| [1] | Petrobras, A. (2025) Petrobras Achieves Record Pre-Salt Production in 2024 and Reports the Highest Refinery Utilization Factor in 10 Years. https://agencia.petrobras.com.br/en/w/negocio/petrobras-atinge-recordes-na-producao-do-pre-sal-em-2024-e-tem-maior-fator-de-utilizacao-das-suas-refinarias-em-10-anos
|
| [2] | Clima Info (2025) Estudo identifica 25 novos impactos da exploração do pré-sal. https://climainfo.org.br/2025/04/03/estudo-identifica-25-novos-impactos-da-exploracao-do-pre-sal/
|
| [3] | Petrobras, A. (2025) Petrobras Reaches 2024 Annual Production Target. https://agencia.petrobras.com.br/en/w/negocio/petrobras-atinge-meta-de-producao-anual-de-2024
|
| [4] | Mann, R. (2025) Brazil’s Oil Production Dips 2% in January as Natural Gas Output Rises. https://www.riotimesonline.com/brazils-oil-production-dips-2-in-january-as-natural-gas-output-rises/
|
| [5] | GECF (2025) Global Gas Outlook 2050. https://www.gecf.org/insights/global-gas-outlook?d=2025&p=1
|
| [6] | BNDES (2021) Gás para o Desenvolvimento: Perspectiva de Oferta e Demanda no Mercado de Gás Natural no Brasil. https://web.bndes.gov.br/bib/jspui/bitstream/1408/20581/1/Relatorio_Gas_Desenvolvimento Final.pdf
|
| [7] | ABEAGÁS (2024) Reinjeção desnecessária de gás tende a levar a aumento de custos no futuro. https://www.abegas.org.br/arquivos/92694
|
| [8] | MME (2024) Relatório do Grupo de Trabalho do Programa Gás para Empregar—Comitê 1. https://www.gov.br/mme/pt-br/assuntos/secretarias/petroleo-gas-natural-e-biocombustiveis/gas-para-empregar/relatorio-dos-comites-tematicos/relatorio_comite_1_vf.pdf/view
|
| [9] | Reuters (2024) Petrobras buscará reduzir reinjeção de gás o ‘máximo possível’, diz Chambriard. https://www.cnnbrasil.com.br/economia/macroeconomia/petrobras-buscara-reduzir-reinjecao-de-gas-o-maximo-possivel-diz-chambriard/
|
| [10] | de Almeida, E. (2024) Desafios e oportunidades na redução da reinjeção de gás no pré-sal. https://brasilenergia.com.br/petroleoegas/desafios-e-oportunidades-na-reducao-da-reinjecao-de-gas-no-pre-sal
|
| [11] | Teles, C. (2025) O gás vai ficar mais barato? A revolução silenciosa do GNL no Brasil. https://clickpetroleoegas.com.br/o-gas-vai-ficar-mais-barato-a-revolucao-silenciosa-do-gnl-no-brasil-ctl01/
|
| [12] | BNDES (2025) Gás Natural. https://hubdeprojetos.bndes.gov.br/pt/setores/Natural-Gas
|
| [13] | Wozniakowski-Zehenter, M. (2025) FLNG Vessels: Thes Future of Offshore Gas. https://www.identecsolutions.com/news/flng-vessels-the-future-of-offshore-gas
|
| [14] | Riedinger, L.L. (2020) Changing Picture of Energy Generation in Australia and the United States. EPJ Web of Conferences, 232, Article 01004. https://doi.org/10.1051/epjconf/202023201004
|
| [15] | Arend, L., da Silva, Y.F.M., Augusto, C., Pereira, A., dos Santos, E.M. and Peyerl, D. (2022) Prospects and Challenges of the Liquefied Natural Gas Market in Brazil. Research, Society and Development, 11, e11811225527.
