[1]

Kaabache R. 2019. Determinants and incidence of animal protein consumption, case of Algeria. Tributaries Journal 3(2):1−11

[2]

Espinoza A, Gonzalez-Galvan OS. 2019. Acts of the 2019 student conference center for public policy analysis. University of Laval, Quebec city, QC, Canada

[3]

Noacco ASM, Hugol-Gential C. 2018. From the dietary representation of cancer patients to changing their diet. Clinical Nutrition and Metabolism 32(4):266

[4]

Darmon N, Carlin G. 2013. Food and social health inequalities in France. Nutrition and Diet Notebooks 48(5):233−39

[5]

Friedman M. 1996. Nutritional value of proteins from different food sources: A review. Journal of Agricultural and Food Chemistry 44:6−29

doi: 10.1021/jf9400167
[6]

Cai J, Chen Z, Wu W, Lin Q, Liang Y. 2022. High animal protein diet and gut microbiota in human health. Critical Reviews in Food Science and Nutrition 62(12):6225−37

doi: 10.1080/10408398.2021.1898336
[7]

Ponka R, Goudoum A, Tchungouelieu AC, Fokou E. 2016. Nutritional evaluation of some ingredients used in the food formulation of laying hens and pigs on a livestock farm in North-West Cameroon. International Journal of Biological and Chemical Sciences 10(5):2073−80

[8]

Fardet A. 2014. Our meat consumption: are we well informed? Conference - debate, INRA, 2014, Auvergne, France. https://doi.org/10.13140/2.1.3593.7280

[9]

Nys Y, Jondreville C, Chemaly M, Roudaut B. 2018. Quality of table eggs. In Animal feed and quality of their products, ed. Info C. Paris, France: Tec & Doc Lavoisier. pp. 315−38.

[10]

Grigg D. 1995. The pattern of world protein consumption. Geoforum 26(1):1−17

doi: 10.1016/0016-7185(94)00020-8
[11]

Tilman D, Clark M. 2014. Global diets link environmental sustainability and human health. Nature 515:518−22

doi: 10.1038/nature13959
[12]

Godfray HCJ, Aveyard P, Garnett T, Hall JW, Key TJ, et al. 2018. Meat consumption, health, and the environment. Science 361:eaam5324

doi: 10.1126/science.aam5324
[13]

Pangui LJ, Kaboret YY. 2013. Impacts of the evolution of the consumption of animal proteins on livestock farming and breeders in the countries of the South. Bulletin of the French Veterinary Academy 166(4):302−8

[14]

Semba RD, Ramsing R, Rahman N, Kraemer K, Bloem MW. 2021. Legumes as a sustainable source of protein in human diets. Global Food Security 28:100520

doi: 10.1016/j.gfs.2021.100520
[15]

Medek DE, Schwartz J, Myers SS. 2017. Estimated effects of future atmospheric CO2 concentrations on protein intake and the risk of protein deficiency by country and region. Environmental Health Perspectives 125:087002

doi: 10.1289/EHP41
[16]

Diallo MA, Barry MB, Weibigue AG. 2021. Impact of climate change on the milk yield of small ruminants in Senegal. African Agronomy 33(3):273−82

[17]

Pradhan BK, Ghosh J. 2019. Climate policy vs. agricultural productivity shocks in a dynamic computable general equilibrium (CGE) modeling framework:the case of a developing economy. Economic Modelling 77:55−69

doi: 10.1016/j.econmod.2018.05.019
[18]

World Bank Data. 2020. Statistics and data for all European countries. https://donneesmondiales.com

[19]

Tchaker FZ. 2021. Ecotoxicology and residue analysis. People's Democratic Republic of Algeria. Course handout. pp. 1−126. http://dspace.univ-medea.dz/bitstream/123456789/8807/1/cour%2027%20polycopie%20Ecotoxicologie%20et%20analyse%20des%20r%C3%A9sidus%20-%20M1%20-%20Fatma%20Zohra%20TCHAKER.PDF

