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.
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".
Population mondialeLa population mondiale est le nombre d'êtres humains vivant sur Terre à un instant donné. L’ONU l'estime à le . Elle avait été estimée à pour 2000, entre 1,55 et pour 1900, entre 0,813 et pour 1800 et entre 600 et d'habitants pour 1700. Cette augmentation de la population avec le temps tend cependant à ralentir avec une baisse mondiale de l'indice de fécondité, plus ou moins importante selon les pays. Le taux annuel de la croissance démographique de la population mondiale est tombé de 2,1 % au début des années 1960 à moins de 1 % en 2020.
Croissance démographiqueLa croissance démographique ou accroissement démographique ou variation totale de population est la différence entre l’effectif d’une population à la fin et au début d’une période donnée (généralement un an). Elle peut être exprimée par le taux d'évolution du nombre d’individus au sein d’une population par unité de temps et pour aussi n’importe quelle espèce (animale ou végétale, par exemple). Elle se décompose en deux parties distinctes : l’accroissement naturel ; le solde migratoire.
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.
Estimates of historical world populationThis article lists current estimates of the world population in history. In summary, estimates for the progression of world population since the Late Middle Ages are in the following ranges: Estimates for pre-modern times are necessarily fraught with great uncertainties, and few of the published estimates have confidence intervals; in the absence of a straightforward means to assess the error of such estimates, a rough idea of expert consensus can be gained by comparing the values given in independent publications.
Sustainable urbanismSustainable urbanism is both the study of cities and the practices to build them (urbanism), that focuses on promoting their long term viability by reducing consumption, waste and harmful impacts on people and place while enhancing the overall well-being of both people and place. Well-being includes the physical, ecological, economic, social, health and equity factors, among others, that comprise cities and their populations.
Energy developmentEnergy development is the field of activities focused on obtaining sources of energy from natural resources. These activities include the production of renewable, nuclear, and fossil fuel derived sources of energy, and for the recovery and reuse of energy that would otherwise be wasted. Energy conservation and efficiency measures reduce the demand for energy development, and can have benefits to society with improvements to environmental issues.