Economic Commission for Latin America and the Caribbean (2018). Atlas of migration in Northern Central America. Santiago.
https://repositorio.cepal.org/bitstream/handle/11362/44288/1/ S1801071_en.pdf.
Edmondson, J.L., Cunningham, H., Densley Tingley, D.O., Dobson, M.C., Grafius, D.R., Leake, J.R. et al. (2020). The hidden potential of urban horticulture. Nature Food 1(3), 155-159. https://doi. org/10.1038/s43016-020-0045-6.
Egerer, M. and Cohen, H. (eds.) (2020). Urban Agroecology: Interdisciplinary Research and Future Directions. 1st edn: CRC Press.
https://www.routledge.com/Urban-Agroecology-Interdisciplinary- Research-and-Future-Directions/Egerer-Cohen/p/book/9780367260019.
Ensor, J. and Harvey, B. (2015). Social learning and climate change adaptation: Evidence for international development practice. WIREs Climate Change 6(5), 509-522.
https://doi.org/10.1002/wcc.348.
Esmaeilian, B., Wang, B., Lewis, K., Duarte, F., Ratti, C. and Behdad, S. (2018). The future of waste management in smart and sustainable cities: A review and concept paper. Waste Management 81, 177-195.
https://doi.org/10.1016/j.wasman.2018.09.047.
European Parliament (2020). The Potential of Hydrogen for Decarbonising Steel Production. https://
www.europarl.europa.eu/RegData/etudes/BRIE/2020/641552/EPRS_BRI(2020)641552_EN.pdf.
Fernández-Álvarez, R. (2017). Inequitable distribution of green public space in Mexico City: An environmental injustice case. Economía, sociedad y territorio 17(54), 399-428. https://doi. org/10.22136/est002017697.
Ferrão, P. and Fernández, J. (2013). Sustainable Urban Metabolism. MIT Press. https://mitpress.
mit.edu/books/sustainable-urban-metabolism.
Fisher, S., Garside, B., van Epp, M., Dodman, D., D’Errico, S., Anderson, S. et al. (2016). Planning and Implementing Climate Change Responses in the Context of Uncertainty: Exploring the Importance of Social Learning and the Processes of Decision-Making. London: International Institute for Environment and Development.
https://pubs.iied.org/sites/default/files/pdfs/migrate/10172IIED.pdf.
Flavelle, C. (2020). ‘A climate plan in Texas focuses on minorities. Not everyone likes it’. New York Times July 24
https://www.nytimes.com/2020/07/24/climate/
houston-flooding-race.html.
Folke, C., Biggs, R., Norström, A.V., Reyers, B. and Rockström, J. (2016). Social-ecological resilience and biosphere-based sustainability science. Ecology and Society 21(3). https://doi. org/10.5751/ES-08748-210341.
Fonteneau, B. and Pollet, I. (2019). The Contribution of the Social and Solidarity Economy and Social Finance to the Future of Work. International Labor Organization.
https://www.ilo.org/wcmsp5/ groups/public/---ed_emp/documents/publication/wcms_739377.pdf.
Food and Agriculture Organization of the United Nations (2020). The State of Food Security and Nutrition in the World 2020. Rome.
http://www.fao.org/3/ca9692en/CA9692EN.pdf.
Food Tank (2016). World’s first urban bee highway helps save pollinators. [EcoWatch https://
www.ecowatch.com/
worlds-first-urban-bee-highway-helps-save-pollinators-1943334734.html Accessed 12 August 2021.
Foster, G. (2020). Circular economy strategies for adaptative reuse of cultural heritage buildings to reduce environmental impacts. Resources, Conservation and Recycling 152, 104507. https://doi. org/10.1016/
j.resconrec.2019.104507.
Frantzeskaki, N. (2019). Seven lessons for planning nature-based solutions in cities. Environmental Science & Policy 93, 101-111.
https://doi.org/10.1016/j.envsci.2018.12.033.
Fratini, C.F., Georg, S. and Jørgensen, M.S. (2019). Exploring circular economy imaginaries in European cities: A research agenda for the governance of urban sustainability transitions. Journal of Cleaner Production 228, 974-989.
https://doi.org/10.1016/j.jclepro.2019.04.193.