[20]

FAO. 2020. World meat production. FAO: World meat production in 2018 - Swine news - pig333, pig to pork community. www.pig333.com/latest_swine_news/world-meat-production-increased-45-in-the-last-20-years_18926/

[21]

IPCC. 2014. Global Warming Potential Values. Fifth assessment. Greenhouse Gas Protocol. Cambridge University Press, Cambridge, United Kingdom and New York, USA. 1535 pp. www.ipcc.ch/site/assets/uploads/2018/02/WG1AR5_Chapter08_FINAL.pdf

[22]

Seguin B, Soussana JB. 2008. Greenhouse gas emissions and climate change: causes and consequences observed for agriculture and livestock farming. Le Courrier de l'environnement de l'INRA 55(55):79−91

[23]

Henry RJ. 2020. Innovations in plant genetics adapting agriculture to climate change. Current Opinion in Plant Biology 56:168−73

doi: 10.1016/j.pbi.2019.11.004
[24]

Food and Agriculture Organization of the United Nations (FAO). 2017. The future of food and agriculture – Trends and challenges. Roma, Italy. 38. PNNS.

[25]

Caillavet F, Fadhuile A, Nichèle V. 2019. The evolution of the consumption of animal products in France: multiple challenges INRA Prod. Animals 32(2):131−46

[26]

Bruns MA. 2023. Ruminant Methanogens as a Climate Change Target. American Society for Microbiology. Department of Ecosystem Science and Management at The Pennsylvania State University and a member of ASM's Climate Change Task Force.

[27]

OECD/FAO. 2021. OECD-FAO Agricultural Outlook, OECD Agricultural Statistics (database). http://dx.doi.org/10.1787/agr-outl-data-en

[28]

Food and Agriculture Organization of the United Nations (FAO). 2023. Livestock and the environment.

[29]

Greenpeace. 2022. Agriculture: 70% of agricultural land to feed animals. www.soulution.fr/lagriculture-en-quelques-chiffres/#

[30]

Sakli J. 2016. Modeling and assessment of vulnerabilities and risks in supply chains. Doctoral Thesis. University of Aix Marseille, France.

[31]

Barbieri A. 2016. Longitudinal methods for the analysis of health-related quality of life in oncology. Montpellier University. pp. 1–231. https://theses.hal.science/tel-02182037

[32]

UN. 2022. Five things to know about greenhouse gases that warm the planet. https://news.un.org/en/story/2022/01/1109322

[33]

FAO. 2016. Livestock and climate change. FAO's response to climate change and livestock. www.fao.org/3/i6171e/i6171e.pdf

[34]

European Environment Agency (EEA). 2021. Indicator Assessment: Average Precipitation, Production Identification No: IND-91-fr, Average precipitation. European Environment Agency (europa. eu). https://climate.copernicus.eu/esotc/2021/precipitations

[35]

Haylock MR, Hofstra N, Klein Tank AMG, Klok EJ, Jones PD, et al. 2008. A European daily high-resolution gridded data set of surface temperature and precipitation for 1950–2006. Journal of Geophysical Research:Atmospheres 113:D20119

doi: 10.1029/2008jd010201
[36]

Meseguer-Ruiz O, Olcina Cantos J. 2023. Climate change in two Mediterranean climate areas (Spain and Chile): evidences and projections. Investigaciones Geográficas 79:9−31

doi: 10.14198/ingeo.24093
[37]

Badameli A, Dubreuil V. 2015. Diagnosis of climate change in Togo through the evolution of temperature between 1961 and 2010. XXVIII Conference of the International Association of Climatology, Liegepp. pp. 421−26.

