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Detailed Assessment of Green Hydrogen Production Potential in Minas Gerais, Brazil: Technical, Environmental and Social Aspects

ブラジル・ミナスジェライス州におけるグリーン水素生産可能性の詳細評価:技術的、環境的及び社会的側面 (AI 翻訳)

Vítor Andrade Brumano Cardinali, Túlio Augusto Zucareli de Souza, R. da Costa, L. F. A. Roque, L. Vidigal, G. Frez, Nelly Vanessa Pérez Rangel, R. Capaz, Samara Calçado de Azevedo, C. Coronado

Hydrogen📚 査読済 / ジャーナル2026-06-30#水素経営インパクト: 調達リスク対象セクター: energy
DOI: 10.3390/hydrogen7030088
原典: https://doi.org/10.3390/hydrogen7030088
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🤖 gxceed AI 要約

日本語

本研究はブラジル・ミナスジェライス州の853市町村について、太陽光発電を利用したグリーン水素の生産可能性を3つの手法で評価。最大で47.3 MtH2/年(2365.2 TWh)の生産が可能と推定し、これはEUの2030年水素輸入目標の約5倍に相当する。ただし、傾斜8%未満の土地に限定すると可能性は40%減少。また、低開発地域と高い生産可能性が重なることから、エネルギー転換と地域開発の同時推進の可能性を示した。

English

This study evaluates green hydrogen production potential from solar PV across 853 municipalities in Minas Gerais, Brazil. Using three methodologies, it estimates up to 47.3 MtH2/year (2365.2 TWh), nearly five times the EU's 2030 hydrogen import demand. However, restricting to slopes <8% reduces potential by 40%. The paper also highlights that high-potential regions coincide with low human development, suggesting opportunities to link energy transition with social development.

Unofficial AI-generated summary based on the public title and abstract. Not an official translation.

📝 gxceed 編集解説 — Why this matters

日本のGX文脈において

ブラジルは日本にとって重要な水素供給源の一つと期待されており、本論文はそのポテンシャルを定量的に示す。日本の水素輸入戦略や技術協力の検討に資する。

In the global GX context

This paper provides robust empirical evidence of Brazil's vast green hydrogen potential, relevant for global hydrogen supply chains and energy transition strategies. Its integration of social development indicators (HDI) offers a novel framework for aligning hydrogen investments with regional equity.

👥 読者別の含意

🔬研究者:A detailed, municipality-level hydrogen potential assessment that quantifies the impact of land constraints and power density, and links hydrogen production with social development indicators.

🏢実務担当者:Use the study's estimates and sensitivity analysis to inform site selection, project feasibility, and investment decisions for green hydrogen projects in Minas Gerais.

🏛政策担当者:Consider the identified overlap between high hydrogen potential and low HDI regions as a justification for targeted development policies that promote both energy transition and social inclusion.

📄 Abstract(原文)

With the growing energy demand and concerns about environmental impacts, green hydrogen has become one of the main alternatives for a clean and reliable energy future. Brazil presents itself as one of the main potential suppliers of this renewable fuel, considering its resource abundance, such as solar irradiation. Therefore, the present study aims to evaluate in detail the hydrogen production potential of one of Brazil’s main states when it comes to solar power potential, Minas Gerais. The potential for each of the 853 municipalities of the region was assessed individually using three different methodologies, indicating that the state could produce 2365.2 TWh of electricity or 47.3 MtH2/year (with a maximum variation of 3.4% between the methodologies), nearly five times the EU’s projected 2030 hydrogen import demand. This estimation, however, was significantly reduced when only areas with a slope lower than 8% were considered, decreasing land availability by 40% and cutting hydrogen potential by 18.8 Mt/year. On the other hand, increasing power density from 4 to 15 MWh/km2 almost tripled hydrogen production potential, while electrolyzer efficiency also presented a positive effect on hydrogen output. Finally, the comparison of hydrogen potential with Human Development Index (HDI) data indicates that the most productive mesoregions often coincide with lower human development levels, particularly in the “Norte de Minas” and “Jequitinhonha” mesoregions, highlighting the opportunity to align energy transition with regional development goals. Therefore, targeted investments in these regions could generate jobs, boost income, and reduce inequalities, reinforcing green hydrogen as both an environmental and social driver.

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