Friant, M., Vermeulen, W.J.V. and Salomone, R. (2020). A typology of circular economy discourses: Navigating the diverse visions of a contested paradigm. Resources, Conservation and Recycling 161, 104917.
https://doi.org/10.1016/j.resconrec.2020.104917.
Friend, R. and Moench, M. (2015). Rights to urban climate resilience: moving beyond poverty and vulnerability. WIREs Climate Change 6(6), 643-651.
https://doi.org/10.1002/wcc.364.
Fu, Q. (2019). How does the neighborhood inform activism? Civic engagement in urban transformation. Journal of Environmental Psychology 63, 1-8.
https://doi.org/10.1016/j. jenvp.2019.03.002.
García-Guaita, F., González-García, S., Villanueva-Rey, P., Moreira, M.T. and Feijoo, G. (2018). Integrating urban metabolism, material flow analysis and life cycle assessment in the environmental evaluation of Santiago de Compostela. Sustainable Cities and Society 40, 569-580.
https://doi.org/10.1016/j.scs.2018.04.027.
Georgescu-Roegen, N. (1971). The Entropy Law and the Economic Process. Harvard University Press.
https://www.hup.harvard.edu/catalog.php?isbn=9780674281653.
Georgescu-Roegen, N. (1975). Energy and economic myths. Southern Economic Journal 41(3).
https://doi.org/10.2307/1056148.
Ghisellini, P., Cialani, C. and Ulgiati, S. (2016). A review on circular economy: the expected transition to a balanced interplay of environmental and economic systems. Journal of Cleaner Production 114, 11-32.
https://doi.org/10.1016/j.jclepro.2015.09.007.
Ghisolfi, V., Diniz Chaves, G.d.L., Ribeiro Siman, R. and Xavier, L.H. (2017). System dynamics applied to closed loop supply chains of desktops and laptops in Brazil: A perspective for social inclusion of waste pickers. Waste Management 60, 14-31.
https://doi.org/10.1016/j. wasman.2016.12.018.
Giampietro, M. and Funtowicz, S.O. (2020). From elite folk science to the policy legend of the circular economy. Environmental Science & Policy 109, 64-72.
https://doi.org/10.1016/j. envsci.2020.04.012
Global Alliance for Buildings and Construction, International Energy Agency and United Nations Environment Programme (2020a). GlobalABC Regional Roadmap for Buildings and Construction in Latin America: Towards a Zero-Emission, Efficient and Resilient Buildings and Construction Sector. Paris: International Energy Agency.
https://globalabc.org/sites/default/files/inline-files/2.%20GlobalABC_ Regional_Roadmap_for_Buildings_and_Construction_in_Latin_America_2020-2050.pdf
Global Alliance for Buildings and Construction, International Energy Agency and United Nations Environment Programme (2020b). GlobalABC Roadmap for Buildings and Construction: Towards a Zero-Emission, Efficient and Resilient Buildings and Construction Sector. Paris: International Energy Agency.
https://globalabc.org/sites/default/files/inline-files/1.%20GlobalABC_Roadmap_for_ Buildings_and_Construction_2020-2050.pdf
Global Environment Facility (2020). Sustainable Cities Impact Program.
https://www.thegef.org/ sites/default/files/publications/gef_impact_program_cities_2020_04.pdf.
Goddard, M.A., Dougill, A.J. and Benton, T.G. (2010). Scaling up from gardens: Biodiversity conservation in urban environments. Trends in Ecology & Evolution 25(2), 90-98. https://doi. org/10.1016/
j.tree.2009.07.016.
Gómez-Álvarez, D., Rajack, R.M., López-Moreno, E. and Lanfranchi, G. (eds.) (2017). Steering the Metropolis: Metropolitan Governance for Sustainable Urban Development: Inter-American Development Bank.
https://publications.iadb.org/en/steering-metropolis-metropolitan- governance-sustainable-urban-development.
