Found 519 results
2021
M. Rashedul Islam, Tanveer, S., and Chen, C. Chyun, Modeling swelling behavior of hydrogels in aqueous organic solvents, Chemical Engineering Science, vol. 242, p. 116744, 2021.
M. Rashedul Islam, Tanveer, S., and Chen, C. Chyun, Modeling swelling behavior of hydrogels in aqueous organic solvents, Chemical Engineering Science, vol. 242, p. 116744, 2021.
A. Bhosekar, Badejo, O., and Ierapetritou, M., Modular supply chain optimization considering demand uncertainty to manage risk, AIChE Journal, vol. 67, 2021.
M. Rashedul Islam, Hsieh, I. - M., Lin, B., Thakur, A. K., Chen, C. - C., and Malmali, M., Molecular thermodynamics for scaling prediction: Case of membrane distillation, Separation and Purification Technology, vol. 276, p. 119231, 2021.
M. Rashedul Islam, Hsieh, I. - M., Lin, B., Thakur, A. K., Chen, C. - C., and Malmali, M., Molecular thermodynamics for scaling prediction: Case of membrane distillation, Separation and Purification Technology, vol. 276, p. 119231, 2021.
N. Kassem, Galantino, C. R., Tester, J. W., C. Anderson, L., and Moore, M. C., Moving toward a framework for electricity and heat equivalence in energy systems analysis, iScience, vol. 24, p. 103123, 2021.
A. Bhosekar, Athaley, A., and Ierapetritou, M., Multiobjective Modular Biorefinery Configuration under Uncertainty, Industrial & Engineering Chemistry Research, vol. 60, pp. 12956–12969, 2021.
C. Mevawala, Bai, X., Kotamreddy, G., Bhattacharyya, D., and Hu, J., Multiscale Modeling of a Direct Nonoxidative Methane Dehydroaromatization Reactor with a Validated Model for Catalyst Deactivation, Industrial & Engineering Chemistry Research, vol. 60, pp. 4903–4918, 2021.
C. Mevawala, Bai, X., Kotamreddy, G., Bhattacharyya, D., and Hu, J., Multiscale Modeling of a Direct Nonoxidative Methane Dehydroaromatization Reactor with a Validated Model for Catalyst Deactivation, Industrial & Engineering Chemistry Research, vol. 60, pp. 4903–4918, 2021.
J. K. Lindstrom, Brown, J. L., Peterson, C. A., Ghosh, A., Rollag, S. A., Kouris, P. D., Boot, M. D., Hensen, E. J. M., Gable, P., Smith, R. G., and Brown, R. C., A novel semi-batch autoclave reactor to overcome thermal dwell time in solvent liquefaction experiments, Chemical Engineering Journal, vol. 417, p. 128074, 2021.
B. Williams and Cremaschi, S., Novel Tool for Selecting Surrogate Modeling Techniques for Surface Approximation, 31 European Symposium on Computer Aided Process Engineering, vol. 50, pp. 451–456, 2021.
E. N. Pistikopoulos, Tian, Y., and Bindlish, R., Operability and control in process intensification and modular design: Challenges and opportunities, AIChE Journal, vol. 67, p. e17204, 2021.
E. N. Pistikopoulos, Tian, Y., and Bindlish, R., Operability and control in process intensification and modular design: Challenges and opportunities, AIChE Journal, vol. 67, p. e17204, 2021.
C. Ekici, Kipp, D., Ho, C. R., Biegler, L. T., and Witt, P. M., Prediction of the Thermal Runaway Limit and Optimal Operation of Heat Transfer-Limited, Fixed-Bed Reactor Systems, Industrial & Engineering Chemistry Research, vol. 60, pp. 15087–15094, 2021.
Y. Tian and Pistikopoulos, E. N., A process intensification synthesis framework for the design of extractive separation systems with material selection, Journal of Advanced Manufacturing and Processing, 2021.
C. S. Adjiman, Sahinidis, N. V., Vlachos, D. G., Bakshi, B., Maravelias, C. T., and Georgakis, C., Process Systems Engineering Perspective on the Design of Materials and Molecules, Industrial & Engineering Chemistry Research, vol. 60, pp. 5194–5206, 2021.
C. S. Adjiman, Sahinidis, N. V., Vlachos, D. G., Bakshi, B., Maravelias, C. T., and Georgakis, C., Process Systems Engineering Perspective on the Design of Materials and Molecules, Industrial & Engineering Chemistry Research, vol. 60, pp. 5194–5206, 2021.
