims to understand how CSR and stakeholder engagement can contribute to the development of industrial symbiosis. Theory suggests that corporate social responsibility and stakeholder engagement theories have many similar aspects that correlate with the development of industrial symbiosis. This study is qualitative and empirical suggestions are derived from integrative analysis of literature, secondary data and case study analysis. The empirical findings from the interviews support the framework that is created from the findings of the literature review. The results discovered throughout the thesis research suggest that CSR functions as a theoretical background for industrial symbiosis and stakeholder engagement helps develop more thorough understandings of it from the management viewpoint. Empirical findings and literature review also suggest that in the developing of industrial symbiosis the key aspect are the social characteristics such as a robust management structure, trust between partners and long-term commitment to the common goals that support the development of these symbioses. Also, communication and transparency supports the development of industrial symbiosis. For managerial contribution, this thesis presents organizational practices that can help managers to understand how they can engage in effective engagement with stakeholders in the development of industrial symbiosis.

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Les organisations qui s’engagent dans une démarche de responsabilité sociale sont appelées à mieux prendre en considération les impacts environnementaux, sociaux et économiques de leurs activités et à communiquer publiquement les engagements qu’il prennent. Ces engagements sont véhiculés à travers différents médias réalisés par un designer graphique. Comme les notions de responsabilité sociale sont complexes et les engagements uniques à chaque organisation, le designer doit s’assurer de bien comprendre le message à transmettre pour rendre les médias cohérents autant dans leur forme que dans leur contenu. Pour aider le designer à répondre à ce défi, une démarche participative, qui vise la collaboration entre les parties prenantes en amont du processus, a été testée dans le cadre de cette recherche. Elle consistait à observer et à documenter, en contexte de pratique réel, comment une démarche participative pouvait soutenir la communication graphique de la responsabilité sociale d’une organisation. La création de l’identité visuelle et des médias de l’Institut de l’environnement, du développement durable et de l’économie circulaire a été choisi comme cas d’étude. Suivant une méthodologie inspirée de la recherche-action, nous avons pu identifier et valider les freins et les leviers de la démarche avec les participants. Les résultats obtenus soulignent l’apport positif de la démarche au processus de conception. Elle a permis aux parties prenantes de visualiser collectivement les valeurs de RS à communiquer grâce à un partage de connaissances. De plus, le processus itératif et participatif a facilité l’appropriation du projet par l’organisation. Le manque de temps, de ressources humaines et de ressources économiques constituent les principaux freins au maintien de la démarche au-delà de l’étape d’idéation et de rétroaction. L’analyse des données recueillies a permis de formuler des recommandations en vue d’améliorer la démarche pour en favoriser l’usage auprès de la communauté de pratique du design graphique et des organisations qui recourent à ses services pour communiquer leur responsabilité sociale.

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El proyecto será desarrollado en base al modelo ecológico del desarrollo humano, (Bronfenbrenner, 1999) partiendo desde la explicación y conceptualización del modelo en términos generales, guiando la investigación hacia un ámbito organizacional en donde se podrá aplicar la teoría descrita por Bronfenbrenner y así, determinar cuál es la estructura y funcionalidad de los sistemas en el modelo además de establecer qué utilidad tiene en entornos empresariales por medio del análisis de los múltiples sistemas, relaciones, interacciones y efectos que tienen y que desarrollan las empresas u organizaciones en el transcurso de su vida. A lo largo de la investigación se hará referencia a diferentes conceptos relacionados tanto con el modelo como con el mundo en que se desarrollan las organizaciones, tales como clusters, sistemas, sectores, estrategias, marketing relacional, comunidad, interacciones, influencias, entre otros; los cuales permitirán acercar lo mayor posible el modelo de Bronfenbrenner al mundo empresarial y lograr desarrollar de mejor manera la intención de aplicar el modelo al mundo organizacional.

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On a global level the population growth and increase of the middle class lead to a growing demand on material resources. The built environment has an enormous impact on this scarcity. In addition, a surplus of construction and demolition waste is a common problem. The construction industry claims to recycle 95% of this waste but this is in fact mainly downcycling. Towards the circular economy, the quality of reuse becomes of increasing importance. Buildings are material warehouses that can contribute to this high quality reuse. However, several aspects to achieve this are unknown and a need for more insight into the potential for high quality reuse of building materials exists. Therefore an instrument has been developed that determines the circularity of construction waste in order to maximise high quality reuse. The instrument is based on three principles: ‘product and material flows in the end of life phase’, ‘future value of secondary materials and products’ and ‘the success of repetition in a new life cycle’. These principles are further divided into a number of criteria to which values and weighting factors are assigned. A degree of circularity can then be determined as a percentage. A case study for a typical 70s building is carried out. For concrete, the circularity is increased from 25% to 50% by mapping out the potential for high quality reuse. During the development of the instrument it was clarified that some criteria are difficult to measure. Accurate and reliable data are limited and assumptions had to be made. To increase the reliability of the instrument, experts have reviewed the instrument several times. In the long-term, the instrument can be used as a tool for quantitative research to reduce the amount of construction and demolition waste and contribute to the reduction of raw material scarcity.