Gómez-Moreno, F.J., Artíñano, B., Ramiro, E.D., Barreiro, M., Núñez, L., Coz, E. et al. (2019). Urban vegetation and particle air pollution: Experimental campaigns in a traffic hotspot. Environmental Pollution 247, 195-205.
https://doi.org/10.1016/j.envpol.2019.01.016.
Greenfield, P. (2020). ‘Sweet City’: The Costa Rica suburb that gave citizenship to bees, plants and trees’. The Guardian 29 April 2020.
https://www.theguardian.com/environment/2020/apr/29/ sweet-city-the-costa-rica-suburb-that-gave-citizenship-to-bees-plants-and-trees-aoe.
Grimmond S., Xu, T. and Baklanov, A. (2014). Towards integrated urban weather, environment and climate services. WMO Bulletin 63(1), 10-14.
https://public.wmo.int/en/resources/bulletin/ towards-integrated-urban-weather-environment-and-climate-services
Grönholm, S. (2020). Governing the Baltic Sea. A Study of the Functionality of Contemporary Environmental Governance. Åbo Akademi University
https://www.doria.fi/bitstream/ handle/10024/175479/gronholm_sam.pdf?sequence=1&isAllowed=y
Gu, Z., Liu, Z., Cheng, Q. and Saberi, M. (2018). Congestion pricing practices and public acceptance: A review of evidence. Case Studies on Transport Policy 6(1), 94-101. https://doi. org/10.1016/j.cstp.2018.01.004.
Guibrunet, L., Sanzana Calvet, M. and Castán Broto, V. (2017). Flows, system boundaries and the politics of urban metabolism: Waste management in Mexico City and Santiago de Chile. Geoforum 85, 353-367.
https://doi.org/10.1016/j.geoforum.2016.10.011.
Guo, Y., Su, J.G., Dong, Y. and Wolch, J. (2019). Application of land use regression techniques for urban greening: An analysis of Tianjin, China. Urban Forestry & Urban Greening 38, 11-21. https://
doi.org/10.1016/j.ufug.2018.10.013.
Haines, A., Smith, K.R., Anderson, D., Epstein, P.R., McMichael, A.J., Roberts, I. et al. (2007). Policies for accelerating access to clean energy, improving health, advancing development, and mitigating climate change. Lancet 370(9594), 1264-1281.
https://doi.org10.1016/s0140- 6736(07)61257-4.
Hajek, P. (2017). Concrete structures for sustainability in a changing world. Procedia Engineering, 171: 207 – 2014.
https://doi.org/10.1016/j.proeng.2017.01.328
Hamidi, S., Sabouri, S. and Ewing, R. (2020). Does density aggravate the COVID-19 pandemic? Early findings and lessons for planners. Journal of the American Planning Association 86(4), 495- 509.
https://doi.org/10.1080/01944363.2020.1777891.
Hanaček, K., Roy, B., Avila, S. and Kallis, G. (2020). Ecological economics and degrowth: Proposing a future research agenda from the margins. Ecological Economics 169, 106495. https://
doi.org/10.1016/j.ecolecon.2019.106495.
He, S. (2015). Right to the city: A liberal-democratic perspective. In International Encyclopedia of the Social & Behavioral Sciences. Wright, J.D. (ed.). Oxford: Elsevier. 673-679. https://www.
sciencedirect.com/science/article/pii/B9780080970868740669
Helgeson, B. and Peter, J. (2020). The role of electricity in decarbonizing European road transport – Development and assessment of an integrated multi-sectoral model. Applied Energy 262, 114365.
https://doi.org/10.1016/j.apenergy.2019.114365.
Hepburn, C., O’Callaghan, B., Stern, N., Stiglitz, J. and Zenghelis, D. (2020). Will COVID-19 fiscal recovery packages accelerate or retard progress on climate change? Oxford Review of Economic Policy 36(1), S359-S381.
https://doi.org/10.1093/oxrep/graa015.
