- Aboytes-Ojeda, M.; Castillo-Villar, K.K.; Roni, M.S. A decomposition approach based on meta-heuristics and exact methods for solving a two-stage stochastic biofuel hub-and-spoke network problem. J. Clean. Prod. 2020, 247, 119176. [CrossRef]
Paper not yet in RePEc: Add citation now
Abriyantoro, D.; Dong, J.; Hicks, C.; Singh, S.P. A stochastic optimisation model for biomass outsourcing in the cement manufacturing industry with production planning constraints. Energy 2019, 169, 515–526. [CrossRef]
- Ahmadi, L.; Kannangara, M.; Bensebaa, F. Cost-effectiveness of small scale biomass supply chain and bioenergy production systems in carbon credit markets: A life cycle perspective. Sustain. Energy Technol. Assess. 2020, 37, 100627. [CrossRef]
Paper not yet in RePEc: Add citation now
Ajanovic, A. Biofuels versus food production: Does biofuels production increase food prices? Energy 2011, 36, 2070–2076. [CrossRef]
Ajanovic, A.; Haas, R. On the future prospects and limits of biofuels in Brazil, the US and EU. Appl. Energy 2014, 135, 730–737. [CrossRef]
- Akgul, O.; Mac Dowell, N.; Papageorgiou, L.; Shah, N. A mixed integer nonlinear programming (MINLP) supply chain optimisation framework for carbon negative electricity generation using biomass to energy with CCS (BECCS) in the UK. Int. J. Greenh. Gas Control. 2014, 28, 189–202. [CrossRef]
Paper not yet in RePEc: Add citation now
- Akgul, O.; Zamboni, A.; Bezzo, F.; Shah, N.; Papageorgiou, L.G. Optimization-Based Approaches for Bioethanol Supply Chains. Ind. Eng. Chem. Res. 2011, 50, 4927–4938. [CrossRef]
Paper not yet in RePEc: Add citation now
Albashabsheh, N.T.; Stamm, J.L.H. Optimization of lignocellulosic biomass-to-biofuel supply chains with mobile pelleting. Transp. Res. Part E Logist. Transp. Rev. 2019, 122, 545–562. [CrossRef]
- Amigun, B.; Musango, J.K.; Stafford, W. Biofuels and sustainability in Africa. Renew. Sustain. Energy Rev. 2011, 15, 1360–1372. [CrossRef]
Paper not yet in RePEc: Add citation now
- Aranguren, M.; Castillo-Villar, K.K.; Aboytes-Ojeda, M. A two-stage stochastic model for co-firing biomass supply chain networks. J. Clean. Prod. 2021, 319, 128582. [CrossRef]
Paper not yet in RePEc: Add citation now
- Awudu, I.; Zhang, J. Uncertainties and sustainability concepts in biofuel supply chain management: A review. Renew. Sustain. Energy Rev. 2012, 16, 1359–1368. [CrossRef]
Paper not yet in RePEc: Add citation now
- Ba, B.H.; Prins, C.; Prodhon, C. Models for optimization and performance evaluation of biomass supply chains: An Operations Research perspective. Renew. Energy 2016, 87, 977–989. [CrossRef]
Paper not yet in RePEc: Add citation now
- Bairamzadeh, S.; Pishvaee, M.S.; Saidi-Mehrabad, M. Multiobjective Robust Possibilistic Programming Approach to Sustainable Bioethanol Supply Chain Design under Multiple Uncertainties. Ind. Eng. Chem. Res. 2016, 55, 237–256. [CrossRef]
Paper not yet in RePEc: Add citation now
Balaman, Y.; Selim, H. A network design model for biomass to energy supply chains with anaerobic digestion systems. Appl. Energy 2014, 130, 289–304. [CrossRef]
- Balaman, Y.; Selim, H. Sustainable design of renewable energy supply chains integrated with district heating systems: A fuzzy optimization approach. J. Clean. Prod. 2016, 133, 863–885. [CrossRef]
Paper not yet in RePEc: Add citation now
- Birge, J.R.; Louveaux, F. Introduction to Stochastic Programming; Springer Science & Business Media: Berlin/Heidelberg, Germany, 2011.