|
| [16] | Costa, H.K.d.M., Sacco, R., Leão Lima, C.E., Botão, R., Galvão, C., Passos, G.P., et al. (2024) Brazilian Natural Gas Market Dynamics: A Data Panel Analysis of the Brazilian Market Compared with Argentina, Colombia, Mexico, and India Using Porter’s Five Forces Framework. Heliyon, 10, e39190. https://doi.org/10.1016/j.heliyon.2024.e39190
|
| [17] | Adefemi, A., Daudu, C.D., Okoli, C.E., Ayorinde, O.B., Adekoya, O.O. and Ibeh, C.V. (2023) Reviewing the Development of Floating LNG Facilities and Their Global Impact. World Journal of Advanced Research and Reviews, 21, 371-381. https://doi.org/10.30574/wjarr.2024.21.2.0463
|
| [18] | Lee, H., Yoo, S. and Huh, S. (2020) Economic Benefits of Introducing LNG-Fuelled Ships for Imported Flour in South Korea. Transportation Research Part D: Transport and Environment, 78, Article 102220. https://doi.org/10.1016/j.trd.2019.102220
|
| [19] | Max, M.D. and Johnson, A.H. (2016) Exploration and Production of Oceanic Natural Gas Hydrate: Critical Factors for Commercialization. Springer. https://doi.org/10.1007/978-3-319-43385-1
|
| [20] | Pym, J.G. (2020) Managing Innovation Under Nationalisation: The British Gas Industry and the First Trans-Oceanic Transportation of Liquefied Natural Gas: 1954-1959. University of Leicester. https://figshare.le.ac.uk/articles/thesis/Managing_Innovation_Under_Nationalisation_the_British_Gas_industry_and_the_first_trans-oceanic_transportation_of_Liquefied_Natural_Gas_1954-1959/17099654?file=31619294
|
| [21] | Johnson, N. (2024) Strategic Mastery: Uncleashing the Power of LNG Program Development through Advanced Techniques. SSRN Electronic Journal. https://doi.org/10.2139/ssrn.4786233
|
| [22] | Da Silva, C.A.S., Castagnet, M.M. and Roviello, T.D. (2023) Estudo de viabilidade técnica e econômica de unidade FLNG (Liquefação Flutuante de Gás Natural) de pequena escala.
|
| [23] | IGU (2025) 2025 World LNG Report. International Gas Union.
|
| [24] | EPE (2025) Balanço Energético Nacional 2025. https://www.epe.gov.br/pt/publicacoes-dados-abertos/publicacoes/balanco-energetico-nacional-2025
|
| [25] | MME (2024) Relatório do Grupo de Trabalho do Programa Gás para Empregar—Comitê 2. https://www.gov.br/mme/pt-br/assuntos/secretarias/petroleo-gas-natural-e-biocombustiveis/gas-para-empregar/relatorio-dos-comites-tematicos/relatorio_comite_2_vf.pdf/view
|
| [26] | SOSSUSA (2024) Quanto custa uma plataforma de perfuração? https://www.sossusa.com.br/2024/09/27/quanto-custa-uma-plataforma-de-perfuracao/
|
| [27] | de Almeida, E. (2024) Gás Natural: Ficaremos com uma abertura inacabada? Brasil Energia. https://brasilenergia.com.br/petroleoegas/gas-natural-ficaremos-com-uma-abertura-inacabada
|
| [28] | EPE and MME (2021) Plano Indicativo de Processamento e Escoamento de Gás Natural 2021.