Heynen, N., Kaika, M. and Swyngedouw, E. (2006). Urban political ecology – politicising the production of urban natures. In In the Nature of Cities – Urban Political Ecology and the Politics of Urban Metabolism. London: Routledge. 1-20.
https://www.taylorfrancis.com/chapters/ edit/10.4324/9780203027523-8/urban-political-ecology-politicizing-production-urban-natures- nik-heynen-maria-kaika-erik-swyngedouw
Hölscher, K., Frantzeskaki, N., McPhearson, T. and Loorbach, D. (2019). Capacities for urban transformations governance and the case of New York City. Cities 94, 186-199. https://doi. org/10.1016/
j.cities.2019.05.037.
Honey-Rosés, J., Anguelovski, I., Chireh, V.K., Daher, C., Konijnendijk van den Bosch, C., Litt, J.S. et al. (2020). The impact of COVID-19 on public space: an early review of the emerging questions – design, perceptions and inequities. Cities & Health, 1-17.
https://doi.org/10.1080/23748834.2 020.1780074.
Hoornweg, D., Hosseini, M., Kennedy, C. and Behdadi, A. (2016). An urban approach to planetary boundaries. AMBIO 45(5), 567-580.
https://doi.org/10.1007/s13280-016-0764-y.
Houston, D., Hillier, J., MacCallum, D., Steele, W. and Byrne, J. (2017). Make kin, not cities! Multispecies entanglements and ‘becoming-world’ in planning theory. Planning Theory 17(2), 190- 212.
https://doi.org/10.1177/1473095216688042.
Hunter, R.F., Cleary, A. and Braubach, M. (2019). Environmental, health and equity effects of urban green space interventions. In Biodiversity and Health in the Face of Climate Change. Cham: Springer. 381-409.
https://link.springer.com/chapter/10.1007/978-3-030-02318-8_17#citeas
Ibraeva, A., Correia, G.H.d.A., Silva, C. and Antunes, A.P. (2020). Transit-oriented development: A review of research achievements and challenges. Transportation Research Part A: Policy and Practice 132, 110-130.
https://doi.org/10.1016/j.tra.2019.10.018.
ICLEI – Local Governments for Sustainability (2018). Cities and Regions Talanoa Dialogues: Leveraging Subnational Action to Raise Climate Ambition. Bonn.
http://e-lib.iclei.org/wp-content/ uploads/2018/12/Cities-and-Regions-Talanoa-Dialogues-2018-ICLEI.pdf.
ICLEI – Local Governments for Sustainability and Cities Biodiversity Center (2020). Overview of Achievements Following the Adoption of Decision X/22: The Plan of Action on Subnational Governments, Cities and Other Local Authorities for Biodiversity. https://
subnationaladvocacyfornature.org/site/wp-content/uploads/2020/07/ICLEI-CBC-Overview-of- Decision-X-22-Achievements_June-2020.pdf.
Intergovernmental Panel on Climate Change (2018). Summary for policymakers. In Global Warming of 1.5°C. An IPCC Special Report on the impacts of Global Warming Of 1.5°C Above Pre-Industrial Levels and Related Global Greenhouse Gas Emission Pathways, In the Context of Strengthening the Global Response to the Threat of Climate Change, Sustainable Development, and Efforts to Eradicate Poverty. Masson-Delmotte, V., P. Zhai, H.-O. Pörtner, D. Roberts, J. Skea, P.R. Shukla et al. (eds.).
https://www.ipcc.ch/site/assets/uploads/sites/2/2019/05/SR15_SPM_ version_report_LR.pdf
International Panel on Social Progress (2018). Rethinking Society for the 21st Century. Cambridge:
Cambridge University Press.
https://www.cambridge.org/core/books/rethinking-society-for-the- 21st-century/046E7282B2B3DC56C16A3C02E4082D1B.
International Resource Panel (2018). The Weight of Cities. Swilling, M., Hajer, M., Baynes, T., Bergesen, J., Labbé, F., Musango, J.K. et al. (eds.). Nairobi: United Nations Environment Programme.
https://www.resourcepanel.org/reports/weight-cities.
International Telecommunications Network (2020). Key Performance Indicators for Smart Sustainable Cities.
https://www.itu.int/en/ITU-T/ssc/Pages/
KPIs-on-SSC.aspx.