Paper not yet in RePEc: Add citation now
- Bowling, I.M.; Ponce-Ortega, J.M.; El-Halwagi, M.M. Facility Location and Supply Chain Optimization for a Biorefinery. Ind. Eng. Chem. Res. 2011, 50, 6276–6286. [CrossRef]
Paper not yet in RePEc: Add citation now
- Bruglieri, M.; Liberti, L. Optimal running and planning of a biomass-based energy production process. Energy Policy 2008, 36, 2430–2438. [CrossRef]
Paper not yet in RePEc: Add citation now
- Buchholz, T.; Rametsteiner, E.; Volk, T.A.; Luzadis, V.A. Multi Criteria Analysis for bioenergy systems assessments. Energy Policy 2009, 37, 484–495. [CrossRef]
Paper not yet in RePEc: Add citation now
Cambero, C.; Sowlati, T. Incorporating social benefits in multi-objective optimization of forest-based bioenergy and biofuel supply chains. Appl. Energy 2016, 178, 721–735. [CrossRef]
- Cobuloglu, H.I.; Büyüktahtakın, I.E. A two-stage stochastic mixed-integer programming approach to the competition of biofuel and food production. Comput. Ind. Eng. 2017, 107, 251–263. [CrossRef]
Paper not yet in RePEc: Add citation now
Cooper, N.; Panteli, A.; Shah, N. Linear estimators of biomass yield maps for improved biomass supply chain optimisation. Appl. Energy 2019, 253, 113526. [CrossRef]
- Čuček, L.; Varbanov, P.S.; Klemeš, J.J.; Kravanja, Z. Total footprints-based multi-criteria optimisation of regional biomass energy supply chains. Energy 2012, 44, 135–145. [CrossRef]
Paper not yet in RePEc: Add citation now
- Cundiff, J.S.; Dias, N.; Sherali, H.D. A linear programming approach for designing a herbaceous biomass delivery system. Bioresour. Technol. 1997, 59, 47–55. [CrossRef]
Paper not yet in RePEc: Add citation now
- D’amore, F.; Bezzo, F. Strategic optimisation of biomass-based energy supply chains for sustainable mobility. Comput. Chem. Eng. 2016, 87, 68–81. [CrossRef]
Paper not yet in RePEc: Add citation now
- Delivand, M.K.; Cammerino, A.R.B.; Garofalo, P.; Monteleone, M. Optimal locations of bioenergy facilities, biomass spatial availability, logistics costs and GHG (greenhouse gas) emissions: A case study on electricity productions in South Italy. J. Clean. Prod. 2015, 99, 129–139. [CrossRef]
Paper not yet in RePEc: Add citation now
Demirbas, A. Political, economic and environmental impacts of biofuels: A review. Appl. Energy 2009, 86, S108–S117. [CrossRef]
- Duc, D.N.; Meejaroen, P.; Nananukul, N. Multi-objective models for biomass supply chain planning with economic and carbon footprint consideration. Energy Rep. 2021, 7, 6833–6843. [CrossRef]
Paper not yet in RePEc: Add citation now
- Duku, M.H.; Gu, S.; Hagan, E.B. A comprehensive review of biomass resources and biofuels potential in Ghana. Renew. Sustain. Energy Rev. 2011, 15, 404–415. [CrossRef]
Paper not yet in RePEc: Add citation now
Durmaz, Y.G.; Bilgen, B. Multi-objective optimization of sustainable biomass supply chain network design. Appl. Energy 2020, 272, 115259. [CrossRef]
- EkşioğLu, S.D.; Li, S.; Zhang, S.; Sokhansanj, S.; Petrolia, D. Analyzing Impact of Intermodal Facilities on Design and Management of Biofuel Supply Chain. Transp. Res. Rec. J. Transp. Res. Board 2010, 2191, 144–151. [CrossRef]
Paper not yet in RePEc: Add citation now
Ells, A.; Bulte, E.; van Kooten, G.C. Uncertainty and Forest Land Use Allocation in British Columbia: Vague Priorities and Imprecise Coefficients. For. Sci. 1997, 43, 509–520. [CrossRef]
