Ji, L., & Huailin, D. (2009, July). Research on logistics distribution center location problem based
on genetic algorithm and AHP. In 2009 4th international conference on Computer Science &
Education (pp. 213–217). IEEE.
Karasakal, O., & Karasakal, E. K. (2004). A maximal covering location model in the presence of
partial coverage. Computers & Operations Research, 31(9), 1515–1526.
Kemp, K. (2008). Encyclopedia of geographic information science. London: Sage.
Khan, C., Anwar, S., Bashir, S., Rauf, A., Amin, A. J. J. o. I., & Systems, F. (2015). Site selection
for food distribution using rough set approach and TOPSIS method. Journal of Intelligent &
Fuzzy Systems, 29(6), 2413–2419.
Kheybari, S., Kazemi, M., & Rezaei, J. (2019a). Bioethanol facility location selection using bestworst method. Applied Energy, 242, 612–623.
Kheybari, S., Rezaie, F. M., & Rezaei, J. (2019b). Measuring the importance of decision-making
criteria in biofuel production technology selection. IEEE Transactions on Engineering
Management. https://doi.org/10.1109/TEM.2019.2908037.
Kuo, M.-S. J. E. S. w. A. (2011). Optimal location selection for an international distribution center
by using a new hybrid method. Expert Systems with Applications, 38(6), 7208–7221.
Lanza-Gutierrez, J. M., Crawford, B., Soto, R., Berrios, N., Gomez-Pulido, J. A., & Paredes,
F. (2017). Analyzing the effects of binarization techniques when solving the set covering
problem through swarm optimization. Expert Systems with Applications, 70, 67–82.
Lee, H.-S. (2005, August). A fuzzy multi-criteria decision making model for the selection of the
distribution center. In International conference on natural computation (pp. 1290–1299).
Berlin, Heidelberg: Springer.
Lee, K.-l., & Lin, S.-c. J. I. S. (2008). A fuzzy quantified SWOT procedure for environmental
evaluation of an international distribution center. Information Sciences, 178(2), 531–549.
Løken, E., & Botterud, A. (2005). Planning of mixed local energy distribution systems: A comparison of two multi-criteria decision methods. Paper presented at the 28th Annual IAEE International Conference, Taipei, Taiwan.
Neumüller, C., Kellner, F., Gupta, J. N., & Lasch, R. J. I. J. o. P. R. (2015). Integrating threedimensional sustainability in distribution centre selection: The process analysis method-based
analytic network process. International Journal of Production Research, 53(2), 409–434.
Onstein, A. T., Ektesaby, M., Rezaei, J., Tavasszy, L. A., & van Damme, D. A. (2020). Importance
of factors driving firms’ decisions on spatial distribution structures. International Journal of
Logistics Research and Applications, 23(1), 24–43.
Ou, C.-W., & Chou, S.-Y. J. E. s. w. a. (2009). International distribution center selection from a
foreign market perspective using a weighted fuzzy factor rating system. Expert systems with
applications, 36(2), 1773–1782.
Prasad, S., Dhanya, M., Gupta, N., & Kumar, A. (2012). Biofuels from biomass: A sustainable
alternative to energy and environment. Biochemical and Cellular Archives, 12(2), 255–260.
Rezaei, J. (2015). Best-worst multi-criteria decision-making method. Omega, 53, 49–57. https://doi.
org/10.1016/j.omega.2014.11.009.
Rezaei, J. J. O. (2016). Best-worst multi-criteria decision-making method: Some properties and a
linear model. Omega, 64, 126–130.
Rezaei, J., Papakonstantinou, A., Tavasszy, L., Pesch, U., & Kana, A. (2019). Sustainable productpackage design in a food supply chain: A multi-criteria life cycle approach. Packaging Technology and Science, 32(2), 85–101.
Saini, J. K., Agrawal, R., Satlewal, A., Saini, R., Gupta, R., Mathur, A., & Tuli, D. (2015). Second
generation bioethanol production at high gravity of pilot-scale pretreated wheat straw
employing newly isolated thermotolerant yeast Kluyveromyces marxianus DBTIOC-35. RSC
Advances, 5(47), 37485–37494.
Santibañez-Aguilar, J. E., González-Campos, J. B., Ponce-Ortega, J. M., Serna-González, M., &
El-Halwagi, M. M. (2014). Optimal planning and site selection for distributed multiproduct
biorefineries involving economic, environmental and social objectives. Journal of Cleaner
Production, 65, 270–294.