|
| [29] | Petrobras, A. (2024) Petrobras inicia implantação de tecnologia inédita de separação de gás rico em CO2 no leito marinho. https://agencia.petrobras.com.br/w/inovacao/petrobras-inicia-implantacao-de-tecnologia-inedita-de-separacao-de-gas-rico-em-co2-no-leito-marinho
|
| [30] | MME (2023) Estudos do Plano Decenal de Expansão de Energia 2032. https://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/PublicacoesArquivos/publicacao-689/topico-640/Caderno%20de%20Ga%CC%81s%20Natural%20-%20PDE%202032%20-%20rev1.pdf
|
| [31] | MME (2023) Gás para Empregar. https://www.gov.br/mme/pt-br/assuntos/secretarias/petroleo-gas-natural-e-biocombustiveis/gas-para-empregar
|
| [32] | Presidência da República: Decreto No 12.153, de 26 de agosto de 2024. https://www.planalto.gov.br/ccivil_03/_Ato2023-2026/2024/Decreto/D12153.htm
|
| [33] | EPE (2020) Nota Técnica: Demanda de Gás Natural nos Mercados Nacional e Internacional-Horizonte 2020-2030. https://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/PublicacoesArquivos/publicacao-490/topico-531/EPE
|
| [34] | Esimtech (2025) Floating LNG vs. Traditional Land-Based LNG: A Comparative Analysis. https://pt.esimtech.com/floating-lng-and-traditional-land-based-lng-a-comparative-analysis.html
|
| [35] | Black & Veatch (2025) FLNG Facility from Converted Carrier Features PRICO Liquefaction Technology. https://www.bv.com/projects/golar-gimi-flng
|
| [36] | IGU (2014) International Gas Union: 2014 World LNG Report. https://pt.slideshare.net/slideshow/international-gas-union-2014-world-lng-report/42651678
|
| [37] | Steyn, J. (2021) Small-Scale versus Large-Scale LNG Plants. https://www.ownerteamconsult.com/small-scale-versus-large-scale-lng-plants/
|
| [38] | Black & Veatch (2025) FLNG Solutions.
|
| [39] | Shell (2025) Floating LNG. https://www.shell.com/what-we-do/oil-and-natural-gas/liquefied-natural-gas-lng/floating-lng.html
|
| [40] | Air Products (2019) Floating LNG (FLNG) Capabilities: World-Class LNG Technology Adapted for Offshore Applications Coral South FLNG Facility Utilizing Air Products AP-DMRTM LNG Process-3.4 MTPA Due to Come Onstream in 2022 Offshore Mozambique. (Graphic Courtesy of ENI).
|
| [41] | Snyder, J. (2020) Floating Technology Underpins Future of African LNG. https://www.rivieramm.com/news-content-hub/news-content-hub/floating-technology-underpins-future-of-african-lng-57614
|
| [42] | Petronas (2016) Successful Production of LNG from PETRONAS’ First Floating LNG Facility, PFLNG Satu. https://www.petronas.com/media/media-releases/successful-production-lng-petronas-first-floating-lng-facility-pflng-satu
|
| [43] | Blackridge Research (2024) Shell Prelude FLNG: Worlds First FLNG Development. https://www.blackridgeresearch.com/project-profiles/all-about-prelude-shell-flng-floating-liquified-natural-gas-ship-project-australia-oceania
|
| [44] | Enerdata (2022) Eni acquires Tango FLNG Facility to Deploy It in Congo. https://www.enerdata.net/publications/daily-energy-news/eni-acquires-tango-flng-facility-deploy-it-congo.html
|
| [45] | Offshore Technology (2024) Petronas PFLNG DUA Project, Sabah, Malaysia. https://www.offshore-technology.com/projects/pflng-2-rotan-flng-project-sabah/