Inturri, G., Ignaccolo, M., Le Pira, M., Caprì, S. and Giuffrida, N. (2017). Influence of accessibility, land use and transport policies on the transport energy dependence of a city. Transportation Research Procedia 25, 3273-3285.
https://doi.org/10.1016/j.trpro.2017.05.165.
Jackson, T. (2016). Prosperity without growth. Foundations for the economy of tomorrow. 2nd edn.
London: Routledge.
https://www.routledge.com/Prosperity-without-Growth-Foundations-for-the- Economy-of-Tomorrow/Jackson/p/book/9781138935419.
Jackson, T. (2021). Post Growth: Life after Capitalism. Cambridge: Polity Press. https://www.wiley. com/en-ad/Post+Growth%3A+Life+after+Capitalism-p-9781509542536
Jephcote, C., Chen, H. and Ropkins, K. (2016). Implementation of the Polluter-Pays Principle (PPP) in local transport policy. Journal of Transport Geography 55, 58-71.
https://doi.org/10.1016/j. jtrangeo.2016.06.017.
John, B., Luederitz, C., Lang, D.J. and von Wehrden, H. (2019). Toward sustainable urban metabolisms. From system understanding to system transformation. Ecological Economics 157, 402-414.
https://doi.org/10.1016/j.ecolecon.2018.12.007.
Kakwani, N.S. and Kalbar, P.P. (2020). Review of circular economy in urban water sector: challenges and opportunities in India. Journal of Environmental Management 271, 111010. https://
doi.org/10.1016/j.jenvman.2020.111010.
90
GEO for Cities
Page 1 |
Page 2 |
Page 3 |
Page 4 |
Page 5 |
Page 6 |
Page 7 |
Page 8 |
Page 9 |
Page 10 |
Page 11 |
Page 12 |
Page 13 |
Page 14 |
Page 15 |
Page 16 |
Page 17 |
Page 18 |
Page 19 |
Page 20 |
Page 21 |
Page 22 |
Page 23 |
Page 24 |
Page 25 |
Page 26 |
Page 27 |
Page 28 |
Page 29 |
Page 30 |
Page 31 |
Page 32 |
Page 33 |
Page 34 |
Page 35 |
Page 36 |
Page 37 |
Page 38 |
Page 39 |
Page 40 |
Page 41 |
Page 42 |
Page 43 |
Page 44 |
Page 45 |
Page 46 |
Page 47 |
Page 48 |
Page 49 |
Page 50 |
Page 51 |
Page 52 |
Page 53 |
Page 54 |
Page 55 |
Page 56 |
Page 57 |
Page 58 |
Page 59 |
Page 60 |
Page 61 |
Page 62 |
Page 63 |
Page 64 |
Page 65 |
Page 66 |
Page 67 |
Page 68 |
Page 69 |
Page 70 |
Page 71 |
Page 72 |
Page 73 |
Page 74 |
Page 75 |
Page 76 |
Page 77 |
Page 78 |
Page 79 |
Page 80 |
Page 81 |
Page 82 |
Page 83 |
Page 84 |
Page 85 |
Page 86 |
Page 87 |
Page 88 |
Page 89 |
Page 90 |
Page 91 |
Page 92 |
Page 93 |
Page 94 |
Page 95 |
Page 96 |
Page 97 |
Page 98 |
Page 99 |
Page 100 |
Page 101 |
Page 102 |
Page 103 |
Page 104 |
Page 105 |
Page 106 |
Page 107 |
Page 108 |
Page 109 |
Page 110 |
Page 111 |
Page 112 |
Page 113 |
Page 114 |
Page 115 |
Page 116 |
Page 117 |
Page 118 |
Page 119 |
Page 120 |
Page 121 |
Page 122 |
Page 123 |
Page 124 |
Page 125 |
Page 126 |
Page 127 |
Page 128 |
Page 129 |
Page 130 |
Page 131 |
Page 132 |
Page 133 |
Page 134 |
Page 135 |
Page 136 |
Page 137 |
Page 138 |
Page 139 |
Page 140 |
Page 141 |
Page 142 |
Page 143 |
Page 144 |
Page 145 |
Page 146