Esmaeili, S.A.H.; Szmerekovsky, J.; Sobhani, A.; Dybing, A.; Peterson, T.O. Sustainable biomass supply chain network design with biomass switching incentives for first-generation bioethanol producers. Energy Policy 2020, 138, 111222. [CrossRef]
- Espinoza-Vázquez, Y.M.; Gómez-Castro, F.I.; Ponce-Ortega, J.M. Optimization of the supply chain for the production of biomassbased fuels and high-added value products in Mexico. Comput. Chem. Eng. 2021, 145, 107181. [CrossRef]
Paper not yet in RePEc: Add citation now
Fattahi, M.; Govindan, K. A multi-stage stochastic program for the sustainable design of biofuel supply chain networks under biomass supply uncertainty and disruption risk: A real-life case study. Transp. Res. Part E Logist. Transp. Rev. 2018, 118, 534–567. [CrossRef]
- Fattahi, M.; Govindan, K.; Farhadkhani, M. Sustainable supply chain planning for biomass-based power generation with environmental risk and supply uncertainty considerations: A real-life case study. Int. J. Prod. Res. 2020, 59, 3084–3108. [CrossRef]
Paper not yet in RePEc: Add citation now
Ge, Y.; Li, L.; Yun, L. Modeling and economic optimization of cellulosic biofuel supply chain considering multiple conversion pathways. Appl. Energy 2021, 281, 116059. [CrossRef]
- Gebreslassie, B.H.; Yao, Y.; You, F. Design under uncertainty of hydrocarbon biorefinery supply chains: Multiobjective stochastic programming models, decomposition algorithm, and a Comparison between CVaR and downside risk. AIChE J. 2012, 58, 2155–2179. [CrossRef]
Paper not yet in RePEc: Add citation now
- Ghaderi, H.; Pishvaee, M.S.; Moini, A. Biomass supply chain network design: An optimization-oriented review and analysis. Ind. Crops Prod. 2016, 94, 972–1000. [CrossRef]
Paper not yet in RePEc: Add citation now
Ghani, N.M.A.M.A.; Vogiatzis, C.; Szmerekovsky, J. Biomass feedstock supply chain network design with biomass conversion incentives. Energy Policy 2018, 116, 39–49.
- Gnansounou, E.; Dauriat, A.; Villegas, J.; Panichelli, L. Life cycle assessment of biofuels: Energy and greenhouse gas balances. Bioresour. Technol. 2009, 100, 4919–4930. [CrossRef] [PubMed]
Paper not yet in RePEc: Add citation now
- Gold, S.; Seuring, S. Supply chain and logistics issues of bio-energy production. J. Clean. Prod. 2011, 19, 32–42. [CrossRef]
Paper not yet in RePEc: Add citation now
- Hombach, L.E.; Cambero, C.; Sowlati, T.; Walther, G. Optimal design of supply chains for second generation biofuels incorporating European biofuel regulations. J. Clean. Prod. 2016, 133, 565–575. [CrossRef]
Paper not yet in RePEc: Add citation now
- Hong, B.H.; How, B.S.; Lam, H.L. Overview of sustainable biomass supply chain: From concept to modelling. Clean Technol. Environ. Policy 2016, 18, 2173–2194. [CrossRef] Energies 2024, 17, 2542 23 of 23
Paper not yet in RePEc: Add citation now
- Iakovou, E.; Karagiannidis, A.; Vlachos, D.; Toka, A.; Malamakis, A. Waste biomass-to-energy supply chain management: A critical synthesis. Waste Manag. 2010, 30, 1860–1870. [CrossRef]
Paper not yet in RePEc: Add citation now
- Ivanova, P.; Chalova, V.; Uzunova, G.; Koleva, L.; Manolov, I. Biochemical Characterization of Industrially Produced Rapeseed Meal as a Protein Source in Food Industry. Agric. Agric. Sci. Procedia 2016, 10, 55–62. [CrossRef]
Paper not yet in RePEc: Add citation now
- Jonkman, J.; Kanellopoulos, A.; Bloemhof, J.M. Designing an eco-efficient biomass-based supply chain using a mul-ti-actor optimisation model. J. Clean. Product. 2019, 210, 1065–1075. [CrossRef]
Paper not yet in RePEc: Add citation now
