4.7 Review

Green ammonia production technologies: A review of practical progress

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Yunxia Wei et al.

Summary: This mini review summarizes the recent advances in materials sciences for photocatalytic nitrogen fixation and discusses the research on the synthesis of ammonia and other high-value chemicals.

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Summary: This study focused on using metal halide solid absorbents for ammonia separation, exploring optimal performance under absorption/desorption conditions. The results demonstrate the potential of these salts to replace traditional ammonia synthesis condensation, offering a greener production method and increased efficiency.

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Ammonia as a green energy carrier: Electrochemical synthesis and direct ammonia fuel cell-a comprehensive review

Bin Wang et al.

Summary: Achieving carbon neutrality by 2050 is an urgent challenge for the world to address climate change. Ammonia, as a promising medium for hydrogen storage, is considered an ideal carbon-free energy carrier. Its critical advantages in long-distance transportation and storage make it a potential solution for hydrogen. This review provides a comprehensive summary of the latest advancements in electrochemical ammonia synthesis and direct ammonia fuel cells, including process mechanisms, material development, and stability issues.

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Optimizing Reaction-Absorption Process for Lower Pressure Ammonia Production

Fouzia Hasan Nowrin et al.

Summary: Ammonia separation using metal halide absorbents is a viable option for ammonia production at lower pressure. The study focuses on optimizing the operating parameters of the reaction-absorption process for large-scale processing. The experiments were conducted in different modes to investigate the reaction parameters, absorption conditions, and transient behavior. The results suggest that the recycle flow rate and absorber temperature significantly influence ammonia production rates. Optimized conditions led to a production rate increase of 14 times compared to previous results. The study also demonstrated stable performance of the reaction-absorption process for multiple cycles.

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An integrated system for ammonia production from renewable hydrogen: A case study

Merve Ozturk et al.

Summary: This study presents an analysis and assessment study of an integrated system for producing ammonia, consisting of a cryogenic air separation unit, polymer electrolyte membrane electrolyzer, and reactor. The system's efficiency is impacted by solar radiation intensity and inlet air conditions, with an increase in solar influx leading to decreased efficiencies. Additionally, the mass flow rate of inlet air significantly affects ammonia production.

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A technological roadmap to the ammonia energy economy: Current state and missing technologies

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Evaluation of a new geothermal based multigenerational plant with primary outputs of hydrogen and ammonia

Yunus Emre Yuksel et al.

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A novel biomass gasification based cascaded hydrogen and ammonia synthesis system using Stoichiometric and Gibbs reactors

H. Ishaq et al.

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Exceeding Single-Pass Equilibrium with Integrated Absorption Separation for Ammonia Synthesis Using Renewable Energy-Redefining the Haber-Bosch Loop

Collin Smith et al.

Summary: This study demonstrates a recycle-less integrated process for ammonia synthesis and separation, setting the foundation for green ammonia technology. By utilizing a novel catalyst and absorbent system, the efficiency and stability of the ammonia synthesis reaction can be improved.

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The activation of porous atomic layered MoS2 basal-plane to induce adjacent Mo atom pairs promoting high efficiency electrochemical N2 fixation

Jinwei Chen et al.

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Summary: Recent studies have focused on finding environmentally friendly, energy efficient, and economically viable production processes for ammonia synthesis due to its importance in agriculture and potential as an energy carrier. However, the commonly used Haber-Bosch process for ammonia production has high greenhouse gas emissions and energy usage. Sustainable hydrogen production methods like water electrolysis coupled with renewable technologies are being explored, but they require large amounts of pretreated water. A comparative life cycle assessment of various ammonia production methods shows that significant GHG emissions or high volumes of water are still present in these technologies.

FRONTIERS IN ENERGY RESEARCH (2021)

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Solid oxide fuel cell: Decade of progress, future perspectives and challenges

Mandeep Singh et al.

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A review on ammonia, ammonia-hydrogen and ammonia-methane fuels

Wai Siong Chai et al.

Summary: The combustion of fuels for energy generation is crucial for human activities, but it results in emissions that cause environmental complications and health risks. The replacement of conventional fuels for zero carbon emission is important, with ammonia offering advantages over hydrogen as a carbon-free fuel, but facing challenges such as low burning velocity and high emissions. Therefore, the study of secondary fuels like hydrogen and methane to assist ammonia combustion is essential.

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Development and Recent Progress on Ammonia Synthesis Catalysts for Haber-Bosch Process

John Humphreys et al.

Summary: Ammonia synthesis from nitrogen and hydrogen is a crucial chemical process with the development of efficient catalysts being a key focus. New catalysts are being developed to improve efficiency and sustainability in ammonia production. The continued innovation in catalysts for the Haber-Bosch process is essential for the future of green ammonia production.

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Impact of grid connectivity on cost and location of green ammonia production: Australia as a case study

Nicholas Salmon et al.

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Can sustainable ammonia synthesis pathways compete with fossil-fuel based Haber-Bosch processes?

Miao Wang et al.

Summary: The article evaluates various stages of transitioning to sustainable ammonia synthesis, comparing economic feasibility and climate impacts of different synthesis methods, and suggesting technological thresholds. Ammonia synthesis driven by renewable energy sources will have cost and environmental advantages, but major advances in performance are still needed.

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Techno-economic comparison of green ammonia production processes

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