Techno-economic optimization of a process superstructure for lignin valorization

被引:30
作者
Robinson, Ada Josefina [1 ]
Giuliano, Aristide [2 ]
Abdelaziz, Omar Y. [3 ]
Hulteberg, Christian P. [3 ]
Koutinas, Apostolis [4 ]
Triantafyllidis, Konstantinos S. [5 ]
Barletta, Diego [1 ]
De Bari, Isabella [2 ]
机构
[1] Univ Salerno, Dept Ind Engn, Via Giovanni Paolo 2 132, I-84084 Fisciano, SA, Italy
[2] Italian Natl Agcy New Technol, ENEA, Energy & Sustainable Econ Dev, Lab Technol & Proc Biorefineries & Green Chem, SS 106 Ion,Km 419 500, Rotondella, MT, Italy
[3] Lund Univ, Dept Chem Engn, Naturvetaragen 14, S-22100 Lund, Sweden
[4] Agr Univ Athens, Dept Food Sci & Human Nutr, Iera Odos 75, Athens 11855, Greece
[5] Aristotle Univ Thessaloniki, Dept Chem, GR-54124 Thessaloniki, Greece
关键词
Aromatic monomers; Biorefinery; Lignin valorization; Modelling; Phenolic resins; Process optimization; Vanillin; KRAFT LIGNIN; BIOREFINERY; DEPOLYMERIZATION; ACID;
D O I
10.1016/j.biortech.2022.128004
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Lignin, the most abundant aromatic biopolymer on Earth, is often considered a biorefinery by-product, despite its potential to be valorized into high-added-value chemicals and fuels. In this work, an integrated superstructurebased optimization model was set up and optimized using mixed-integer non-linear programming for the conversion of technical lignin to three main biobased products: aromatic monomers, phenol-formaldehyde resins, and aromatic aldehydes/acids. Several alternative conversion pathways were simultaneously compared to assess the profitability of lignins-based processes by predicting the performance of technologies with different TRL. Upon employing key technologies such as hydrothermal liquefaction, dissolution in solvent, or high-temperature electrolysis, the technical lignins could have a market value of 200 euro/t when the market price for aromatic monomers, resins, and vanillin is at least 2.0, 0.8, and 15.0 euro/kg, respectively. When lower product selling prices were considered, the aromatic monomers and the resins were not profitable as target products.
引用
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页数:11
相关论文
共 44 条
[1]   Conceptual Design of a Kraft Lignin Biorefinery for the Production of Valuable Chemicals via Oxidative Depolymerization [J].
Abdelaziz, Omar Y. ;
Al-Rabiah, Abdulrahman A. ;
El-Halwagi, Mahmoud M. ;
Hulteberg, Christian P. .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8 (23) :8823-8829
[2]   From Lignin to Valuable Aromatic Chemicals: Lignin Depolymerization and Monomer Separation via Centrifugal Partition Chromatography [J].
Alherech, Manar ;
Omolabake, Surajudeen ;
Holland, Christopher M. ;
Klinger, Gracielou E. ;
Hegg, Eric L. ;
Stahl, Shannon S. .
ACS CENTRAL SCIENCE, 2021, 7 (11) :1831-1837
[3]  
Andersson L., 2022, FEASIBILITY STUDY LI
[4]   Exploring the application potential of incompletely soluble organosolv lignin as a macromonomer for polyurethane synthesis [J].
Arshanitsa, Alexandr ;
Krumina, Lelde ;
Telysheva, Galina ;
Dizhbite, Tatiana .
INDUSTRIAL CROPS AND PRODUCTS, 2016, 92 :1-12
[5]   Liquid fuels, hydrogen and chemicals from lignin: A critical review [J].
Azadi, Pooya ;
Inderwildi, Oliver R. ;
Farnood, Ramin ;
King, David A. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2013, 21 :506-523
[6]   Lignin Depolymerization by Catalytic Hydrodeoxygenation Performed with Smectitic Clay-Based Materials [J].
Borsella, Elisabetta ;
De Bari, Isabella ;
Colucci, Pietro ;
Mastrolitti, Silvio ;
Liuzzi, Federico ;
De Stefanis, Adriana ;
Valentini, Veronica ;
Gallese, Fortunata ;
Perez, Giorgio .
ENERGY TECHNOLOGY, 2020, 8 (12)
[7]   Advances in lignin valorization towards bio-based chemicals and fuels: Lignin biorefinery [J].
Cao, Yang ;
Chen, Season S. ;
Zhang, Shicheng ;
Ok, Yong Sik ;
Matsagar, Babasaheb M. ;
Wu, Kevin C. -W. ;
Tsang, Daniel C. W. .
BIORESOURCE TECHNOLOGY, 2019, 291
[8]  
Chauhan P.S., 2022, INT J BIOL MACROMOL, V22
[9]   Highly efficient de-polymerization of organosolv lignin using a catalytic hydrothermal process and production of phenolic resins/adhesives with the depolymerized lignin as a substitute for phenol at a high substitution ratio [J].
Cheng, Shuna ;
Yuan, Zhongshun ;
Leitch, Mathew ;
Anderson, Mark ;
Xu, Chunbao .
INDUSTRIAL CROPS AND PRODUCTS, 2013, 44 :315-322
[10]   Reactive organosolv lignin extraction from wheat straw: Influence of Lewis acid catalysts on structural and chemical properties of lignins [J].
Constant, Sandra ;
Basset, Charlie ;
Dumas, Claire ;
Di Renzo, Francesco ;
Robitzer, Mike ;
Barakat, Abdellatif ;
Quignard, Francoise .
INDUSTRIAL CROPS AND PRODUCTS, 2015, 65 :180-189