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Dive into the research topics where Bar Mosevitzky is active.

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Featured researches published by Bar Mosevitzky.


ACS Omega | 2017

Pollutant Abatement of Nitrogen-Based Fuel Effluents over Mono- and Bimetallic Pt/Ru Catalysts

Deepa Ayillath Kutteri; Bar Mosevitzky; Michael Epstein; Gennady E. Shter; Gideon S. Grader

Mono- and bimetallic alloy Pt and Ru catalysts supported on γ-Al2O3 have been investigated for the reduction of pollutants (NOx, NH3, and CO) generated during the continuous combustion of an aqueous urea ammonium nitrate fuel. A Pt/Ru alloy with a Pt25/Ru75 atomic ratio has been found to have higher activity and selectivity than those of a 50/50 alloy and monometallic catalysts. Among monometallic catalysts, Ru was more selective toward N2 formation, whereas Pt showed a higher selectivity toward NH3 formation. For Ru, it was observed that the oxidizing atmosphere of NOx pollutants caused the formation of RuO2, whereas Ru in the Pt/Ru alloy was stable under these conditions. Temperature (250–500 °C) and pressure (1–8 MPa) studies over Ru and 25/75 Pt/Ru have concluded that the alloy catalyst at 400 °C and 5 MPa reduced the pollutants to a minimum level with high yields of N2 (99.7%) and CO2 (99.9%). It was also observed that the 25/75 Pt/Ru catalyst remained stable up to 100 h of thermal treatment at 400 °C. Minimal pollutants were obtained at a weight hourly space velocity = 11 822 h–1. Characterization studies of the spent catalyst showed that metal particles were sintered over a period of time (8 h) and the γ-Al2O3 support was transformed into θ- and α-phases under the hydrothermal reaction conditions.


Environmental Microbiology | 2015

Host-dependent differences in abundance, composition and host range of cyanophages from the Red Sea.

Naama P. Dekel‐Bird; Gazalah Sabehi; Bar Mosevitzky; Debbie Lindell


Combustion and Flame | 2016

Combustion simulations of aqueous urea ammonium nitrate monofuel at high pressures

Bar Mosevitzky; Alon Grinberg Dana; Gennady E. Shter; Gideon S. Grader


Fuel Processing Technology | 2017

Auto-ignition of a carbon-free aqueous ammonia/ammonium nitrate monofuel: A thermal and barometric analysis

Bar Mosevitzky; Gennady E. Shter; Gideon S. Grader


Energy Procedia | 2017

The Nitrogen Economy: The Feasibility of Using Nitrogen-Based Alternative Fuels

Oren Elishav; Gal Tvil; Bar Mosevitzky; Daniel R. Lewin; Gennady E. Shter; Gideon S. Grader


Combustion and Flame | 2018

Effect of equivalence ratio on the thermal autoignition of aqueous ammonia ammonium nitrate monofuel

Bar Mosevitzky; Gennady E. Shter; Gideon S. Grader


Energy technology | 2018

Thermal Autoignition of Aqueous Urea Ammonium Nitrate as a Function of Equivalence Ratio, Water Content, and Nitrogen Pressure

Bar Mosevitzky; Idan Calo; Shachar Keren; Gennady E. Shter; Gideon S. Grader


Proceedings of the Combustion Institute | 2018

Effect of pressure on the combustion of an aqueous urea and ammonium nitrate monofuel

Bar Mosevitzky; Michael Epstein; Gennady E. Shter; Gideon S. Grader


Applied Energy | 2018

Effects of water content and diluent pressure on the ignition of aqueous ammonia/ammonium nitrate and urea/ammonium nitrate fuels

Bar Mosevitzky; Rotem Azoulay; Lilach Naamat; Gennady E. Shter; Gideon S. Grader


Energy Procedia | 2017

Effect of diluent pressure on the auto-ignition kinetics of a low-carbon urea ammonium nitrate monofuel

Bar Mosevitzky; Gennady E. Shter; Gideon S. Grader

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Gennady E. Shter

Technion – Israel Institute of Technology

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Gideon S. Grader

Technion – Israel Institute of Technology

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Michael Epstein

Weizmann Institute of Science

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Alon Grinberg Dana

Technion – Israel Institute of Technology

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Daniel R. Lewin

Technion – Israel Institute of Technology

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Debbie Lindell

Technion – Israel Institute of Technology

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Gal Tvil

Technion – Israel Institute of Technology

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Gazalah Sabehi

Technion – Israel Institute of Technology

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Lilach Naamat

Technion – Israel Institute of Technology

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Naama P. Dekel‐Bird

Technion – Israel Institute of Technology

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