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February 22, 2026Fuel7 citationsOpen Access

Power-to-X: A promising Roadmap for energy diversification and Greener future

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YWYutong WangBYBo YangSZShuai Zhou

Key Points

  • The aim is to explore Power-to-X technologies, particularly focusing on hydrogen, ammonia, and methanol, and their roles in sustainable energy.
  • Detailed review of Power-to-Hydrogen, Power-to-Ammonia, and Power-to-Methanol preparation, storage, and utilization.
  • Comparison of advantages and disadvantages of each Power-to-X method.
  • Analysis of the investment scale and future development suggestions for PtX technologies.
  • Hydrogen production efficiencies can reach up to 80%.
  • Energy densities are 33 kWh/kg for hydrogen and 4.6 kWh/L for methanol.
  • The PtX system may enable up to an 80% reduction in carbon dioxide emissions.

Abstract

• The preparation, storage and utilization of PtH, PtA and PtM are described in detail. • PtX system theory and present investment scale are thoroughly discussed. • The advantages, disadvantages, and prospects of all methods are compared. • Suggestions are proposed for the future development of PtH, PtA, PtM, and PtX. The Power-to-X (PtX) system presents an innovative approach to energy conversion and storage, designed to integrate the production and utilization of hydrogen, ammonia, and methanol, thereby supporting an efficient and sustainable energy cycle. This review offers a comprehensive analysis of Power-to-Hydrogen (PtH), Power-to-Ammonia (PtA), and Power-to-Methanol (PtM) technologies, highlighting hydrogen production efficiencies of up to 80% and energy densities ranging from 33 kWh/kg (hydrogen) to 4.6 kWh/L (methanol). It is anticipated that the PtX system can facilitate a reduction in carbon dioxide emissions by as much as 80%. Furthermore, green ammonia and methanol can achieve a fully carbon-free energy cycle. In contrast to previous reviews, this work uniquely emphasises the integration of PtH, PtA, and PtM pathways, thereby addressing the gap in understanding their synergistic effects on decarbonisation. It also explores the transformative impact of these technologies on contemporary energy demands, providing a practical solution for balancing intermittent renewable energy generation with fluctuating demand, and thoroughly demonstrating the significant potential of the PtX system in tackling modern energy challenges.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/699a9d3c482488d673cd3049https://doi.org/10.1016/j.fuel.2026.138796
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