[38]

Chazarra-Bernabé A, Lorenzo Mariño B, Romero Fresneda R, Moreno García JV. 2022. Evolución de los climas de Köppen en España en el periodo 1951-2020. Notas técnicas 37 de AEMET. Agencia Estatal de Meteorología. https://doi.org/10.31978/666-22-011-4

[39]

Stern JP. 2020. Methane emissions from natural gas and LNG imports: An increasingly urgent issue for the future of gas in Europe. OIES Paper: NG, No. 165. The Oxford Institute for Energy Studies, Oxford.

[40]

European Commission. 2020. Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions. Strengthening Europe's 2030 Climate Ambition, COM (2020) 562 final. Brussels, 17.9. 2020. https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52020DC0562

[41]

Oil & Gas Methane Partnership (OGMP). 2020. Mineral Methane Initiative OGMP2.0 Framework, November 19, 2020. www.anigas.it/wp-content/uploads/2020/07/OGMP-2.0-Reporting-Framework-final-draft.pdf

[42]

Soundous B. 2022. Evaluation of the consumption of foodstuffs of animal origin in the wilaya of Batna. Master's Thesis. University of Mohamed Khider, Biskra city, Algeria

[43]

Qi Z, Zhou X, Tian L, Zhang H, Cai L, et al. 2022. Distribution of mycotoxin-producing fungi in major rice-growing areas in China. Food Control 134:108572

doi: 10.1016/j.foodcont.2021.108572
[44]

Ali I, Sun H, Tariq G, Ali H, Baz K, et al. 2022. Asymmetric impact of coal and gas on carbon dioxide emission in six Asian countries: using asymmetric and non-linear approach. Journal of Cleaner Production 367:132934

doi: 10.1016/j.jclepro.2022.132934
[45]

Etokakpan MU, Solarin SA, Yorucu V, Bekun FV, Sarkodie SA. 2020. Modeling natural gas consumption, capital formation, globalization, CO2 emissions and economic growth nexus in Malaysia: fresh evidence from combined cointegration and causality analysis. Energy Strategy Reviews 31:100526

doi: 10.1016/j.esr.2020.100526
[46]

Cheshire PC, Magrini S. 2006. Population growth in European cities: weather matters – but only nationally. Regional Studies 40:23−37

doi: 10.1080/00343400500449259
[47]

Rosenthal PA. 2009. Biopolitics put to the test of world population growth, life of ideas, France. pp. 1−10. https://sciencespo.hal.science/hal-01045113

[48]

Bouzou N. 2021. Demography: why the (global) decline in the birth rate is a problem. www.europe1.fr/politique/baisse-de-la-natalite-une-transition-demographique-mondiale-4080914

[49]

Bloom DE. 2020. Demographics can be a powerful driver of the process and pace of economic development. Finance and Development, International Monetary Fund, Washington DC, USA. pp. 5−9. www.imf.org/external/pubs/ft/fandd/fre/2020/03/pdf/fd0320f.pdf

[50]

Jouve P. 2006. Agrarian transition: demographic growth, an opportunity or a constraint? Contemporary Africa 1(217):43−54

[51]

Guy EE, Roch ML. 2020. Sociocultural forms of malnutrition in children under five in the commune of Karimama in northern Benin. European Scientific Journal 16(16):73−97

doi: 10.19044/esj.2020.v16n16p73
[52]

Clark G, Moonen T, Nunley J. 2018. A history of our cities: Europe and its urban development from 1970 to 2020. European Investment Bank. www.eib.org/attachments/general/city_transformed_the_story_of_your_city_en.pdf

[53]

Larrière C. 2019. Nature in the city: conversation between a philosopher and an architect. In The dream city of philosophers, ed. Eltchaninoff M. Philo Éditions. 191 pp. https://theconversation.com/de-la-nature-en-ville-conversation-entre-une-philosophe-et-un-architecte-110370

[54]

Luo H, Yu X. 2020. Meat Consumption, Dietary Structure and Nutrition Transition in China. Global Food Discussion Paper 147, University of Goettingen. www.uni-goettingen.de/de/213486.html

[55]

