Material flow analysisMaterial flow analysis (MFA), also referred to as substance flow analysis (SFA), is an analytical method to quantify flows and stocks of materials or substances in a well-defined system. MFA is an important tool to study the bio-physical aspects of human activity on different spatial and temporal scales. It is considered a core method of industrial ecology or anthropogenic, urban, social and industrial metabolism. MFA is used to study material, substance, or product flows across different industrial sectors or within ecosystems.
Urban metabolismUrban metabolism is a model to facilitate the description and analysis of the flows of the materials and energy within cities, such as undertaken in a material flow analysis of a city. It provides researchers with a metaphorical framework to study the interactions of natural and human systems in specific regions. From the beginning, researchers have tweaked and altered the parameters of the urban metabolism model. C.
Écologie profondeL’écologie profonde (deep ecology en anglais) ou radicale est une philosophie écologiste contemporaine qui se caractérise par la défense de la valeur intrinsèque des êtres vivants et de la nature, c’est-à-dire une valeur indépendante de leur utilité pour les êtres humains. Elle attribue plus de valeur aux espèces et aux différents écosystèmes que ne le font les mouvements écologiques classiques, ce qui entraîne le développement d’une éthique environnementale.
Analyse du cycle de vieL'analyse du cycle de vie (ACV) est une méthode d'évaluation normalisée (ISO 14040 et 14044) permettant de réaliser un bilan environnemental multicritère et multi-étape d'un système (produit, service, entreprise ou procédé) sur l'ensemble de son cycle de vie. Son but est de connaître et pouvoir comparer les impacts environnementaux d'un système tout au long de son cycle de vie, de l'extraction des matières premières nécessaires à sa fabrication à son traitement en fin de vie (mise en décharge, recyclage...
ÉcologieL'écologie, ou écologie scientifique, est une science qui étudie les interactions des êtres vivants entre eux et avec leur milieu. L'ensemble des êtres vivants, de leur milieu de vie et des relations qu'ils entretiennent forme un écosystème. L'écologie fait partie intégrante de la discipline plus vaste qu'est la science de l'environnement (ou science environnementale). Une définition généralement admise, particulièrement utilisée en écologie humaine, admet l'écologie comme étant ; l'environnement est .
Développement durablevignette|Diagramme de Venn du développement durable, à l'intersection de trois préoccupations, dites « les trois piliers du développement durable ».Les descriptions des intersections partielles peuvent varier. Le développement durable (, parfois traduit par développement soutenable) est une conception du développement qui s'inscrit dans une perspective de long terme et en intégrant les contraintes environnementales et sociales à l'économie.
Anthropogenic metabolismAnthropogenic metabolism, also referred to as metabolism of the anthroposphere, is a term used in industrial ecology, material flow analysis, and waste management to describe the material and energy turnover of human society. It emerges from the application of systems thinking to the industrial and other man-made activities and it is a central concept of sustainable development. In modern societies, the bulk of anthropogenic (man-made) material flows is related to one of the following activities: sanitation, transportation, habitation, and communication, which were "of little metabolic significance in prehistoric times".
Industrial metabolismIndustrial metabolism is a concept to describe the material and energy turnover of industrial systems. It was proposed by Robert Ayres in analogy to the biological metabolism as "the whole integrated collection of physical processes that convert raw materials and energy, plus labour, into finished products and wastes..." In analogy to the biological concept of metabolism, which is used to describe the whole of chemical reactions in, for example, a cell to maintain its functions and reproduce itself, the concept of industrial metabolism describes the chemical reactions, transport processes, and manufacturing activities in industry.
Écologie industrielleL’écologie industrielle est une notion et une pratique récente du management environnemental visant à limiter les impacts de l'industrie sur l'environnement. Fondée sur l'analyse des flux de matière et d'énergie, l'écologie industrielle cherche à avoir une approche globale du système industriel en le représentant comme un écosystème et à le rendre compatible avec les écosystèmes naturels. Son origine remonterait à 1989 par le biais d'un article intitulé Strategies for Manufacturing de Robert A. Frosch et Nicholas E.
Systems ecologySystems ecology is an interdisciplinary field of ecology, a subset of Earth system science, that takes a holistic approach to the study of ecological systems, especially ecosystems. Systems ecology can be seen as an application of general systems theory to ecology. Central to the systems ecology approach is the idea that an ecosystem is a complex system exhibiting emergent properties. Systems ecology focuses on interactions and transactions within and between biological and ecological systems, and is especially concerned with the way the functioning of ecosystems can be influenced by human interventions.