- Jury, C.; Benetto, E.; Koster, D.; Schmitt, B.; Welfring, J. Life Cycle Assessment of biogas production by monofer-mentation of energy crops and injection into the natural gas grid. Biomass Bioenergy 2010, 34, 54–66. [CrossRef]
Paper not yet in RePEc: Add citation now
Kangas, A.S.; Kangas, J. Probability, possibility and evidence: Approaches to consider risk and uncertainty in forestry decision analysis. For. Policy Econ. 2004, 6, 169–188. [CrossRef]
- Kapoor, R.; Ghosh, P.; Kumar, M.; Sengupta, S.; Gupta, A.; Kumar, S.S.; Vijay, V.; Kumar, V.; Vijay, V.K.; Pant, D. Valorization of agricultural waste for biogas based circular economy in India: A research outlook. Bioresour. Technol. 2020, 304, 123036. [CrossRef]
Paper not yet in RePEc: Add citation now
- Kim, J.; Realff, M.J.; Lee, J.H.; Whittaker, C.; Furtner, L. Design of biomass processing network for biofuel production using an MILP model. Biomass Bioenergy 2011, 35, 853–871. [CrossRef]
Paper not yet in RePEc: Add citation now
- Kim, Y.; Jeon, Y.J.; Yim, J.-H.; Jeong, K.-H.; Park, Y.-K.; Kim, T.; Lee, J.; Kwon, E.E. Livestock manure valorization to biochemicals and energy using CO2: A case study of goat excreta. J. CO2 Util. 2019, 30, 107–111. [CrossRef]
Paper not yet in RePEc: Add citation now
- Kühmaier, M.; Kanzian, C.; Stampfer, K. Identification of potential energy wood terminal locations using a spatial multicriteria decision analysis. Biomass Bioenergy 2014, 66, 337–347. [CrossRef]
Paper not yet in RePEc: Add citation now
- Leão, R.R.d.C.C.; Hamacher, S.; Oliveira, F. Optimization of biodiesel supply chains based on small farmers: A case study in Brazil. Bioresour. Technol. 2011, 102, 8958–8963. [CrossRef]
Paper not yet in RePEc: Add citation now
- Leduc, S.; Starfelt, F.; Dotzauer, E.; Kindermann, G.; McCallum, I.; Obersteiner, M.; Lundgren, J. Optimal location of lignocellulosic ethanol refineries with polygeneration in Sweden. Energy 2010, 35, 2709–2716. [CrossRef]
Paper not yet in RePEc: Add citation now
- Liu, W.; Phillips, V.D.; Singh, D. A spatial model for the economic evaluation of biomass production systems. Biomass Bioenergy 1992, 3, 345–356. [CrossRef]
Paper not yet in RePEc: Add citation now
Lourinho, G.; Brito, P. Assessment of biomass energy potential in a region of Portugal (Alto Alentejo). Energy 2015, 81, 189–201. [CrossRef]
Lovrak, A.; Puksec, T.; Duic, N. A Geographical Information System (GIS) based approach for assessing the spatial distribution and seasonal variation of biogas production potential from agricultural residues and municipal biowaste. Appl. Energy 2020, 267, 115010. [CrossRef]
- Malczewski, J.; Rinner, C. Multicriteria Decision Analysis in Geographic Information Science; Springer: Berlin, Germany, 2015; pp. 23–54. [CrossRef]
Paper not yet in RePEc: Add citation now
- Mas, M.D.; Giarola, S.; Zamboni, A.; Bezzo, F. Capacity planning and financial optimization of the bioethanol supply chain under price uncertainty. Comput. Aided Chem. Eng. 2010, 28, 97–102. [CrossRef]
Paper not yet in RePEc: Add citation now
- Morrow, W.R.; Griffin, W.M.; Matthews, H.S. Modeling Switchgrass Derived Cellulosic Ethanol Distribution in the United States. Environ. Sci. Technol. 2006, 40, 2877–2886. [CrossRef] [PubMed]
Paper not yet in RePEc: Add citation now
- Munasinghe, M.; Jayasinghe, P.; Deraniyagala, Y.; Matlaba, V.J.; dos Santos, J.F.; Maneschy, M.C.; Mota, J.A. Value–Supply Chain Analysis (VSCA) of crude palm oil production in Brazil, focusing on economic, environmental and social sustainability. Sustain. Prod. Consum. 2019, 17, 161–175. [CrossRef]
