Environmental impact assessment of plasma‐assisted and conventional ammonia synthesis routes

Author:

Anastasopoulou Aikaterini1,Keijzer Robin1,Patil Bhaskar1,Lang Jürgen2,Rooij Gerard3,Hessel Volker4

Affiliation:

1. Laboratory of Chemical Reactor Engineering/Micro Flow Chemistry and Process Technology Department of Chemical Engineering and Chemistry Eindhoven University of Technology Eindhoven The Netherlands

2. Innovation Management Verfahrenstechnik & Engineering, Evonik Technology & Infrastructure GmbH Hanau‐Wolfgang Germany

3. Dutch Institute for Fundamental Energy Research Eindhoven The Netherlands

4. Faculty of Engineering, Computer and Mathematical Sciences, School of Chemical Engineering and Advanced Materials University of Adelaide, Adelaide South Australia Australia

Funder

European Community's Seventh Framework Program

Publisher

Wiley

Subject

General Social Sciences,General Environmental Science

Reference39 articles.

1. AGRA. (2017).Africa agriculture status report: The business of smallholder agriculture in sub‐Saharan Africa. Retrieved fromhttps://agra.org/wp-content/uploads/2017/09/Final-AASR-2017-Aug-28.pdf

2. Alexandratos N. &Bruinsma J.(2012).World agriculture towards 2030/2050: The 2012 revision Nikos. ESA Working Paper No. 12‐03.

3. Life Cycle Assessment of the Nitrogen Fixation Process Assisted by Plasma Technology and Incorporating Renewable Energy

4. Energy Considerations for Plasma-Assisted N-Fixation Reactions

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