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040 _aES-BaAUN
_beng
_cES-BaAUN
110 2 _aFramlab
_edesign studio.
245 1 1 _aGlasir:
_bDemocratizing Urban Farming in the Borough of Trees
260 3 _bUrbanNext,
_cDecember 6, 2021.
300 _a1886 words.
500 _aContributors, Densities, Energy and sustainability, Essay, Formats, Framlab, Imminent Urban Commons, No DensityTopics.
504 _aWorld Health Organization website, https://www.who.int/news-room/fact-sheets/detail/drinking-water
504 _aThe World Bank, Agricultural Land Estimate, https://data.worldbank.org/indicator/ag.lnd.agri.zs
504 _aUnited Nations, Department of Economic and Social Affairs, https://www.un.org/development/desa/en/news/population/world-population-prospects-2017.html
504 _aUnited Nations Panel Discussion, https://www.un.org/press/en/2009/gaef3242.doc.html
504 _aOwen, J. Farming Claims Almost Half Earth’s Land, New Maps Show, National Geographics, Nationalgeographics.com, December 9, 2005
504 _aGrantham Centre for Sustainable Futures, University of Sheffield, http://grantham.sheffield.ac.uk/soil-loss-anunfolding-global-disaster/
504 _aMorales, D.J., Micha, F.R., & Weber, R.L., 1983. Two methods of valuating trees on residential sites. J. Arboric. 9, pp. 71-24
504 _aHallé, F., Oldeman, R.A.A., and Tomlinson, P.B. (1978): Tropical Trees and Forests. An Architectural Analysis. Springer-Verlag, Berlin.
504 _aNASA.org, Progressive Plant Growing is a Blooming Business, 2007
504 _aHorn, H.S. The Adaptive Geometry of Trees, 1971, Princeton University Press
504 _aJerling, L. 1985 Are plants and animals alike? A note on evolutionary plant population ecology. – Oikos 45: pp. 150-153
504 _aHarper, J.L. & Bell, A.D. 1979 The population dynamics of growth form in organisms with modular construction. IN: R.M. Anderson, B.D. Turner & L.P. Taylor (Eds.), Population dynamics. Blackwell Sci. Publ. London, pp. 29-52
504 _aVuorisalo, T. & Tuomi, J. Unitary and Modular Organisms: Criteria for Ecological Division. – Oikos 47 No. 3 (Nov., 1986), pp. 382-385
504 _aPrévost MF. Architecture de quelques Apocynacées ligneuses. Bulletin de la Société Botanique de France. Lettres Botaniques. 1967;114, pp. 24–36
504 _avon Goethe JW. La Métamorphose des plantes. Traduction de Bideau H. 1975. Paris: Editions Triades; 1790
504 _aBarthélémy, D. & Caraglio, Y. Plant Architecture: A Dynamic, Multilevel and Comprehensive Approach to Plant Form, Structure and Ontogeny, 2007, Oxford University Press
504 _aP. Prusinkiewicz, W. Remphrey: Characterization of architectural tree models using L−systems and Petri nets. In M. Labrecque (Ed.): L’arbre − The Tree 2000: Papers presented at the 4th International Symposium on the Tree, pp. 177−186
504 _aPena, J. G., Texas A&M AgriLife Extension, 2005
504 _aRitter, E & Angulo, B & Riga, Patrick & Herrán, C & Relloso, J & San Jose, M. (2001). Comparison of hydroponic and aeroponic cultivation system for the production of potato minitubers. Potato Research. 44. 127-135. 10.1007/BF02410099
504 _aKopf, D. The Economic Rise of Brooklyn, in charts, Quartz, March 28, 2017
504 _aNYC Food Policy, Food Metrics Report 2018
504 _aBellafante, G. Brooklyn’s Food Gap, New York Times Sept. 9, 2016
504 _aSegal, A. Food deserts: global crisis in New York City. Causes, impacts, and solutions. Consilience: The Journal of Sustainable Development. Vol. 3, Issue 1, 2010, pp. 197 – 214
520 _aAgriculture is the basis for civilization. From the days of relying on hunting and gathering, the practice of cultivating soil and farming animals catapulted humankind forward — unlocking profound development and prosperity. However, the ancient form of agriculture is a far cry from today’s industrialized counterpart, which has increasingly revealed its problematic downsides. For one, it is an extremely water-intensive industry. Today, the lion’s share of our planet’s precious freshwater supply is being poured into agriculture. Concurrently, WHO estimates that 844 million people lack basic drinking-water service, and that by 2025, half of the world’s population will be living in water-stressed areas [1]. Secondly, modern agriculture demands significant land area. An estimated 37% of our planet’s surface is used for farming — a number that is still growing [2]. Consequently, agriculture has historically been the prime mover for deforestation and loss of biodiversity.
653 0 0 _aDensities
653 0 0 _aEnergy and sustainability
653 0 0 _aNo density
653 0 0 _aImminent urban commons
856 4 0 _uhttps://urbannext.net/glasir-democratizing-urban-farming-in-the-borough-of-trees/
_zAccess to info
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