LAPSE:2023.27280
Published Article
LAPSE:2023.27280
Sustainable Production of 5-Hydroxymethylfurfural from Pectin-Free Sugar Beet Pulp in a Simple Aqueous Phase System-Optimization with Doehlert Design
Hanna Pińkowska, Małgorzata Krzywonos, Paweł Wolak, Przemysław Seruga, Agata Górniak, Adrianna Złocińska, Michał Ptak
April 4, 2023
Abstract
Waste solid residue from the hydrothermal extraction of pectin derived from sugar beet pulp was used as feedstock in the production of 5-hydroxymethylfurfural (5-HMF). The depolymerization of pectin-free sugar beet pulp (PF-SBP) to monosaccharides and their dehydration to 5-HMF were conducted in subcritical water using a batch reactor. The experimental design methodology was used in order to model the hydrothermal process and to optimize the operational parameters of the reaction, namely temperature and holding time. These parameters are required to achieve the highest yield of 5-HMF. The model predicts, in good agreement with experimental results (R2 = 0.935), an optimal yield of 5-HMF (of approximately 38% in relation to the cellulosic fraction content in the PF-SBP) at a temperature of 192.5 °C and a holding time of about 51.2 min. 5-HMF was successfully isolated from the reaction mixture using the liquid−liquid extraction method. The results are suitable for industrial upscaling and may become an incentive to introduce a new, environmentally friendly, uncomplicated, and efficient waste treatment method. The method would be used to treat products from the sugar refining industry, the treatment of which has proven to be problematic until now.
Keywords
5-hydroxymethylfurfural, bioeconomy, biorefinery, biowaste, experimental design methodology, pectin-free sugar beet pulp, subcritical water
Suggested Citation
Pińkowska H, Krzywonos M, Wolak P, Seruga P, Górniak A, Złocińska A, Ptak M. Sustainable Production of 5-Hydroxymethylfurfural from Pectin-Free Sugar Beet Pulp in a Simple Aqueous Phase System-Optimization with Doehlert Design. (2023). LAPSE:2023.27280
Author Affiliations
Pińkowska H: Department of Industrial Chemistry, Wrocław University of Economics and Business, Komandorska 118/120, 53-345 Wrocław, Poland
Krzywonos M: Department of Bioprocess Engineering, Wrocław University of Economics and Business, Komandorska 118/120, 53-345 Wrocław, Poland [ORCID]
Wolak P: Department of Industrial Chemistry, Wrocław University of Economics and Business, Komandorska 118/120, 53-345 Wrocław, Poland
Seruga P: Department of Bioprocess Engineering, Wrocław University of Economics and Business, Komandorska 118/120, 53-345 Wrocław, Poland [ORCID]
Górniak A: Laboratory of Elemental Analysis and Structural Research, Wrocław Medical University, Borowska 211A, 50-556 Wrocław, Poland [ORCID]
Złocińska A: Laboratory of Elemental Analysis and Structural Research, Wrocław Medical University, Borowska 211A, 50-556 Wrocław, Poland [ORCID]
Ptak M: Department of Economics and Research on Development, Wrocław University of Economics and Business, Komandorska 118/120, 53-345 Wrocław, Poland
Journal Name
Energies
Volume
13
Issue
21
Article Number
E5649
Year
2020
Publication Date
2020-10-28
ISSN
1996-1073
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PII: en13215649, Publication Type: Journal Article
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