LAPSE:2023.5760
Published Article

LAPSE:2023.5760
Demineralization of Miscanthus Biocrude Obtained from Catalytic Hydrothermal Liquefaction: Conditioning through Acid Washing
February 23, 2023
Abstract
In this contribution, we successfully applied demineralization (i.e., solvent-assisted separation and acid washing) for the removal of carbonaceous solids and inorganics from a biocrude obtained from the catalytic hydrothermal liquefaction (HTL) of Miscanthus. The experimental results of all six employed acids showed that 0.1 M HSO4 was the most effective and significantly reduced metallic (Fe by 93.9%, <15 µg/g and Mg by 95.6%, 2.1 µg/g) and ash content (by 92.7% to 337 µg/g) from the already filtered biocrude. The utilized demineralizing agents caused a loss of nitrogen and of organic carbon (1% total organic carbon (TOC) and 0.058% total nitrogen (TN) in 0.1 M HSO4). Gas chromatography-mass spectrometry (GC−MS) results clarified the nature of this loss, showing that 54% of ketones and 39% of alcohols were removed when 0.1 M HSO4 was employed. Furthermore, FT-IR spectra remained the same before and after acid washing without affecting any functional groups. This work therefore proposes demineralization as a viable route for the removal of high inorganic content from lignocellulosic HTL biocrudes.
In this contribution, we successfully applied demineralization (i.e., solvent-assisted separation and acid washing) for the removal of carbonaceous solids and inorganics from a biocrude obtained from the catalytic hydrothermal liquefaction (HTL) of Miscanthus. The experimental results of all six employed acids showed that 0.1 M HSO4 was the most effective and significantly reduced metallic (Fe by 93.9%, <15 µg/g and Mg by 95.6%, 2.1 µg/g) and ash content (by 92.7% to 337 µg/g) from the already filtered biocrude. The utilized demineralizing agents caused a loss of nitrogen and of organic carbon (1% total organic carbon (TOC) and 0.058% total nitrogen (TN) in 0.1 M HSO4). Gas chromatography-mass spectrometry (GC−MS) results clarified the nature of this loss, showing that 54% of ketones and 39% of alcohols were removed when 0.1 M HSO4 was employed. Furthermore, FT-IR spectra remained the same before and after acid washing without affecting any functional groups. This work therefore proposes demineralization as a viable route for the removal of high inorganic content from lignocellulosic HTL biocrudes.
Record ID
Keywords
acid washing, demineralization, hydrothermal liquefaction, Miscanthus biocrude, solvent-assisted separation
Subject
Suggested Citation
Haider MS, Isik MA, Castello D, Pedersen TH, Rosendahl LA. Demineralization of Miscanthus Biocrude Obtained from Catalytic Hydrothermal Liquefaction: Conditioning through Acid Washing. (2023). LAPSE:2023.5760
Author Affiliations
Haider MS: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark
Isik MA: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark
Castello D: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Pedersen TH: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Rosendahl LA: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Isik MA: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark
Castello D: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Pedersen TH: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Rosendahl LA: Department of Energy Technology, Aalborg University, Pontoppidanstræde 111, 9220 Aalborg Øst, Denmark [ORCID]
Journal Name
Processes
Volume
9
Issue
6
First Page
1035
Year
2021
Publication Date
2021-06-12
ISSN
2227-9717
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Original Submission
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PII: pr9061035, Publication Type: Journal Article
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LAPSE:2023.5760
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https://doi.org/10.3390/pr9061035
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Feb 23, 2023
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