Paper not yet in RePEc: Add citation now
- Murphy, F.; Devlin, G.; Deverell, R.; McDonnell, K. Biofuel Production in Ireland—An Approach to 2020 Targets with a Focus on Algal Biomass. Energies 2013, 6, 6391–6412. [CrossRef]
Paper not yet in RePEc: Add citation now
Ng, R.T.; Maravelias, C.T. Design of biofuel supply chains with variable regional depot and biorefinery locations. Renewable Energy 2017, 100, 90–102. [CrossRef]
- Nilsson, D. Dynamic Simulation of Straw Harvesting Systems: Influence of Climatic, Geographical and Biological Factors on Performance and Costs. J. Agric. Eng. Res. 2000, 76, 27–36. [CrossRef]
Paper not yet in RePEc: Add citation now
- Nilsson, D. SHAM—A simulation model for designing straw fuel delivery systems. Part 2: Model applications. Biomass Bioenergy 1999, 16, 39–50. [CrossRef]
Paper not yet in RePEc: Add citation now
- Okello, C.; Pindozzi, S.; Faugno, S.; Boccia, L. Bioenergy potential of agricultural and forest residues in Uganda. Biomass Bioenergy 2013, 56, 515–525. [CrossRef]
Paper not yet in RePEc: Add citation now
- Ooba, M.; Fujii, M.; Hayashi, K. Geospatial distribution of ecosystem services and biomass energy potential in eastern Japan. J. Clean. Prod. 2016, 130, 35–44. [CrossRef]
Paper not yet in RePEc: Add citation now
- Panepinto, D.; Genon, G. Biomass thermal treatment: Energy recovery, environmental compatibility and determi-nation of external costs. Waste Biomass Valoriz. 2012, 3, 197–206. [CrossRef]
Paper not yet in RePEc: Add citation now
- Panepinto, D.; Viggiano, F.; Genon, G. The potential of biomass supply for energetic utilization in a small Italian region: Basilicata. Clean Technol. Environ. Policy 2014, 16, 833–845. [CrossRef]
Paper not yet in RePEc: Add citation now
- Parker, N.; Tittmann, P.; Hart, Q.; Nelson, R.; Skog, K.; Schmidt, A.; Gray, E.; Jenkins, B. Development of a biorefinery optimized biofuel supply curve for the Western United States. Biomass Bioenergy 2010, 34, 1597–1607. [CrossRef]
Paper not yet in RePEc: Add citation now
- Paulo, H.; Azcue, X.; Barbosa-Póvoa, A.P.; Relvas, S. Supply chain optimization of residual forestry biomass for bioenergy production: The case study of Portugal. Biomass Bioenergy 2015, 83, 245–256. [CrossRef]
Paper not yet in RePEc: Add citation now
- Perpiña, C.; Martínez-Llario, J.C.; Pérez-Navarro, . Multicriteria assessment in GIS environments for siting biomass plants. Land Use Policy 2013, 31, 326–335. [CrossRef]
Paper not yet in RePEc: Add citation now
Petrovic, D. Simulation of supply chain behaviour and performance in an uncertain environment. Int. J. Prod. Econ. 2001, 71, 429–438. [CrossRef]
- Prasad, S.; Singh, A.; Korres, N.E.; Rathore, D.; Sevda, S.; Pant, D. Sustainable utilization of crop residues for energy generation: A life cycle assessment (LCA) perspective. Bioresour. Technol. 2020, 303, 122964. [CrossRef]
Paper not yet in RePEc: Add citation now
- Priefer, C.; Jörissen, J.; Frör, O. Pathways to Shape the Bioeconomy. Resources 2017, 6, 10. [CrossRef]
Paper not yet in RePEc: Add citation now
- Razm, S.; Nickel, S.; Saidi-Mehrabad, M.; Sahebi, H. A global bioenergy supply network redesign through integrating transfer pricing under uncertain condition. J. Clean. Prod. 2019, 208, 1081–1095. [CrossRef]
Paper not yet in RePEc: Add citation now