Industrial symbiosisIndustrial symbiosis a subset of industrial ecology. It describes how a network of diverse organizations can foster eco-innovation and long-term culture change, create and share mutually profitable transactions—and improve business and technical processes. Although geographic proximity is often associated with industrial symbiosis, it is neither necessary nor sufficient—nor is a singular focus on physical resource exchange. Strategic planning is required to optimize the synergies of co-location.
Urban designUrban design is an approach to the design of buildings and the spaces between them that focuses on specific design processes and outcomes. In addition to designing and shaping the physical features of towns, cities, and regional spaces, urban design considers 'bigger picture' issues of economic, social and environmental value and social design. The scope of a project can range from a local street or public space to an entire city and surrounding areas.
Sustainability measurementSustainability measurement is a set of frameworks or indicators to measure how sustainable something is. This includes processes, products, services and businesses. Sustainability is difficult to quantify. It may even be impossible to measure. To measure sustainability, the indicators consider environmental, social and economic domains. The metrics are still evolving. They include indicators, benchmarks and audits. They include sustainability standards and certification systems like Fairtrade and Organic.
Urbanismevignette|upright=1.0|Gratte-ciel vus depuis la tour CN à Toronto (Canada). vignette|upright=1.0|Vue d'un quartier de Pachuca (Mexique). L'urbanisme est l'ensemble des sciences, des techniques et des arts relatifs à l'organisation et à l'aménagement des espaces urbains. Ce projet peut être sous-tendu par une volonté d'assurer le bien-être de l'homme et d'améliorer les rapports sociaux en préservant l'environnement. Les professionnels qui exercent ce métier sont des urbanistes.
Natural resource managementNatural resource management (NRM) is the management of natural resources such as land, water, soil, plants and animals, with a particular focus on how management affects the quality of life for both present and future generations (stewardship). Natural resource management deals with managing the way in which people and natural landscapes interact. It brings together natural heritage management, land use planning, water management, bio-diversity conservation, and the future sustainability of industries like agriculture, mining, tourism, fisheries and forestry.
Index of sustainability articlesThis page is an index of sustainability articles. Adiabatic lapse rate - Air pollution control - Air pollution dispersion modeling - Allotment (gardening) - Anaerobic digestion - Anthropogenic - Anthroposystem - Applied Sustainability - Appropriate technology - Aquaculture - Aquatic ecosystem - Ashden Awards Back-to-the-land movement - Bagasse - Behavioral ecology - Biobutanol - Biodegradable plastics - Bioenergy - Bioenergy village - Biofuel in Brazil - Biofuel in the United States - Biofuel - Biogas - Bi
DurabilitéLes termes durabilité ou soutenabilité sont utilisés depuis les années 1990 pour désigner une configuration de la société humaine qui lui permet d'assurer sa pérennité. Une telle organisation humaine repose sur le maintien d'un environnement vivable, permettant le développement économique et social à l'échelle planétaire et, selon les points de vue, sur une organisation sociale équitable. La période de transition vers la durabilité peut se faire par le développement durable, via la transition énergétique et la transition écologique notamment.
Metabolic riftMetabolic rift is Karl Marx's key conception of ecological crisis tendencies under capitalism, or in Marx's own words, it is the "irreparable rift in the interdependent process of social metabolism". Marx theorized a rupture in the metabolic interaction between humanity and the rest of nature emanating from capitalist agricultural production and the growing division between town and country. According to John Bellamy Foster, who coined the term, metabolic rift is the development of Marx's earlier work in the Economic and Philosophical Manuscripts on species-being and the relationship between humans and nature.
Life cycle thinkingLife cycle thinking refers to the consideration of environmental impacts throughout the various stages of a product's existence and the endeavor to minimize these impacts whenever feasible. It aims to prevent the transfer of environmental burdens from one stage to another. Additionally, life cycle thinking acknowledges the role of technological advancement in addressing environmental concerns. This approach is adopted by companies in the development of eco-friendly products, by consumers in making conscious product selections, and by governments in establishing regulatory standards to mitigate environmental effects.
Weak and strong sustainabilityAlthough related, sustainable development and sustainability are two different concepts. Weak sustainability is an idea within environmental economics which states that 'human capital' can substitute 'natural capital'. It is based upon the work of Nobel laureate Robert Solow, and John Hartwick. Contrary to weak sustainability, strong sustainability assumes that 'human capital' and 'natural capital' are complementary, but not interchangeable. This idea received more political attention as sustainable development discussions evolved in the late 1980s and early 1990s.