Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Sustainable pathways to ammonia: a comprehensive review of green production approaches

View through CrossRef
Abstract Ammonia production is vital in global industries but faces increasing environmental concerns, necessitating a shift towards sustainable methods. This review comprehensively explores diverse hydrogen production approaches and their potential impact on sustainable ammonia synthesis. The primary focus is investigating hydrogen production methods that enhance both efficiency and sustainability in ammonia synthesis, which is crucial for reducing its environmental footprint. Furthermore, the review highlights the pivotal role of catalysts in improving Faradaic efficiency in ammonia synthesis, emphasizing their significance in overall process efficiency. The study identifies innovative technologies that have the potential to revolutionize ammonia production while aligning with global sustainability goals. Through a thorough examination of hydrogen production methods and catalytic advances, this review provides valuable insight into greener and more efficient ammonia production practices. In conclusion, it emphasizes the importance of exploring hydrogen production methods and leveraging catalysts to improve ammonia production sustainability and efficiency. It addresses a critical research gap and paves the way for an environmentally responsible and globally aligned ammonia production industry.
Title: Sustainable pathways to ammonia: a comprehensive review of green production approaches
Description:
Abstract Ammonia production is vital in global industries but faces increasing environmental concerns, necessitating a shift towards sustainable methods.
This review comprehensively explores diverse hydrogen production approaches and their potential impact on sustainable ammonia synthesis.
The primary focus is investigating hydrogen production methods that enhance both efficiency and sustainability in ammonia synthesis, which is crucial for reducing its environmental footprint.
Furthermore, the review highlights the pivotal role of catalysts in improving Faradaic efficiency in ammonia synthesis, emphasizing their significance in overall process efficiency.
The study identifies innovative technologies that have the potential to revolutionize ammonia production while aligning with global sustainability goals.
Through a thorough examination of hydrogen production methods and catalytic advances, this review provides valuable insight into greener and more efficient ammonia production practices.
In conclusion, it emphasizes the importance of exploring hydrogen production methods and leveraging catalysts to improve ammonia production sustainability and efficiency.
It addresses a critical research gap and paves the way for an environmentally responsible and globally aligned ammonia production industry.

Related Results

Research on the Approach and Challenges of Green Ammonia as Hydrogen Carrier
Research on the Approach and Challenges of Green Ammonia as Hydrogen Carrier
Abstract The difficulties in hydrogen storage and transportation have become the main bottleneck that restricts the large-scale development of the hydrogen energy in...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Aqueous solution of ammonia as marine fuel
Aqueous solution of ammonia as marine fuel
The ignition of ammonia in aqueous solution was simulated in a two-stroke compression ignition engine model. Zero-dimensional chemical kinetic calculations were used to estimate th...
Physiology, biochemistry, and specific inhibitors of CH4, NH4+, and CO oxidation by methanotrophs and nitrifiers
Physiology, biochemistry, and specific inhibitors of CH4, NH4+, and CO oxidation by methanotrophs and nitrifiers
Ammonia oxidizers (family Nitrobacteraceae) and methanotrophs (family Methylococcaceae) oxidize CO and CH4 to CO2 and NH4+ to NO2-. However, the relative contributions of the two g...
Subsea Liquid Energy Storage – The Bridge Between Oil and Energy/Hydrogen
Subsea Liquid Energy Storage – The Bridge Between Oil and Energy/Hydrogen
Abstract This paper demonstrates a pioneering technology adaption for using a membrane-based subsea storage solution for oil/condensate, modified into storing clean ...
Cash‐based approaches in humanitarian emergencies: a systematic review
Cash‐based approaches in humanitarian emergencies: a systematic review
This Campbell systematic review examines the effectiveness, efficiency and implementation of cash transfers in humanitarian settings. The review summarises evidence from five studi...
Influence of silver nanoparticles on nitrification kinetics and ammonla oxidation in activated sludge
Influence of silver nanoparticles on nitrification kinetics and ammonla oxidation in activated sludge
Nitrification is widely applied process for biological removal of nitrogen from wastewaters. The process comprises of two-steps: ammonia oxidation and nitrite oxidation. Ammonia (N...

Back to Top