|
| [46] | IGU (2022) World LNG Report 2022. https://www.igu.org/igu-reports/world-lng-report-2022
|
| [47] | Land, K., Bardi, C., Oorany, J. and Rangers, W. (2017) Prelude FLNG. https://www.shell.com.au/content/dam/shell/assets/en/australia/about-us/documents/shell-prelude-factsheet-oct-2017.pdf
|
| [48] | Raes, J. (2023) Gas Introduced into Tango FLNG Facility, Republic of Congo. https://exmar.com/wp-content/uploads/2024/08/20231228_news_update_-_gas_introduced_into_tango_flng_facility_0.pdf
|
| [49] | Eurasia Review (2025) Eni Celebrates 100th Cargo of LNG from Coral South FLNG. https://www.eurasiareview.com/09042025-eni-celebrates-100th-cargo-of-lng-from-coral-south-flng/
|
| [50] | LNG Prime Staff (2023) Golar Makes Progress on FLNG Plans. https://lngprime.com/europe/golar-makes-progress-on-flng-plans/98303/
|
| [51] | Congo Energy & Investment Forum (2025) Golar LNG Eyes LNG Developments, Offshore Potential in Central Africa. https://congoenergyinvestment.com/news/golar-lng-eyes-lng-developments-offshore-potential-central-africa
|
| [52] | Von Riese, W.E. (2024) Golar LNG Reaches FID On 3.5 MTPA FLNG Project. https://esgreview.net/2024/09/25/golar-lng-reaches-fid-on-3-5-mtpa-flng-project/
|
| [53] | Chen, W.C., Chen, X.T., Wang, Z.X., Chu, G.W., Zhang, L.L. and Chen, J.F. (2023) Effects of Inclined State and Rolling Motion on Gas-Liquid Effective Interfacial Area in a Rotating Packed Bed. Chemical Engineering Science, 265, Article 118238. https://doi.org/10.1016/j.ces.2022.118238
|
| [54] | Dashliborun, A.M., Larachi, F. and Taghavi, S.M. (2019) Gas-Liquid Mass-Transfer Behavior of Packed-Bed Scrubbers for Floating/Offshore CO2 Capture. Chemical Engineering Journal, 377, Article 119236. https://doi.org/10.1016/j.cej.2018.06.025
|
| [55] | Finn, A.J., Johnson, G.L. and Tomlinson, T.R. (2000) LNG Technology for Offshore and Mid-Scale Plants.
|
| [56] | Gaidai, O., Li, H., Cao, Y., Ashraf, A., Zhu, Y. and Liu, Z. (2024) Shuttle Tanker Operational Reliability Study by Gaidai Multivariate Risk Assessment Method, Utilizing Deconvolution Scheme. Transportation Research Interdisciplinary Perspectives, 26, 101194. https://doi.org/10.1016/j.trip.2024.101194
|
| [57] | Jiao, J., Zhao, M., Jia, G. and Ding, S. (2024) SPH Simulation of Two Side-by-Side LNG Ships’ Motions Coupled with Tank Sloshing in Regular Waves. Ocean Engineering, 297, Article 117022. https://doi.org/10.1016/j.oceaneng.2024.117022
|
| [58] | Jourablou, M.M., Salimi, M. and Amidpour, M. (2025) A Comprehensive Analysis of the Nitrogen Expansion Process for Liquefied Natural Gas Industry from the Operational Point of View. International Journal of Thermofluids, 27, Article 101200. https://doi.org/10.1016/j.ijft.2025.101200
|
| [59] | Motamed Dashliborun, A., Larachi, F. and Schubert, M. (2017) Hydrodynamics of Gas-Liquid Cocurrent Upflow in Oscillating Packed Beds for Offshore Marine Applications. Chemical Engineering Science, 170, 583-596. https://doi.org/10.1016/j.ces.2016.12.056
|
| [60] | LNG Prime Staff (2024) Golar: FLNG Arrives at GTA Site. https://lngprime.com/lng-terminals/golar-flng-arrives-at-gta-site/102083/
|