S. Wu, Henry, L., Tatarchuk, B. J., and Adamczyk, A. J., Reaction pathway and selectivity analysis for ethylene oxidation on Ag catalysts using a multi-scale modeling approach, in Annual ACS Meeting, Fall 2021, Atlanta, GA, USA., 2021.
Y. Wang, Kalscheur, J., Su, Y. - Q., Hensen, E. J. M., and Vlachos, D. G., Real-time dynamics and structures of supported subnanometer catalysts via multiscale simulations, Nature Communications, vol. 12, 2021.
H. Bhattacharjee, Anesiadis, N., and Vlachos, D. G., Regularized machine learning on molecular graph model explains systematic error in DFT enthalpies, Scientific Reports 2021 11:1, vol. 11, pp. 1–10, 2021.
H. Bhattacharjee, Anesiadis, N., and Vlachos, D. G., Regularized machine learning on molecular graph model explains systematic error in DFT enthalpies, Scientific Reports 2021 11:1, vol. 11, pp. 1–10, 2021.
V. K. V. Doddapaneni, Lee, K., Colbert, T. T., Mirzababaei, S., Paul, B. K., Pasebani, S., and Chang, C. - H., A Scalable Solution Route to Porous Networks of Nanostructured Black Tungsten, Nanomaterials, vol. 11, 2021.
J. L. Lansford, Kurdziel, S. J., and Vlachos, D. G., Scaling of Transition State Vibrational Frequencies and Application of d-Band Theory to the Brønsted-Evans-Polanyi Relationship on Surfaces, Journal of Physical Chemistry C, 2021.
J. L. Lansford, Kurdziel, S. J., and Vlachos, D. G., Scaling of Transition State Vibrational Frequencies and Application of d-Band Theory to the Brønsted-Evans-Polanyi Relationship on Surfaces, Journal of Physical Chemistry C, 2021.
B. Williams and Cremaschi, S., Selection of surrogate modeling techniques for surface approximation and surrogate-based optimization, Chemical Engineering Research and Design, vol. 170, pp. 76–89, 2021.
R. B. Dudek and Li, F., Selective hydrogen combustion as an effective approach for intensified chemical production via the chemical looping strategy, Fuel Processing Technology, vol. 218, p. 106827, 2021.
R. B. Dudek and Li, F., Selective hydrogen combustion as an effective approach for intensified chemical production via the chemical looping strategy, Fuel Processing Technology, vol. 218, p. 106827, 2021.
F. Yang, Wang, B., Baimoldina, A., Song, Y., Altemose, P., Kowall, C., and Li, L., Separating a multicomponent and multiphase liquid mixture with a 3D-printed membrane device, RSC Advances, vol. 11, pp. 40033–40039, 2021.
M. D. Sees, Kirkes, T., and Chen, C. Chyun, A simple and practical process modeling methodology for pressure swing adsorption, Computers and Chemical Engineering, vol. 147, p. 107235, 2021.
M. D. Sees, Kirkes, T., and Chen, C. Chyun, A simple and practical process modeling methodology for pressure swing adsorption, Computers and Chemical Engineering, vol. 147, p. 107235, 2021.
Y. Tian, Pappas, I., Burnak, B., Katz, J., and Pistikopoulos, E. N., Simultaneous design & control of a reactive distillation system – A parametric optimization & control approach, Chemical Engineering Science, vol. 230, p. 116232, 2021.
Y. Tian, Pappas, I., Burnak, B., Katz, J., and Pistikopoulos, E. N., Simultaneous design & control of a reactive distillation system – A parametric optimization & control approach, Chemical Engineering Science, vol. 230, p. 116232, 2021.
M. Sadaf Monjur, Demirel, S. Emre, Li, J., and Hasan, M. M. Faruque, SPICE_MARS: A Process Synthesis Framework for Membrane-Assisted Reactive Separations, Industrial & Engineering Chemistry Research, 2021.
M. Sadaf Monjur, Demirel, S. Emre, Li, J., and Hasan, M. M. Faruque, SPICE_MARS: A Process Synthesis Framework for Membrane-Assisted Reactive Separations, Industrial & Engineering Chemistry Research, vol. 60, pp. 7635–7655, 2021.
