1. Kulov, N.N. and Slin’ko, M.G., The state of the art in chemical engineering science and education, Theor. Found. Chem. Eng., 2004, vol. 38, no. 2, pp. 105–111. doi 10.1023/B:TFCE.0000022478.56133.81
2. Kulov, N.N. and Gordeev, L.S., Mathematical modeling in chemical engineering and biotechnology, Theor. Found. Chem. Eng., 2014, vol. 48, no. 3, pp. 225–229. doi 10.1134/S0040579514030099
3. Rossiisko-amerikanskaya nauchnaya shkola-konferentsiya “Modelirovanie i optimizatsiya khimiko-tekhnologicheskikh protsessov i sistem RAShKhI-2016": sbornik tezisov dokladov (The American-Russian Chemical Engineering Scientific School “Modeling and Optimization of Chemical Engineering Processes and Systems” (ARChESS-2016): Abstracts of Presentations) (Kazan, 2016), Ziyatdinov, N.N., Lapteva, T.V., and Sil’vestrova, A.S., Eds., Kazan: Kazan. Nats. Issled. Tekhnol. Univ., 2016.
4. Ziyatdinov, N.N., Computer simulation and optimization in chemical technology, Theor. Found. Chem. Eng., 2014, vol. 48, no. 5, pp. 539–540. doi 10.1134/S0040579514050261
5. Grossmann, I.E., Apap, R.M., Calfa, B.A., Garcia-Herreros, P., and Zhang, Q., Mathematical programming techniques for optimization under uncertainty and their application in process systems engineering, Theor. Found. Chem. Eng., 2017, vol. 51, no. 6, pp. 893–909.