Design of a supply chain network for chemicals from biomass using green electrochemistry

被引:1
|
作者
Kashanian, Motahareh [1 ]
Ryan, Sarah M. [1 ]
机构
[1] Iowa State Univ, Dept Ind & Mfg Syst Engn, Ames, IA 50011 USA
来源
CLEANER LOGISTICS AND SUPPLY CHAIN | 2024年 / 10卷
基金
美国国家科学基金会;
关键词
Chemical supply chain; Supply chain network design; Mixed -integer programming; Electrochemistry; MUCONIC ACID; SCALE-UP; OPTIMIZATION; CHALLENGES; CONVERSION; BIOFUELS;
D O I
10.1016/j.clscn.2023.100132
中图分类号
C93 [管理学]; O22 [运筹学];
学科分类号
070105 ; 12 ; 1201 ; 1202 ; 120202 ;
摘要
Increasing concern about the environmental impact of industrial activities has prompted a shift to renewable energy sources and the development of environmentally conscious supply chains. In this regard, electrochemistry has shown promise for converting biomass into specialty chemicals in distributed facilities that exploit renewable energy resources. To examine the impact of electrochemistry technology on optimal supply chain configuration, we formulate a mixed-integer linear programming model to optimize the locations and capacities of distributed facilities for converting biomass to chemicals. The economic objective of the supply chain design model is to minimize the total annual cost of producing chemicals from biomass-derived glucose and delivering them to market. To analyze the trade-off between environmental and economic considerations, we also consider an environmental objective of minimizing greenhouse gas (GHG) emissions. The results of a US case study indicate that, while cost is minimized by constructing one large facility, GHG emissions are lowered by a distributed configuration. Varying the setting of a process design parameter expands the Pareto frontier along which decision-makers can choose a configuration according to their preferences between economic and environmental criteria.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Flexible supply chain network design under uncertainty
    Chatzikontidou, Anastasia
    Longinidis, Pantelis
    Tsiakis, Panagiotis
    Georgiadis, Michael C.
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2017, 128 : 290 - 305
  • [22] Supply chain network design with coordinated inventory control
    Darmawan, Agus
    Wong, Hartanto
    Thorstenson, Anders
    TRANSPORTATION RESEARCH PART E-LOGISTICS AND TRANSPORTATION REVIEW, 2021, 145
  • [23] Sustainable biomass supply chain network design with biomass switching incentives for first-generation bioethanol producers
    Esmaeili, Seyed Ali Haji
    Szmerekovsky, Joseph
    Sobhani, Ahmad
    Dybing, Alan
    Peterson, Tim O.
    ENERGY POLICY, 2020, 138
  • [24] Green and sustainable closed-loop supply chain network design under uncertainty
    Zhen, Lu
    Huang, Lufei
    Wang, Wencheng
    JOURNAL OF CLEANER PRODUCTION, 2019, 227 : 1195 - 1209
  • [25] An uncertain sustainable supply chain network design for regulating greenhouse gas emission and supply chain cost
    Kumar, Amit
    Kumar, Kaushal
    CLEANER LOGISTICS AND SUPPLY CHAIN, 2024, 10
  • [26] A fuzzy technique for supply chain network design with quantity discounts
    Dotoli, Mariagrazia
    Epicoco, Nicola
    Falagario, Marco
    INTERNATIONAL JOURNAL OF PRODUCTION RESEARCH, 2017, 55 (07) : 1862 - 1884
  • [27] Forward supply Chain network design problem: Heuristic approaches
    Koc, Cagri
    Ozceylan, Eren
    Kesen, Saadettin Erhan
    Cil, Zeynel Abidin
    Mete, Suleyman
    PAMUKKALE UNIVERSITY JOURNAL OF ENGINEERING SCIENCES-PAMUKKALE UNIVERSITESI MUHENDISLIK BILIMLERI DERGISI, 2018, 24 (04): : 749 - 763
  • [28] Biomass supply chain design and analysis: Basis, overview, modeling, challenges, and future
    Sharma, B.
    Ingalls, R. G.
    Jones, C. L.
    Khanchi, A.
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2013, 24 : 608 - 627
  • [29] A large neighborhood search heuristic for supply chain network design
    Eskandarpour, Majid
    Dejax, Pierre
    Peton, Olivier
    COMPUTERS & OPERATIONS RESEARCH, 2017, 80 : 23 - 37
  • [30] Robust Design of a Green Hydrogen Supply Chain Under Spatiotemporal Imbalance
    Xu, Jiaqi
    Li, Qiaofeng
    Li, Jiarong
    Zhang, Zhi-Hai
    Zheng, Li
    IEEE TRANSACTIONS ON AUTOMATION SCIENCE AND ENGINEERING, 2024, : 1 - 15