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Richard J. Wilbraham and Colin Boxall

pyridine-pyrazole type in acidic corrosion of steel. Colloids Surf. A, 259, 143-149. 23. Kosari, A., Moayed, M. H., Davoodi, A., Parvizi, R., Momeni, M., Eshghi, H., & Moradi, H. (2014). Electrochemical and quantum chemical assessment of two organic compounds from pyridine derivatives as corrosion inhibitors for mild steel in HCl solution under stagnant condition and hydrodynamic flow. Corros. Sci., 78, 138-150 24. Hayward, T. M., Svishchev, I. M., & Makhija, R. C. (2003). Stainless steel flow reactor for supercritical water oxidation

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Antoni Rożeń

June 2017, from http://us.areva.com/EN/home-1495/passive-autocatalytic-recombiner-par.html . 5. Simon, B., Reinecke, E.-A., Kubelt, C., & Allelein, H.-J. (2014). Start-up behaviour of a passive auto-catalytic recombiner under counter flow conditions: Results of a first orienting experimental study. Nucl. Eng. Des ., 278 , 317–322. DOI: 10.1016/j.nucengdes.2014.06.029. 6. Liang, Z., Gardner, L., Clouther, T., & Thomas, B. (2016). Experimental study of effect of ambient flow condition on the performance of a passive autocatalytic recombiner. Nucl. Eng