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January 16, 2026Processes2 citationsOpen Access

Current Trends and Innovations in CO2 Hydrogenation Processes

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ENEgydio Terziotti NetoLSLucas Alves da SilvaHBHeloisa Ruschel Bortolini

Key Points

  • The review aims to summarize the advancements and challenges in CO2 hydrogenation technologies and their implications for sustainability.
  • Comprehensive overview of thermodynamic and kinetic studies in CO2 hydrogenation.
  • Evaluation of various reactor modeling techniques.
  • Analysis of integration strategies for multi-product systems.
  • Discussion of optimization approaches to improve technology readiness levels.
  • Identified a range of potential hydrogenation products with industrial applications.
  • Outlined future research needs in kinetic expressions and modeling.
  • Examined strategies to lower dependency on costly green hydrogen.
  • Highlighted market factors affecting optimization efforts in hydrogenation technologies.

Abstract

In recent years, interest in carbon dioxide (CO2) hydrogenation technologies has intensified. Driven by the continuous rise in greenhouse gas emissions and the unprecedented negative impacts of global warming, these technologies offer a viable pathway toward sustainability and support the development of low-carbon industrial processes. In addition to methanol and methane, other possible hydrogenation products (i.e., hydrocarbons, formic acid, acetic acid, dimethyl ether, and dimethyl carbonate) are of industrial relevance due to their wide range of applications. Therefore, this review aims to provide a comprehensive overview of the various aspects associated with thermocatalytic CO2 hydrogenation processes, from thermodynamic and kinetic studies to upscaled reactor modeling and process synthesis and optimization. The review proceeds to examine different integration strategies and optimization approaches for multi-product systems, with the objective of evaluating how distinct technologies may be combined in an integrated flowsheet. It then concludes by outlining future research opportunities in this field, particularly those related to developing comprehensive kinetic rate expressions and reactor modeling studies for routes with low technology readiness levels, the exploration of prospective reaction pathways, strategies to mitigate the dependence on green hydrogen (which, today, exhibits high costs), and the consideration of market price or product demand fluctuations in optimization studies. Overall, this review provides a solid base to support other decarbonization studies focused on hydrogenation technologies.

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Cite This Study

Neto et al. (2026) studied this question.

synapsesocial.com/papers/6969d4c3940543b977709aa9https://doi.org/10.3390/pr14020293
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