A mathematical model to design a lignocellulosic biofuel supply chain system with a case study based on a region in Central Texas

Author:

An Heungjo,Wilhelm Wilbert E.,Searcy Stephen W.

Publisher

Elsevier BV

Subject

Waste Management and Disposal,Renewable Energy, Sustainability and the Environment,General Medicine,Environmental Engineering,Bioengineering

Reference33 articles.

1. Acharya, A.M., Ekşioğlu, S.D., Petrolia, D., 2008. In-bound supply chain design for biomass-to-ethanol industry: a study of Mississippi. In: Proceedings of the 2008 Industrial Engineering Research Conference, pp. 1296–1301.

2. Aden, A., Ruth, M., Ibsen, K., Jechura, J., Neeves, K., Sheehan, J., Wallace, B., 2002. Lignocellulosic biomass to ethanol process design and economics utilizing co-current dilute acid prehydrolysis and enzymatic hydrolysis for corn stover. Technical Report NREL/TP-510-32438.

3. Anderson, K.B., Noyes, R.T., 2010. Grain storage costs in Oklahoma. OSU Fact Sheets.

4. A new mixed-integer programming model for harvest scheduling subject to maximum area restrictions;Constantino;Oper Res.,2008

5. A linear programming approach for designing a herbaceous biomass delivery system;Cundiff;Bioresour. Technol.,1997

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