GFK Purchasing Power Europe. 2020. Decline in purchasing power in Europe of 773 euros in 2020. www.gfk.com/fr/press/pouvoir-acaht-Europe-2020-France

[56]

INSEE. National Institute for Statistics and Studies. 2023. Birth rate and fertility in the European Union: Annual data from 1999 to 2021. https://www.insee.fr/fr/statistiques/2381396

[57]

INSEE. National Institute of Statistics and Studies. 2021. Historic drop in GDP, but resilience of household purchasing power. Les comptes de la nation, (1860). pp. 1−4. www.insee.fr/fr/statistiques/5387891

[58]

United Nations Conference on Trade and Development (UNCTAD). 2021. World Investment Report: Investing in Sustainable Recovery. https://unctad.org/publication/world-investment-report-2021

[59]

Vegconomist. 2022. Vegan food will be at the forefront of the largest Spanish conference on the hospitality sector. The Vegan Economy Magazine. https://vegconomist.fr/salons-et-evenements/lalimentation-vegetalienne-sera-au-premier-plan-de-la-plus-grande-conference-espagnole-sur-le-secteur-de-lhotellerie/

[60]

Miassi YE, Dossa FK, Zannou O, Akdemir Ş, Koca I, et al. 2022. Socio-cultural and economic factors affecting the choice of food diet in West Africa: a two-stage Heckman approach. Discover Food 2:16

doi: 10.1007/s44187-022-00017-5
[61]

Association Française de Zootechnie. 2016. Decline in the consumption of animal proteins - Outlook 2025 French association for animal production. www.zootechnie.fr/actualites/114-baisse-de-la-consommation-de-prot%C3%A9ines-animales-en-france-perspectives-2025.html

[62]

National Health Nutrition Plan (PNNS). 2017. Revision of nutritional guidelines for adults. https://quoidansmonassiette.fr/pnns-2017-2021-revision-des-reperes-nutritionnels-pour-les-adultes/

[63]

Dossa KF, Enete AA, Miassi YE, Omotayo AO. 2023. Economic analysis of sesame (Sesamum indicum L.) production in Northern Benin. Frontiers in Sustainable Food Systems 6:1015122

doi: 10.3389/fsufs.2022.1015122
[64]

Miassi YE, Akdemir Ş, Dossa KF, Omotayo AO. 2023. Technical efficiency and constraints related to rice production in West Africa: the case of Benin Republic. Cogent Food & Agriculture 9:2191881

doi: 10.1080/23311932.2023.2191881
[65]

Chouinard Y. 2002. Production and emission of methane and carbon dioxide by ruminants. 65th Congress of the Order of Agronomists of Québec, Climate change: understanding to act better, Québec, 2002.

[66]

Palangi V, Lackner M. 2022. Management of enteric methane emissions in ruminants using feed additives: A review. Animals 12(24):3452

doi: 10.3390/ani12243452
[67]

Aiking H. 2014. Protein production: planet, profit, plus people? The American Journal of Clinical Nutrition 100:483S−489S

doi: 10.3945/ajcn.113.071209
[68]

Romdhani A. 2021. A dynamic of usage conflicts. The role of value recognition in herding conflicts. Canadian Journal of Regional Science 44(3):121−29

[69]

Diop S, Niang PN. 2022. Analysis of the determinants of the choice of household meat supply in Dakar (Senegal). Revue Marocaine des Sciences Agronomiques et Vétérinaires 10(4):524−29

[70]

Gurevitch J, Scheiner SM, Fox GA. 2020. Climate, plants, and climate change. The Ecology of Plants. 3rd Edition. Oxford: Oxford University Press. https://doi.org/10.1093/hesc/9781605358291.003.0020

[71]

Jean-Louis C. 2018. Vegetable proteins as alternatives to animal proteins. How to increase their level of quality? Montpellier Academy of Sciences and Letters, Canada. www.ac-sciences-lettres-montpellier.fr/academie_edition/fichiers_conf/CUQ-2018-TOULOUSE.pdf