A Methodological Sustainability Assessment to Process Intensification (MSAtoPI) by reactive-separation systems

Seckin Karagoz
Karagöz, S. (2023). A Methodological Sustainability Assessment to Process Intensification (MSAtoPI) by reactive-separation systems. Fuel, 348, 128562.

A Numerical Study of Hydrogen Production via High-temperature and Low-temperature Water-Gas Shift Reactors’ System: The Multi-Scale Modeling Approach and Simulation

Seçgin Karagöz
KARAGÖZ, S. (2017). A Numerical Study of Hydrogen Production via High-temperature and Low-temperature Water-Gas Shift Reactors’ System: The Multi-Scale Modeling Approach and Simulation. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 21(5), 1167-1180.

 

Accurately predicting the performance of MOF-based mixed matrix membranes for CO2 removal using a novel optimized extreme learning machine by BAT algorithm

Meysam Alizamir, Ahmad Keshavarz, Farideh Abdollahi, Arash Khosravi, Seçkin Karagöz
Alizamir, M., Keshavarz, A., Abdollahi, F., Khosravi, A., & Karagöz, S. (2023). Accurately predicting the performance of MOF-based mixed matrix membranes for CO2 removal using a novel optimized extreme learning machine by BAT algorithm. Separation and Purification Technology, 325, 124689.

An insight into environmental footprints of emerging air-conditioning systems towards sustainable cities

Benyamin Bordbar, Arash Khosravi, Farideh Abdollahi, Seyyed Abdollatif Hashemifard, Seçkin Karagöz
Bordbar, B., Khosravi, A., Abdollahi, F., Hashemifard, S. A., & Karagöz, S. (2023). An insight into environmental footprints of emerging air-conditioning systems towards sustainable cities. Sustainable Cities and Society, 98, 104830.

Comparison of the mechanical properties of chopped glass, carbon, and aramid fiber reinforced polypropylene

Ali Ari, Ali Bayram, Mehmet Karahan, Seçgin Karagöz
Ari, A., Bayram, A., Karahan, M., & Karagöz, S. (2022). Comparison of the mechanical properties of chopped glass, carbon, and aramid fiber reinforced polypropylene. Polymers and Polymer Composites, 30, 09673911221098570.

Evaluation of the mechanical properties of chopped carbon fibre reinforced polypropylene, polyethylene, polyamide 6, and polyamide 12 composites

Ari Ali, Bayram Ali, MEHMET KARAHAN, KARAGÖZ Secgin

Integrated Multi-scale Modelling-Simulation (MMS) and Machine Learning (ML) based Design and Development of Novel Systems/technologies

Seckin Karagoz
Karagöz, S. (2023). Integrated Multi-scale Modelling-Simulation (MMS) and Machine Learning (ML) based Design and Development of Novel Systems/technologies.

Membrane-based reactive separations for process intensification during power generation

Garshasbi, A., Chen, H., Cao, M., Karagöz, S., Ciora Jr, R.J., Liu, P.K., Manousiouthakis, V.I. and Tsotsis, T.T.
Garshasbi, A., Chen, H., Cao, M., Karagöz, S., Ciora Jr, R. J., Liu, P. K., ... & Tsotsis, T. T. (2019). Membrane-based reactive separations for process intensification during power generation. Catalysis Today, 331, 18-29.

 

Multi-scale membrane reactor (MR) modeling and simulation for the water gas shift reaction

Karagöz, S., da Cruz, F.E., Tsotsis, T.T. and Manousiouthakis, V.I.
Karagöz, S., da Cruz, F. E., Tsotsis, T. T., & Manousiouthakis, V. I. (2018). Multi-scale membrane reactor (MR) modeling and simulation for the water gas shift reaction. Chemical Engineering and Processing-Process Intensification, 133, 245-262.

 

Multi-scale model based design of membrane reactor/separator processes for intensified hydrogen production through the water gas shift reaction

Karagöz, S., Tsotsis, T.T. and Manousiouthakis, V.I.
Karagöz, S., Tsotsis, T. T., & Manousiouthakis, V. I. (2020). Multi-scale model based design of membrane reactor/separator processes for intensified hydrogen production through the water gas shift reaction. International Journal of Hydrogen Energy, 45(12), 7339-7353.

 

Multi-scale modeling and simulation of a novel membrane reactor (MR)/adsorptive reactor (AR) process

Karagöz, S., Tsotsis, T.T. and Manousiouthakis, V.I.
Karagöz, S., Tsotsis, T. T., & Manousiouthakis, V. I. (2019). Multi-scale modeling and simulation of a novel membrane reactor (MR)/adsorptive reactor (AR) process. Chemical Engineering and Processing-Process Intensification, 137, 148-158.

 

Multiscale model based design of an energy‐intensified novel adsorptive reactor process for the water gas shift reaction

Karagöz, S., Chen, H., Cao, M., Tsotsis, T.T. and Manousiouthakis, V.I.
Karagöz, S., Chen, H., Cao, M., Tsotsis, T. T., & Manousiouthakis, V. I. (2019). Multiscale model based design of an energy‐intensified novel adsorptive reactor process for the water gas shift reaction. AIChE Journal, 65(7), e16608.

 

Parametric studies of steam methane reforming using a multiscale reactor model

Flavio Eduardo da CruzOrcid, Seçgin Karagöz, and Vasilios I. Manousiouthakis*Orcid
da Cruz, F. E., Karagöz, S., & Manousiouthakis, V. I. (2017). Parametric studies of steam methane reforming using a multiscale reactor model. Industrial & Engineering Chemistry Research, 56(47), 14123-14139.

 

Technical economic analysis of an intensified Integrated Gasification Combined Cycle (IGCC) power plant featuring a sequence of membrane reactors

Pichardo, P.A., Karagöz, S., Tsotsis, T., Ciora, R. and Manousiouthakis, V.I.
Pichardo, P. A., Karagöz, S., Tsotsis, T., Ciora, R., & Manousiouthakis, V. I. (2019). Technical economic analysis of an intensified Integrated Gasification Combined Cycle (IGCC) power plant featuring a sequence of membrane reactors. Journal of Membrane Science, 579, 266-282.

 

Techno-economic analysis of an intensified integrated gasification combined cycle (IGCC) power plant featuring a combined membrane reactor-adsorptive reactor (MR-AR) system

Pichardo, P.A., Karagöz, S., Manousiouthakis, V.I., Tsotsis, T. and Ciora, R.
Pichardo, P. A., Karagöz, S., Manousiouthakis, V. I., Tsotsis, T., & Ciora, R. (2019). Techno-economic analysis of an intensified integrated gasification combined cycle (IGCC) power plant featuring a combined membrane reactor-adsorptive reactor (MR-AR) system. Industrial & Engineering Chemistry Research, 59(6), 2430-2440.

 

The use of artificial neural network for prediction of dissolution kinetics

H Elçiçek, E Akdoğan, S Karagöz
Elçiçek, H., Akdoğan, E., & Karagöz, S. (2014). The use of artificial neural network for prediction of dissolution kinetics. The Scientific World Journal, 2014.