- Recio, B.; Rubio, F.; Criado, J. A decision support system for farm planning using AgriSupport II. Decis. Support Syst. 2003, 36, 189–203. [CrossRef]
Paper not yet in RePEc: Add citation now
- Ren, J.; Manzardo, A.; Toniolo, S.; Scipioni, A.; Tan, S.; Dong, L.; Gao, S. Design and modeling of sustainable bioethanol supply chain by minimizing the total ecological footprint in life cycle perspective. Bioresour. Technol. 2013, 146, 771–774. [CrossRef] [PubMed] Energies 2024, 17, 2542 21 of 23
Paper not yet in RePEc: Add citation now
Roni, M.S.; Eksioglu, S.D.; Cafferty, K.G.; Jacobson, J.J. A multi-objective, hub-and-spoke model to design and manage biofuel supply chains. Ann. Oper. Res. 2017, 249, 351–380. [CrossRef]
Sabri, E.H.; Beamon, B.M. A multi-objective approach to simultaneous strategic and operational planning in supply chain design. Omega 2000, 28, 581–598. [CrossRef]
- Sacchelli, S. 9-Social, Economic, and Environmental Impacts of Biomass and Biofuel Supply Chains. In Biomass Supply Chains for Bioenergy and Biorefining; Holm-Nielsen, J.B., Ehimen, E.A., Eds.; Woodhead Publishing: Cambridge, UK, 2016; pp. 191–213. [CrossRef]
Paper not yet in RePEc: Add citation now
- Sahinidis, N.V. Optimization under uncertainty: State-of-the-art and opportunities. Comput. Chem. Eng. 2004, 28, 971–983. [CrossRef]
Paper not yet in RePEc: Add citation now
Sarker, B.R.; Wu, B.; Paudel, K.P. Modeling and optimization of a supply chain of renewable biomass and biogas: Processing plant location. Appl. Energy 2019, 239, 343–355. [CrossRef]
- Scarlat, N.; Martinov, M.; Dallemand, J.-F. Assessment of the availability of agricultural crop residues in the European Union: Potential and limitations for bioenergy use. Waste Manag. 2010, 30, 1889–1897. [CrossRef]
Paper not yet in RePEc: Add citation now
- Shabani, N.; Sowlati, T. A hybrid multi-stage stochastic programming-robust optimization model for maximizing the supply chain of a forest-based biomass power plant considering uncertainties. J. Clean. Prod. 2016, 112, 3285–3293. [CrossRef]
Paper not yet in RePEc: Add citation now
- Shapiro, J.F. Challenges of strategic supply chain planning and modeling. Comput. Chem. Eng. 2004, 28, 855–861. [CrossRef]
Paper not yet in RePEc: Add citation now
Sharma, B.; Birrell, S.; Miguez, F. Spatial modeling framework for bioethanol plant siting and biofuel production potential in the U.S. Appl. Energy 2017, 191, 75–86. [CrossRef]
- Sharma, B.; Ingalls, R.G.; Jones, C.L.; Huhnke, R.L.; Khanchi, A. Scenario optimization modeling approach for design and management of biomass-to-biorefinery supply chain system. Bioresour. Technol. 2013, 150, 163–171. [CrossRef] [PubMed]
Paper not yet in RePEc: Add citation now
- Shastri, Y.; Hansen, A.; Rodríguez, L.; Ting, K. Development and application of BioFeed model for optimization of herbaceous biomass feedstock production. Biomass Bioenergy 2011, 35, 2961–2974. [CrossRef] Energies 2024, 17, 2542 22 of 23
Paper not yet in RePEc: Add citation now
- Singh, A.; Karmakar, S.; Jacob, B.S.; Bhattacharya, P.; Kumar, S.P.J.; Banerjee, R. Enzymatic polishing of cereal grains for improved nutrient retainment. J. Food Sci. Technol. 2014, 52, 3147–3157. [CrossRef] [PubMed]
Paper not yet in RePEc: Add citation now
- Singh, A.; Olsen, S.I.; Pant, D. Importance of Life Cycle Assessment of Renewable Energy Sources. In Life Cycle Assessment of Renewable Energy Sources. Green Energy and Technology; Singh, A., Pant, D., Olsen, S., Eds.; Springer: London, UK, 2013; pp. 1–11.