| [61] | BP (2024) Mega Gas Project off the Coast of Africa Nears Final Stages before Start-Up. https://www.bp.com/en/global/corporate/news-and-insights/energy-in-focus/gta-project-fpso-arrival.html
|
| [62] | Staff, M.L. (2019) Keppel Gets Set to Start Gimi FLNG Conversion. https://www.marinelog.com/news/keppel-gets-set-to-start-gimi-flng-conversion/
|
| [63] | Gas Processing & LNG (2024) Golar LNG Signs EPC deal for $2.2-B MK II FLNG Conversion Project. https://gasprocessingnews.com/news/2024/09/golar-lng-signs-epc-deal-for-22-b-mk-ii-flng-conversion-project/
|
| [64] | EPE (2019) Plano Indicativo de Processamento e Escoamento de Gás Natural-PIPE. https://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/PublicacoesArquivos/publicacao-434/PIPE%20-%20Plano%20Indicativo%20de%20Processamento%20e%20Escoamento%20de%20G%C3%A1s%20Natural.pdf
|
| [65] | EPE (2019) Plano Decenal de Expansão de Energia 2029. https://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/PublicacoesArquivos/publicacao-422/PDE 2029.pdf
|
| [66] | Branco, C.C.M. and Pizarro, J.O.D.S. (2023) Aproveitamento do Gás Natural Associado Produzido nos Campos do Pré-Sal. Nota Técnica elaborada para o IBP e ABEP. https://www.gov.br/mme/pt-br/assuntos/secretarias/petroleo-gas-natural-e-biocombustiveis/gas-para-empregar/comites-atas-apresentacoes-e-demais-documentos/comite-1-disponibilidade-do-gas-natural/03-aproveitamento-do-gas-natural-associado-produzidos-nos-campos-do-pre.pdf
|
| [67] | Zawadzki, S. (2018) For the Global LNG Industry, Is the FSRU Honeymoon over? https://www.reuters.com/article/us-lng-fsru-analysis-idUSKBN1K80R2/
|
| [68] | El Ghazi, F., Lechheb, C. and Kaitouni, O.D. (2023) Midstream Supply Chain Infrastructure Facilities and Optimization Opportunities for Emerging LNG Markets. International Journal of Energy Economics and Policy, 13, 175-186. https://doi.org/10.32479/ijeep.14421
|
| [69] | Putra, I.W.G.K.D.D., Artana, K.B., Ariana, I.M. and Sudiasih, L.G.M.P. (2019) A Study on Conceptual Design of Mini FSRU as LNG Receiving Facility. IOP Conference Series: Materials Science and Engineering, 588, Article 012026. https://doi.org/10.1088/1757-899x/588/1/012026
|
| [70] | GIIGNL (2024) Annual Report: Natural Gas 2022.
|
| [71] | Zaretskaya, V. (2022) Global Trade in Liquefied Natural Gas Grew by 4.5% in 2021. https://www.eia.gov/todayinenergy/detail.php?id=52979
|
| [72] | Zhang, D.S., Ning, S. and Jun, L. (2017) Comparative Research on LNG Receiving Terminals and FSRU. https://pt.scribd.com/document/438384855/Comparative-Research-on-Lng-Receiving-Terminals-and-Fsru
|
| [73] | Wood, D.A. and Kulitsa, M. (2018) Weathering/Ageing of Liquefied Natural Gas Cargoes during Marine Transport and Processing on Floating Storage Units and FSRU. Journal of Energy Resources Technology, 140, Article 102901. https://doi.org/10.1115/1.4039981
|
| [74] | Wyllie, M. (2021) Oxford Energy Podcast—Developments in the ‘LNG to Power’ Market and the Growing Importance of Floating Facilities. https://www.oxfordenergy.org/publications/oxford-energy-podcast-developments-in-the-lng-to-power-market-and-the-growing-importance-of-floating-facilities/
|
| [75] | Chambriard, M. (2020) A Petrobras, O Pré-sal e O Campo de Búzios. FGV Energia.
