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2019
A Building Block Approach to Process Intensification. 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.
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.
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.
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, 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.
S. E. Demirel, Li, J., and Hasan, M. M. F., Sustainable Process Intensification Using Building Blocks, ACS Sustainable Chemistry & Engineering, vol. 8, pp. 157–162, 2019.
Y. Tian and Pistikopoulos, E. N., Synthesis of operable process intensification systems: advances and challenges, Nanotechnology: water-energy nexus ● Process Systems Engineering: process intensification, 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.
S. Emre Demirel, Li, J., and Hasan, M. M. Faruque, Systematic process intensification, Nanotechnology: water-energy nexus ● Process Systems Engineering: process intensification, vol. 25, pp. 108–113, 2019.
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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