Found 380 results
2019
C. Kai Chang, Tun, H., and Chen, C. Chyun, An activity-based formulation for Langmuir adsorption isotherm, Adsorption, vol. 26, pp. 375-386, 2019.
S. Avraamidou and Pistikopoulos, E. N., A Bi-Level Formulation And Solution Method For The Integration Of Process Design And Scheduling, Computer Aided Chemical Engineering, vol. 47, pp. 17-22, 2019.
M. M. F. Hasan, Demirel, S. E., and Li, J., A Building Block Approach to Process Intensification, Chemical Engineering Progress, 2019.
S. Manoharan, Lee, K., Freiberg, L., Coblyn, M., Jovanovic, G., and Paul, B. K., Comparing the economics of metal additive manufacturing processes for micro-scale plate reactors in the chemical process industry, in Procedia Manufacturing, Pennsylvania, 2019, vol. 34, pp. 603-612.
A. K. Tula, Eden, M. R., and Gani, R., Component based development of computer-aided tools for different applications, Computer Aided Chemical Engineering, vol. 46, pp. 91–96, 2019.
A. K. Tula, Eden, M. R., and Gani, R., Computer‐aided process intensification: Challenges, trends and opportunities, AIChE Journal, vol. 66, p. e16819, 2019.
J. P. Polin, Carr, H. D., Whitmer, L. E., Smith, R. G., and Brown, R. C., Conventional and autothermal pyrolysis of corn stover: Overcoming the processing challenges of high-ash agricultural residues, Journal of Analytical and Applied Pyrolysis, vol. 143, p. 104679, 2019.
M. B. Gorensek, Shukre, R., and Chen, C. - C., Development of a Thermophysical Properties Model for Flowsheet Simulation of Biomass Pyrolysis Processes, ACS Sustainable Chemistry and Engineering, vol. 7, pp. 9017-9027, 2019.
L. Yan, Edgar, T. F., and Baldea, M., Dynamic process intensification of binary distillation based on output multiplicity, AIChE Journal, vol. 65, pp. 1162-1172, 2019.
S. Yusuf, Neal, L., Bao, Z., Wu, Z., and Li, F., Effects of Sodium and Tungsten Promoters on Mg 6 MnO 8 -Based Core-Shell Redox Catalysts for Chemical Looping - Oxidative Dehydrogenation of Ethane, ACS Catalysis, vol. 9, pp. 3174-3186, 2019.
S. Mohammadi and Cremaschi, S., Efficiency of Uncertainty Propagation Methods for Estimating Output Moments, Computer Aided Chemical Engineering, vol. 47, pp. 487-492, 2019.
P. Desir, Chen, T. - Y., Bracconi, M., Saha, B., Maestri, M., and Vlachos, D. G., Experiments and computations of microfluidic liquid–liquid flow patterns, Reaction Chemistry & Engineering, vol. 5, pp. 39-50, 2019.
S. Emre Demirel, Li, J., and Hasan, M. M. Faruque, A General Framework for Process Synthesis, Integration, and Intensification, Industrial & Engineering Chemistry Research, vol. 58, pp. 5950-5967, 2019.
Y. Tian and Pistikopoulos, E. N., Generalized Modular Representation Framework for the Synthesis of Extractive Separation Systems, Computer Aided Chemical Engineering, vol. 47, pp. 475-480, 2019.
Z. Wang, Ma, C., Sinquefield, S. A., Shofner, M. L., and Nair, S., High-Performance Graphene Oxide Nanofiltration Membranes for Black Liquor Concentration, ACS Sustainable Chemistry & Engineering, vol. 7, pp. 14915-14923, 2019.
A. K. Tula, Eden, M. R., and Gani, R., Hybrid method and associated tools for synthesis of sustainable process flowsheets, Computers and Chemical Engineering, vol. 131, p. 106572, 2019.
R. C. Brown, Intensification of Fast Pyrolysis, Chemical Engineering Progress, 2019.
L. M. Neal, Haribal, V. Pralhad, and Li, F., Intensified Ethylene Production via Chemical Looping through an Exergetically Efficient Redox Scheme, iScience, vol. 19, pp. 894-904, 2019.
H. Kaur, Tun, H., Sees, M., and Chen, C. - C., Local composition activity coefficient model for mixed-gas adsorption equilibria, Adsorption, vol. 25, pp. 951-964, 2019.
S. Hye Kim and Boukouvala, F., Machine learning-based surrogate modeling for data-driven optimization: a comparison of subset selection for regression techniques, Optimization Letters, vol. 14, pp. 989-1010, 2019.
G. Hüllen, Zhai, J., Kim, S. Hye, Sinha, A., Realff, M. J., and Boukouvala, F., Managing Uncertainty in Data-Driven Simulation-Based Optimization, Computers & Chemical Engineering, vol. 136, p. 106519, 2019.
L. Yan, Edgar, T. F., and Baldea, M., Maximizing energy savings attainable by dynamic intensification of binary distillation, Studia Universitatis Babes-Bolyai Chemia, vol. 64, pp. 357-369, 2019.
M. Ghayoor, Lee, K., He, Y., Chang, C. - H., Paul, B. K., and Pasebani, S., Microstructural Analysis of Additively Manufactured 304L Stainless Steel Oxide Dispersion Strengthened Alloy, Microscopy and Microanalysis, vol. 25, pp. 2594-2595, 2019.
X. Bai, Robinson, B., Killmer, C., Wang, Y., Li, L., and Hu, J., Microwave catalytic reactor for upgrading stranded shale gas to aromatics, Fuel, vol. 243, pp. 485–492, 2019.