|
| [76] | IBAMA (2014) RIMA, Atividade de Produção e Escoamento de Petróleo eGás Natural do Polo Pré-Sal da Bacia de Santos-Etapa 2, Revisão 3. https://ibamagovbr.sharepoint.com/sites/EstudosAmbientais/Documentos%20Compartilhados/Forms/AllItems.aspx?id=%2Fsites%2FEstudosAmbientais%2FDocumentos%20Compartilhados%2FLicenciamento%2FPetroleo%2FProducao%2FProducao%20%2D%20Bacia%20de%20Santos%20%2D%20Polo%20Pre%2DSal%20%2D%20Etapa%201%20%2D%20Petrobras&viewid=31a7340a%2D614e%2D461e%2D922e%2D6875b27185de&p=true&ga=1
|
| [77] | IBAMA (2012) EIA/RIMA para a Atividade de Produção e Escoamento de Petróleo e Gás Natural do Polo Pré Sal da Bacia de Santos-Etapa 1 II.2-Caracterização da Atividade. Revisão 2. https://ibamagovbr.sharepoint.com/:b:/r/sites/EstudosAmbientais/Documentos%20Compartilhados/Licenciamento/Petroleo/Producao/Producao%20-%20Bacia%20de%20Santos%20-%20Polo%20Pre-Sal%20-%20Etapa%201%20-%20Petrobras/textos-PDF/028125-EIA-RL-0001-02_Item-II-2_Caracterizacao-da-Atividade.pdf?csf=1&web=1&e=MVYOa3
|
| [78] | IBAMA (2010) EIA/RIMA-Projetos Integrados de Produção e Escoamento de Petróleo e Gás Natural no Pólo Pré-Sal, Bacia de Santos. EIA–Estudo de Impacto Ambiental. https://ibamagovbr.sharepoint.com/:b:/r/sites/EstudosAmbientais/Documentos%20Compartilhados/Licenciamento/Petroleo/Producao/Producao%20-%20Bacia%20de%20Santos%20-%20Polo%20Pre-Sal%20-%20Etapa%201%20-%20Petrobras/DOC%2002%20-%20EIA%20-%20REV00%20(JUL%202010)/EIA/028125-EIA-RL-0001-00_Item-II-2_Caracterizacao-Atividade.pdf?csf=1&web=1&e=hC4K6W
|
| [79] | IBAMA (2013) Atividade de Produção e Escoamento de Petróleo e Gás Natural do Polo Pré-Sal da Bacia de Santos-Etapa 2 Caracterização da Atividade II.2.1, Revisão 00. https://ibamagovbr.sharepoint.com/:b:/r/sites/EstudosAmbientais/Documentos%20Compartilhados/Licenciamento/Petroleo/Producao/Producao%20-%20Bacia%20de%20Santos%20-%20Polo%20Pre-Sal%20-%20Etapa%202%20-%20Petrobras/Volume%2001%20-%20Textos/Secao%20II.2%20Caracterizacao%20da%20Atividade.pdf?csf=1&web=1&e=tI6Hnz
|
| [80] | IBAMA (2011) EIA/RIMA para a Atividade de Produção e Escoamento de Petróleo e Gás Natural do Polo Pré Sal da Bacia de Santos-Etapa 1 II.2-Caracterização da Atividade. Revisão 1.
|
| [81] | ANP Painéis Dinâmicos de Produção de Petróleo e Gás Natural. https://www.gov.br/anp/pt-br/centrais-de-conteudo/paineis-dinamicos-da-anp/paineis-dinamicos-sobre-exploracao-e-producao-de-petroleo-e-gas/paineis-dinamicos-de-producao-de-petroleo-e-gas-natural
|
| [82] | Borges, C.M. (2021) Evaluation of Gas-Integrated Technologies Aiming at Leveraging Profits of Santos Basin Pre-Salt Clsuter for Society and The Industry. Universidade de São Paulo.
|
| [83] | EIA (2025) Natural Gas—Price of Liquefied U.S. Natural Gas Exports. https://www.eia.gov/dnav/ng/hist/n9133us3m.htm
|
| [84] | Estadão (2025) Silveira anuncia que regulamentação sobre gás natural virá na MP que limita custos da CDE. https://eixos.com.br/gas-natural/mercado-de-gas/silveira-anuncia-que-regulamentacao-sobre-gas-natural-vira-na-mp-que-limita-custos-da-cde/
|
| [85] | IBAMA (2021) Estudo de Impacto Ambiental—Desenvolvimento da produção e escoamento de petróleo e gás natural no polo pré-sal da bacia de Santos—Etapa 4. http://licenciamento.ibama.gov.br/Petroleo/Producao/
|
| [86] | International Gas Union (2018) 2018 World LNG Report 27th World Gas Conference Edition. International Gas Union. https://www.igu.org/igu-reports/2018-world-lng-report-27th-world-gas-conference-edition
|
| [87] | MME (2019) Nota Conjunta: Comitê De Promoção da Concorrência No Mercado de Gás Natural do Brasil. https://www.gov.br/gestao/pt-br/central-de-conteudo/publicacoes/notas-tecnicas/2019/nota-tecnica-conjunta-rumo-novo-mercado-gas/view
|