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40. Sauer S (2018) Soy expansion into the agricultural frontiers of the Brazilian Amazon: the
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https://doi.org/10.1016/j.landusepol.2018.08.030
41. Scott J (2011) Social network analysis: developments, advances, and prospects. Soc Netw Anal
Min 1:21–26
42. Sharma P, Kumar SN (2020) The global governance of water, energy, and food nexus: allocation
and access for competing demands. Int Environ Agreements Polit Law Econ 20:377–391
43. Törnberg A, Törnberg P (2016) Muslims in social media discourse: combining topic modeling
and critical discourse analysis. Discourse Context Media 13:132–142
44. Travassos LRFC, Zioni SM, Torres PHC, de Souza Fernandes B, Araujo GM (2020) Heterogeneity and spatial fragmentation in the Sao Paulo macrometropolis: the production of borders
and holes. Ambient Soc 23:e01801
45. United Nations (2018) Methodology for assessing the water-food-energy-ecosystem nexus in
transboundary basins and experiences from its application
46. United Nations, Department of Economic and Social Affairs, Population Division (2017)
World population prospects: the 2017 revision, methodology of the United Nations population
estimates and projections. New York
47. Urbinatti AM, Benites-Lazaro LL, de Carvalho CM, Giatti LL (2020a) The conceptual basis of
water-energy-food nexus governance: systematic literature review using network and discourse
analysis. J Integr Environ Sci 1–23
48. Urbinatti AM, Dalla Fontana M, Stirling A, Giatti LL (2020b) ‘Opening up’ the governance
of water-energy-food nexus: towards a science-policy-society interface based on hybridity and
humility. Sci Total Environ 744:140945
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143
28. Laurance WF, Sayer J, Cassman KG (2014) Agricultural expansion and its impacts on tropical
nature. Trends Ecol Evol. https://doi.org/10.1016/j.tree.2013.12.001
29. Lee M, Keller AA, Chiang PC, Den W, Wang H, Hou CH, Wu J, Wang X, Yan J (2017)
Water-energy nexus for urban water systems: a comparative review on energy intensity and
environmental impacts in relation to global water risks. Appl Energy. https://doi.org/10.1016/
j.apenergy.2017.08.002
30. Leppink J, Pérez-Fuster P (2019) Social networks as an approach to systematic review. Health
Prof Educ 5:218–224
31. MDIC—Ministério da indústria comércio exterior e Serviços (2020) Balança Comercial
[WWW document]. Balança Comer
32. Merton RK (1968) The matthew effect in science. Science (80-) 159:56–63
33. Milgram S (1967) Small world problem. Psychol Today 2:60–67
34. Mischen P, Jackson S (2008) Connecting the dots: applying complexity theory, knowledge
management and social network analysis to policy implementation. Public Adm Q 32:314–338
35. Nascimento N, Ometto JP (2019) Governança ambiental do Nexus-Água, Alimento e Energia:
proposta metodológica para análise baseada em Redes bayesianas aplicada na Macrometrópole
Paulista. In: I Fórum de Governança Ambiental Da Macrometrópole Paulista. São Paulo, pp
145–149
36. Ouda S, Zohry AE-H, Noreldin T, Ouda S, Zohry AE-H (2020) Water scarcity leads to food
insecurity. In: Deficit irrigation. Springer International Publishing, pp 1–13. https://doi.org/10.
1007/978-3-030-35586-9_1
37. Porkka M, Gerten D, Schaphoff S, Siebert S, Kummu M (2016) Causes and trends of water
scarcity in food production. Environ Res Lett 11:015001. https://doi.org/10.1088/1748-9326/
11/1/015001
38. Ray DK, West PC, Clark M, Gerber JS, Prishchepov AV, Chatterjee S (2019) Climate change
has likely already affected global food production. PLoS ONE 14:e0217148. https://doi.org/
10.1371/journal.pone.0217148
39. Renard D, Tilman D (2019) National food production stabilized by crop diversity. Nature
571:257–260. https://doi.org/10.1038/s41586-019-1316-y
40. Sauer S (2018) Soy expansion into the agricultural frontiers of the Brazilian Amazon: the
agribusiness economy and its social and environmental conflicts. Land Use Policy 79:326–338.
https://doi.org/10.1016/j.landusepol.2018.08.030
41. Scott J (2011) Social network analysis: developments, advances, and prospects. Soc Netw Anal
Min 1:21–26
42. Sharma P, Kumar SN (2020) The global governance of water, energy, and food nexus: allocation
and access for competing demands. Int Environ Agreements Polit Law Econ 20:377–391
43. Törnberg A, Törnberg P (2016) Muslims in social media discourse: combining topic modeling
and critical discourse analysis. Discourse Context Media 13:132–142
44. Travassos LRFC, Zioni SM, Torres PHC, de Souza Fernandes B, Araujo GM (2020) Heterogeneity and spatial fragmentation in the Sao Paulo macrometropolis: the production of borders
and holes. Ambient Soc 23:e01801
45. United Nations (2018) Methodology for assessing the water-food-energy-ecosystem nexus in
transboundary basins and experiences from its application
46. United Nations, Department of Economic and Social Affairs, Population Division (2017)
World population prospects: the 2017 revision, methodology of the United Nations population
estimates and projections. New York
47. Urbinatti AM, Benites-Lazaro LL, de Carvalho CM, Giatti LL (2020a) The conceptual basis of
water-energy-food nexus governance: systematic literature review using network and discourse
analysis. J Integr Environ Sci 1–23
48. Urbinatti AM, Dalla Fontana M, Stirling A, Giatti LL (2020b) ‘Opening up’ the governance
of water-energy-food nexus: towards a science-policy-society interface based on hybridity and
humility. Sci Total Environ 744:140945
49. Varone F, Ingold K, Jourdain C (2017) Studying policy advocacy through social network
analysis. Eur Polit Sci 16:322–336