5 Location Selection of Bioethanol Distribution Centers
91
on genetic algorithm and AHP. In 2009 4th international conference on Computer Science &
Education (pp. 213–217). IEEE.
Karasakal, O., & Karasakal, E. K. (2004). A maximal covering location model in the presence of
partial coverage. Computers & Operations Research, 31(9), 1515–1526.
Kemp, K. (2008). Encyclopedia of geographic information science. London: Sage.
Khan, C., Anwar, S., Bashir, S., Rauf, A., Amin, A. J. J. o. I., & Systems, F. (2015). Site selection
for food distribution using rough set approach and TOPSIS method. Journal of Intelligent &
Fuzzy Systems, 29(6), 2413–2419.
Kheybari, S., Kazemi, M., & Rezaei, J. (2019a). Bioethanol facility location selection using bestworst method. Applied Energy, 242, 612–623.
Kheybari, S., Rezaie, F. M., & Rezaei, J. (2019b). Measuring the importance of decision-making
criteria in biofuel production technology selection. IEEE Transactions on Engineering
Management. https://doi.org/10.1109/TEM.2019.2908037.
Kuo, M.-S. J. E. S. w. A. (2011). Optimal location selection for an international distribution center
by using a new hybrid method. Expert Systems with Applications, 38(6), 7208–7221.
Lanza-Gutierrez, J. M., Crawford, B., Soto, R., Berrios, N., Gomez-Pulido, J. A., & Paredes,
F. (2017). Analyzing the effects of binarization techniques when solving the set covering
problem through swarm optimization. Expert Systems with Applications, 70, 67–82.
Lee, H.-S. (2005, August). A fuzzy multi-criteria decision making model for the selection of the
distribution center. In International conference on natural computation (pp. 1290–1299).
Berlin, Heidelberg: Springer.
Lee, K.-l., & Lin, S.-c. J. I. S. (2008). A fuzzy quantified SWOT procedure for environmental
evaluation of an international distribution center. Information Sciences, 178(2), 531–549.
Løken, E., & Botterud, A. (2005). Planning of mixed local energy distribution systems: A comparison of two multi-criteria decision methods. Paper presented at the 28th Annual IAEE International Conference, Taipei, Taiwan.
Neumüller, C., Kellner, F., Gupta, J. N., & Lasch, R. J. I. J. o. P. R. (2015). Integrating threedimensional sustainability in distribution centre selection: The process analysis method-based
analytic network process. International Journal of Production Research, 53(2), 409–434.
Onstein, A. T., Ektesaby, M., Rezaei, J., Tavasszy, L. A., & van Damme, D. A. (2020). Importance
of factors driving firms’ decisions on spatial distribution structures. International Journal of
Logistics Research and Applications, 23(1), 24–43.
Ou, C.-W., & Chou, S.-Y. J. E. s. w. a. (2009). International distribution center selection from a
foreign market perspective using a weighted fuzzy factor rating system. Expert systems with
applications, 36(2), 1773–1782.
Prasad, S., Dhanya, M., Gupta, N., & Kumar, A. (2012). Biofuels from biomass: A sustainable
alternative to energy and environment. Biochemical and Cellular Archives, 12(2), 255–260.
Rezaei, J. (2015). Best-worst multi-criteria decision-making method. Omega, 53, 49–57. https://doi.
org/10.1016/j.omega.2014.11.009.
Rezaei, J. J. O. (2016). Best-worst multi-criteria decision-making method: Some properties and a
linear model. Omega, 64, 126–130.
Rezaei, J., Papakonstantinou, A., Tavasszy, L., Pesch, U., & Kana, A. (2019). Sustainable productpackage design in a food supply chain: A multi-criteria life cycle approach. Packaging Technology and Science, 32(2), 85–101.
Saini, J. K., Agrawal, R., Satlewal, A., Saini, R., Gupta, R., Mathur, A., & Tuli, D. (2015). Second
generation bioethanol production at high gravity of pilot-scale pretreated wheat straw
employing newly isolated thermotolerant yeast Kluyveromyces marxianus DBTIOC-35. RSC
Advances, 5(47), 37485–37494.
Santibañez-Aguilar, J. E., González-Campos, J. B., Ponce-Ortega, J. M., Serna-González, M., &
El-Halwagi, M. M. (2014). Optimal planning and site selection for distributed multiproduct
biorefineries involving economic, environmental and social objectives. Journal of Cleaner
Production, 65, 270–294.
5 Location Selection of Bioethanol Distribution Centers
91