S. Tiwari, Caiola, A., Bai, X., Lalsare, A., and Hu, J., Microwave Plasma-Enhanced and Microwave Heated Chemical Reactions, Plasma Chemistry and Plasma Processing, vol. 40, pp. 1-23, 2019.
L. Neal, Haribal, V., McCaig, J., H. Lamb, H., and Li, F., Modular-scale ethane to liquids via chemical looping oxidative dehydrogenation: Redox catalyst performance and process analysis, Journal of Advanced Manufacturing and Processing, vol. 1, p. e10015, 2019.
S. Tanveer and Chen, C. - C., Molecular thermodynamic modeling of aqueous Na + -K + -Mg 2+ -Ca 2+ -SO 42- quinary system, Fluid Phase Equilibria, vol. 491, pp. 77-87, 2019.
S. Avraamidou and Pistikopoulos, E. N., A Multi-Parametric optimization approach for bilevel mixed-integer linear and quadratic programming problems, Computers & Chemical Engineering, vol. 125, pp. 98-113, 2019.
R. B. Dudek, Tian, X., Blivin, M., Neal, L. M., Zhao, H., and Li, F., Perovskite oxides for redox oxidative cracking of n-hexane under a cyclic redox scheme, Applied Catalysis B: Environmental, vol. 246, pp. 30-40, 2019.
J. Touma, Freiberg, L., Coblyn, M., and Jovanovic, G., Phase separation in an additively manufactured micro-separator for intensified solvent extraction: An eye on numbering-up, Computer Aided Chemical Engineering, vol. 46, pp. 91-96, 2019.
A. K. Tula, Eden, M. R., and Gani, R., ProCAFD: Computer-aided Tool for Sustainable Process Synthesis, Intensification and Hybrid solutions, Computer Aided Chemical Engineering, vol. 46, pp. 481-486, 2019.
J. P. Polin, Peterson, C. A., Whitmer, L. E., Smith, R. G., and Brown, R. C., Process intensification of biomass fast pyrolysis through autothermal operation of a fluidized bed reactor, Applied Energy, vol. 249, pp. 276-285, 2019.
M. Ruth Rover, Aui, A., Wright, M. M., Smith, R. G., and Brown, R. Clinton, Production and purification of crystallized levoglucosan from pyrolysis of lignocellulosic biomass, Green Chemistry, vol. 21, pp. 5980-5989, 2019.
J. Bielenberg and Palou-Rivera, I., The RAPID Manufacturing Institute – Reenergizing US efforts in process intensification and modular chemical processing, Chemical Engineering and Processing - Process Intensification, vol. 138, pp. 49-54, 2019.
X. Tian, Dudek, R. B., Gao, Y., Zhao, H., and Li, F., Redox oxidative cracking of n-hexane with Fe-substituted barium hexaaluminates as redox catalysts, Catalysis Science and Technology, vol. 9, pp. 2211-2220, 2019.
S. Mirzababaei and Pasebani, S., A Review on Binder Jet Additive Manufacturing of 316L Stainless Steel, Journal of Manufacturing and Materials Processing, vol. 3, p. 82, 2019.
B. H. Caudle, Gorensek, M. B., and Chen, C. - C., A rigorous process modeling methodology for biomass fast pyrolysis with an entrained‐flow reactor, Journal of Advanced Manufacturing and Processing, vol. 2, 2019.
Q. Li, Wang, Y., Skoptsov, G., and Hu, J., Selective Hydrogenation of Acetylene to Ethylene over Bimetallic Catalysts, Industrial & Engineering Chemistry Research, vol. 58, pp. 20620-20629, 2019.
B. A. Williams and Cremaschi, S., Surrogate Model Selection for Design Space Approximation And Surrogate-model based Optimization, Computer Aided Chemical Engineering, vol. 47, pp. 353-358, 2019.
S. Emre Demirel, Li, J., and Hasan, M. M. Faruque, Sustainable Process Intensification Using Building Blocks, in Computer Aided Chemical Engineering, Copper Mountain, CO, 2019, vol. 47, pp. 157-162.
Y. Tian and Pistikopoulos, E. N., Synthesis of operable process intensification systems: advances and challenges, Current Opinion in Chemical Engineering, vol. 25, pp. 101-107, 2019.
Y. Tian and Pistikopoulos, E. N., Synthesis of Operable Process Intensification Systems - Steady-State Design with Safety and Operability Considerations, Industrial and Engineering Chemistry Research, vol. 58, pp. 6049-6068, 2019.
A. K. Tula, Eden, M. R., and Gani, R., Systematic Method and Tool for Sustainable Process Synthesis, Design, Analysis and Innovation, Computer Aided Chemical Engineering, vol. 47, pp. 385-390, 2019.
S. Emre Demirel, Li, J., and Hasan, M. M. Faruque, Systematic process intensification, Current Opinion in Chemical Engineering, vol. 25, pp. 108-113, 2019.
J. Li, Demirel, S. Emre, and Hasan, M. M. Faruque, Systematic Process Intensification involving Zeotropic Distillation, Computer Aided Chemical Engineering, vol. 47, pp. 421-426, 2019.
Y. Tian, Pappas, I. S., Burnak, B., Katz, J., Avraamidou, S., Diangelakis, N. A., and Pistikopoulos, E. N., Towards a systematic framework for the synthesis of operational process intensification systems - Application to reactive distillation systems, in 29th European Symposium on Computer-Aided Process Engineering (ESCAPE-29), 2019, vol. 46, pp. 73-78.
P. Desir, Saha, B., and Vlachos, D. G., Ultrafast flow chemistry for the acid-catalyzed conversion of fructose, Energy & Environmental Science, vol. 12, pp. 2463-2475, 2019.

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