W. Chen, Malhotra, A., Yu, K., Zheng, W., Plaza-Gonzalez, P. J., Catala-Civera, J. M., Santamaria, J., and Vlachos, D. G., A Stable and Intensified microwave-assisted heterogeneous catalytic reactors for sustainable chemical manufacturing, Chemical Engineering Journal, vol. 420, p. 130476, 2021.
A. Hussain Motagamwala, Almallahi, R., Wortman, J., Igenegbai, V. Omoze, and Linic, S., Stable and selective catalysts for propane dehydrogenation operating at thermodynamic limit, Science, vol. 373, pp. 217–222, 2021.
A. Hussain Motagamwala, Almallahi, R., Wortman, J., Igenegbai, V. Omoze, and Linic, S., Stable and selective catalysts for propane dehydrogenation operating at thermodynamic limit, Science, vol. 373, pp. 217–222, 2021.
L. Yan, Witt, P. M., Edgar, T. F., and Baldea, M., Static and Dynamic Intensification of Water–Ethylene Glycol Separation Using a Dividing Wall Column, Industrial and Engineering Chemistry Research, vol. 60, 2021.
D. Shade, Marszalek, B., and Walton, K. S., Structural similarity, synthesis, and adsorption properties of aluminum-based metal-organic frameworks, Adsorption, vol. 27, pp. 227–236, 2021.
D. Shade, Marszalek, B., and Walton, K. S., Structural similarity, synthesis, and adsorption properties of aluminum-based metal-organic frameworks, Adsorption, vol. 27, pp. 227–236, 2021.
E. N. Pistikopoulos, Hasan, M. M. Faruque, Kwon, J. S., Realff, M. J., Boukouvala, F., Eden, M. R., Cremaschi, S., Tatarchuk, B. J., Powell, J. B., Demirhan, D., Klokkenburg, M., Matzakos, A., Heuberger, C. F., Bindlish, R., and Leyland, S., SYNOPSIS – Synthesis of Operable Process Intensification Systems, in PSE Advanced Process Modelling Forum, 2021.
A. Athaley, Zhang, Y., Papoutsakis, E. T., and Ierapetritou, M., Techno-economic and Life Cycle Analysis of MixAlco® Processes for Mixed Alcohol Production from Brown Algae, Applied Biochemistry and Biotechnology, vol. 193, pp. 2964–2982, 2021.
A. Malhotra, Chen, W., Goyal, H., Plaza-Gonzalez, P. J., Julian, I., Catala-Civera, J. M., and Vlachos, D. G., Temperature Homogeneity under Selective and Localized Microwave Heating in Structured Flow Reactors, Industrial and Engineering Chemistry Research, 2021.
A. Malhotra, Chen, W., Goyal, H., Plaza-Gonzalez, P. J., Julian, I., Catala-Civera, J. M., and Vlachos, D. G., Temperature Homogeneity under Selective and Localized Microwave Heating in Structured Flow Reactors, Industrial and Engineering Chemistry Research, 2021.
T. E. Kirkes, Saravi, S. H., and Chen, C. Chyun, Thermodynamic Modeling of Aqueous LiCl, LiBr, LiI, and LiNO3 Solutions, Fluid Phase Equilibria, vol. 531, p. 112914, 2021.
T. E. Kirkes, Saravi, S. H., and Chen, C. - C., Thermodynamic Modeling of Aqueous LiCl, LiBr, LiI, and LiNO3 Solutions, Fluid Phase Equilibria, vol. 531, p. 112914, 2021.
G. N. Jovanovic, Coblyn, M. Y., and Plazl, I., Time scale analysis & characteristic times in microscale-based bio-chemical processes: Part II – Bioreactors with immobilized cells, and process flowsheet analysis, Chemical Engineering Science, vol. 236, p. 116499, 2021.
G. N. Jovanovic, Coblyn, M. Y., and Plazl, I., Time scale analysis & characteristic times in microscale-based bio-chemical processes: Part II – Bioreactors with immobilized cells, and process flowsheet analysis, Chemical Engineering Science, vol. 236, p. 116499, 2021.
G. N. Jovanovic, Coblyn, M. Y., and Plazl, I., Time scale analysis & characteristic times in microscale-based chemical and biochemical processes: Part I – Concepts and origins, Chemical Engineering Science, vol. 238, p. 116502, 2021.
G. N. Jovanovic, Coblyn, M. Y., and Plazl, I., Time scale analysis & characteristic times in microscale-based chemical and biochemical processes: Part I – Concepts and origins, Chemical Engineering Science, vol. 238, p. 116502, 2021.

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