Paper not yet in RePEc: Add citation now
- Singh, A.; Smyth, B.M.; Murphy, J.D. A biofuel strategy for Ireland with an emphasis on production of biomethane and minimization of land-take. Renew. Sustain. Energy Rev. 2010, 14, 277–288. [CrossRef]
Paper not yet in RePEc: Add citation now
- Singh, J.; Panesar, B.; Sharma, S. Energy potential through agricultural biomass using geographical information system—A case study of Punjab. Biomass Bioenergy 2007, 32, 301–307. [CrossRef]
Paper not yet in RePEc: Add citation now
- Singh, J.; Panesar, B.; Sharma, S. Geographical distribution of agricultural residues and optimum sites of biomass based power plant in Bathinda, Punjab. Biomass Bioenergy 2011, 35, 4455–4460. [CrossRef]
Paper not yet in RePEc: Add citation now
- Smith, R. Chemical Process: Design and Integration; John Wiley & Sons: Hoboken, NJ, USA, 2005.
Paper not yet in RePEc: Add citation now
Sosa, A.; Acuna, M.; McDonnell, K.; Devlin, G. Controlling moisture content and truck configurations to model and optimise biomass supply chain logistics in Ireland. Appl. Energy 2015, 137, 338–351. [CrossRef]
Tan, R.R.; Aviso, K.B.; Barilea, I.U.; Culaba, A.B.; Cruz, J.B., Jr. A fuzzy multi-regional input–output optimization model for biomass production and trade under resource and footprint constraints. Appl. Energy 2012, 90, 154–160. [CrossRef]
- Tatsiopoulos, I.; Tolis, A. Economic aspects of the cotton-stalk biomass logistics and comparison of supply chain methods. Biomass Bioenergy 2003, 24, 199–214. [CrossRef]
Paper not yet in RePEc: Add citation now
- Thompson, E.; Wang, Q.; Li, M. Anaerobic digester systems (ADS) for multiple dairy farms: A GIS analysis for optimal site selection. Energy Policy 2013, 61, 114–124. [CrossRef]
Paper not yet in RePEc: Add citation now
- Velazquez-Marti, B.; Fernandez-Gonzalez, E. Mathematical algorithms to locate factories to transform biomass in bioenergy focused on logistic network construction. Renew. Energy 2010, 35, 2136–2142. [CrossRef]
Paper not yet in RePEc: Add citation now
Viana, H.; Cohen, W.B.; Lopes, D.; Aranha, J. Assessment of forest biomass for use as energy. GIS-based analysis of geographical availability and locations of wood-fired power plants in Portugal. Appl. Energy 2010, 87, 2551–2560. [CrossRef]
- Voets, T.; Neven, A.; Thewys, T.; Kuppens, T. GIS-BASED location optimization of a biomass conversion plant on contaminated willow in the Campine region (Belgium). Biomass Bioenergy 2013, 55, 339–349. [CrossRef]
Paper not yet in RePEc: Add citation now
- Wang, B.; Gebreslassie, B.H.; You, F. Sustainable design and synthesis of hydrocarbon biorefinery via gasification pathway: Integrated life cycle assessment and technoeconomic analysis with multiobjective superstructure optimization. Comput. Chem. Eng. 2013, 52, 55–76. [CrossRef]
Paper not yet in RePEc: Add citation now
- Wang, J.-J.; Jing, Y.-Y.; Zhang, C.-F.; Zhao, J.-H. Review on multi-criteria decision analysis aid in sustainable energy decisionmaking. Renew. Sustain. Energy Rev. 2009, 13, 2263–2278. [CrossRef]
Paper not yet in RePEc: Add citation now
- White, & Oldfield. Holistic Analysis of Agricultural Waste, Co-Products, and By-Products (AWCB) Chains and Logistics of AWCB Valorisation Systems. 2016. Available online: http://multisite.iris.cat/agrocycle/files/2017/12/D1.3_FHolisticAnalysisAWCB. pdf (accessed on 2 May 2022).
