Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass

This study investigates technoeconomic performance of standalone biorefinery concepts that utilize hybrid organic solvent and steam explosion pretreatment technique. The assessments were made based on a mathematical process model developed in UniSim Design software using inhouse experimental data. T...

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Main Authors: Sennai Mesfun, Leonidas Matsakas, Ulrika Rova, Paul Christakopoulos
Format: Article
Language:English
Published: MDPI AG 2019-11-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/21/4206
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spelling doaj-98c997269fff414cb58688449ba9ce882020-11-24T21:50:05ZengMDPI AGEnergies1996-10732019-11-011221420610.3390/en12214206en12214206Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody BiomassSennai Mesfun0Leonidas Matsakas1Ulrika Rova2Paul Christakopoulos3RISE Research Institute of Sweden, P.O. Box 5604, 114 86 Stockholm, SwedenBiochemical Process Engineering, Division of Chemical Engineering, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 971 87 Luleå, SwedenBiochemical Process Engineering, Division of Chemical Engineering, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 971 87 Luleå, SwedenBiochemical Process Engineering, Division of Chemical Engineering, Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 971 87 Luleå, SwedenThis study investigates technoeconomic performance of standalone biorefinery concepts that utilize hybrid organic solvent and steam explosion pretreatment technique. The assessments were made based on a mathematical process model developed in UniSim Design software using inhouse experimental data. The work was motivated by successful experimental applications of the hybrid pretreatment technique on lignocellulosic feedstocks that demonstrated high fractionation efficiency into a cellulose-rich, a hemicellulose-rich and lignin streams. For the biorefinery concepts studied here, the targeted final products were ethanol, organosolv lignin and hemicellulose syrup. Minimum ethanol selling price (MESP) and Internal rate of return (IRR) were evaluated as economic indicators of the investigated biorefinery concepts. Depending on the configuration, and allocating all costs to ethanol, MESP in the range 0.53−0.95 €/L were required for the biorefinery concepts to break even. Under the assumed ethanol reference price of 0.55 €/L, the corresponding IRR were found to be in the range −1.75−10.7%. Hemicellulose degradation and high steam demand identified as major sources of inefficiencies for the process and economic performance, respectively. Sensitivity of MESP and IRR towards the most influential technical, economic and market parameters performed.https://www.mdpi.com/1996-1073/12/21/4206organosovlsteam explosiontechnoeconomicbiorefineryethanolligninpretreatmentbiofuels
collection DOAJ
language English
format Article
sources DOAJ
author Sennai Mesfun
Leonidas Matsakas
Ulrika Rova
Paul Christakopoulos
spellingShingle Sennai Mesfun
Leonidas Matsakas
Ulrika Rova
Paul Christakopoulos
Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
Energies
organosovl
steam explosion
technoeconomic
biorefinery
ethanol
lignin
pretreatment
biofuels
author_facet Sennai Mesfun
Leonidas Matsakas
Ulrika Rova
Paul Christakopoulos
author_sort Sennai Mesfun
title Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
title_short Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
title_full Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
title_fullStr Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
title_full_unstemmed Technoeconomic Assessment of Hybrid Organosolv–Steam Explosion Pretreatment of Woody Biomass
title_sort technoeconomic assessment of hybrid organosolv–steam explosion pretreatment of woody biomass
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-11-01
description This study investigates technoeconomic performance of standalone biorefinery concepts that utilize hybrid organic solvent and steam explosion pretreatment technique. The assessments were made based on a mathematical process model developed in UniSim Design software using inhouse experimental data. The work was motivated by successful experimental applications of the hybrid pretreatment technique on lignocellulosic feedstocks that demonstrated high fractionation efficiency into a cellulose-rich, a hemicellulose-rich and lignin streams. For the biorefinery concepts studied here, the targeted final products were ethanol, organosolv lignin and hemicellulose syrup. Minimum ethanol selling price (MESP) and Internal rate of return (IRR) were evaluated as economic indicators of the investigated biorefinery concepts. Depending on the configuration, and allocating all costs to ethanol, MESP in the range 0.53−0.95 €/L were required for the biorefinery concepts to break even. Under the assumed ethanol reference price of 0.55 €/L, the corresponding IRR were found to be in the range −1.75−10.7%. Hemicellulose degradation and high steam demand identified as major sources of inefficiencies for the process and economic performance, respectively. Sensitivity of MESP and IRR towards the most influential technical, economic and market parameters performed.
topic organosovl
steam explosion
technoeconomic
biorefinery
ethanol
lignin
pretreatment
biofuels
url https://www.mdpi.com/1996-1073/12/21/4206
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