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May 7, 2026Results in Engineering0 citationsOpen Access

Technological pathway for sustainable energy generation through green hydrogen: a bibliometric and technical analysis oriented toward sustainability

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JMJosé Marrugo-NegreteJPJ Pinedo-HernandezMHMarco Hernández-Montiel

Key Points

  • To propose a technological pathway for sustainable energy generation through green hydrogen in the Colombian Caribbean.
  • Conducted a bibliometric review of green hydrogen research from 2015 to 2024.
  • Assessed physicochemical properties of regional water sources.
  • Developed a modular framework integrating water treatment and PEM electrolysis.
  • Identified water treatment as crucial for electrolysis efficiency.
  • High turbidity and organic load necessitate effective pretreatment solutions.
  • Proposed a clean energy pathway leveraging solar power for sustainable hydrogen production.

Abstract

• Bibliometric review maps global green hydrogen research, highlighting AWE/PEM electrolysis and emerging Latin American contributions. • Physicochemical assessment shows Caribbean water turbidity, salinity and organic load limit its direct use in electrolysis. • Electrocoagulation plus solar distillation is identified as a low-cost route to obtain ultra-pure water for PEM electrolyzers. • A modular technological pathway integrates water treatment, solar-powered PEM electrolysis and hydrogen-fueled ecological cooking for rural communities. This study aims to propose a technological pathway for sustainable energy generation through green hydrogen, oriented toward sustainability in the Colombian Caribbean, based on a bibliometric and technical analysis. Unlike previous studies that address hydrogen production and water treatment as separate domains, this work integrates regional water quality assessment, renewable energy potential, and electrolyzer selection into a territorially contextualized and modular framework adapted to local socio-environmental conditions. A systematic search conducted from 2015 to 2024 covered three thematic axes: (i) water electrolysis and electrolyzers, (ii) electrocoagulation-based water treatment, and (iii) physicochemical characterization of regional surface and groundwater. Results show that the electrochemical route dominates global research, with alkaline electrolyzers (AWE) highlighted for their technological maturity and proton exchange membrane electrolyzer (PEM) systems for their efficiency and renewable integration. An exponential rise in publications since 2021 was identified, along with a growing Latin American contribution. Water characterization studies revealed high turbidity, conductivity, and nutrient loads, demonstrating the need for pretreatment. A modular and replicable route is proposed, including water collection; electrocoagulation with recycled aluminum electrodes for turbidity, color, and solids removal; disinfection; solar distillation to obtain water with conductivity < 2 μS/cm; PEM electrolysis powered by photovoltaic energy; and hydrogen storage for ecological cooking systems. The system leverages regional solar potential, as over 70% of the territory receives solar irradiation levels exceeding 5.20 kWh/m²/day. This pathway strengthens access to safe water and clean energy, reduces carbon emissions, and offers a viable roadmap for a just energy transition in the Colombian Caribbean.

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Cite This Study

Marrugo-Negrete et al. (2026) studied this question.

synapsesocial.com/papers/69fbefa3164b5133a91a383ahttps://doi.org/10.1016/j.rineng.2026.110889
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