Paper not yet in RePEc: Add citation now
- Winston, W.L.; Goldberg, J.B. Operations Research: Applications and Algorithms (Volume 3); Thomson Brooks/Cole: Belmont, OH, USA, 2004.
Paper not yet in RePEc: Add citation now
- Woo, Y.B.; Cho, S.; Kim, J.; Kim, B.S. Optimization-based approach for strategic design and operation of a bio-mass-to-hydrogen supply chain. Int. J. Hydrogen Energy 2016, 41, 5405–5418. [CrossRef]
Paper not yet in RePEc: Add citation now
- Wu, J.; Zhang, J.; Yi, W.; Cai, H.; Li, Y.; Su, Z. Agri-biomass supply chain optimization in north China: Model development and application. Energy 2021, 239, 122374. [CrossRef]
Paper not yet in RePEc: Add citation now
- Yılmaz, S.; Selim, H. A review on the methods for biomass to energy conversion systems design. Renew. Sustain. Energy Rev. 2013, 25, 420–430. [CrossRef]
Paper not yet in RePEc: Add citation now
- You, F.; Grossmann, I.E.; Wassick, J.M. Multisite Capacity, Production, and Distribution Planning with Reactor Modifications: MILP Model, Bilevel Decomposition Algorithm versus Lagrangean Decomposition Scheme. Ind. Eng. Chem. Res. 2011, 50, 4831–4849. [CrossRef]
Paper not yet in RePEc: Add citation now
- You, F.; Wang, B. Life Cycle Optimization of Biomass-to-Liquid Supply Chains with Distributed–Centralized Processing Networks. Ind. Eng. Chem. Res. 2011, 50, 10102–10127. [CrossRef]
Paper not yet in RePEc: Add citation now
- Yue, D.; You, F. Game-theoretic modeling and optimization of multi-echelon supply chain design and operation under Stackelberg game and market equilibrium. Comput. Chem. Eng. 2014, 71, 347–361. [CrossRef]
Paper not yet in RePEc: Add citation now
- Yue, D.; You, F.; Snyder, S.W. Biomass-to-bioenergy and biofuel supply chain optimization: Overview, key issues and challenges. Comput. Chem. Eng. 2014, 66, 36–56. [CrossRef] Energies 2024, 17, 2542 20 of 23
Paper not yet in RePEc: Add citation now
- Zahraee, S.; Assadi, M.K.; Saidur, R. Application of Artificial Intelligence Methods for Hybrid Energy System Optimization. Renew. Sustain. Energy Rev. 2016, 66, 617–630. [CrossRef]
Paper not yet in RePEc: Add citation now
- Zahraee, S.M.; Shiwakoti, N.; Stasinopoulos, P. Biomass supply chain environmental and socio-economic analysis: 40-Years comprehensive review of methods, decision issues, sustainability challenges, and the way forward. Biomass Bioenergy 2020, 142, 105777. [CrossRef]
Paper not yet in RePEc: Add citation now
- Zhu, X.; Yao, Q. Logistics system design for biomass-to-bioenergy industry with multiple types of feedstocks. Bioresour. Technol. 2011, 102, 10936–10945. [CrossRef]
Paper not yet in RePEc: Add citation now