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Abstract
Sulfur-enhanced microbiologically activated biochar and processed grass fibers were tested for suitability as bulk material for horticultural substrates. The potential for use as bulk material was improved when grass fibers with lower biological stability were acidified with elemental sulfur (S). Acidification of the fibers with S was obtained within 2 weeks and resulted in a higher biological stability due to improved decomposition during incubation with S, a change in the microbiome, or inhibition due to high sulfate concentrations, which reduced the decomposition activity. The application of wood-based biochars as bulk or stand-alone material for horticultural substrates is restricted by their high pH and high acid-buffering capacity. Acidification of biochar through microbial activation occurred slowly. The dynamics of lowering pH after S treatment were determined by the acid-buffering capacity of the biochar. In the long term a strong drop in pH was observed in biochars with a low acid-buffering capacity. For the biochars with a high acid-buffering capacity, pH drop was moderate despite a clear decrease in acid-buffering capacity. The microbial activation of biochar was accelerated by adding mineral fertilizer or chitin. Microbial activation of the biochars was confirmed by S mineralization after application of elemental S and by N mineralization from chitin. The acidification of biochars produced from bark or straw-like fiber with elemental S resulted in only small changes in surface properties.
| Original language | English |
|---|---|
| Article number | 177760 |
| Journal | Science of the Total Environment |
| Volume | 957 |
| ISSN | 0048-9697 |
| DOIs | |
| Publication status | Published - 20-Dec-2024 |
Keywords
- Sulfur-enhanced
- Biologically activated biochar
- Biological acidification
- Biochar carbon removal
- Chitin
- Refined grass fibers
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Dive into the research topics of 'S-enhanced microbial activation of biochars and processed grass fibers for circular horticulture'. Together they form a unique fingerprint.Projects
- 2 Finished
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EJP SOIL - BIOCASH: Bio-economy and Circular Agriculture for Soil Health
Vandecasteele, B. (Project Manager), Viaene, J. (Researcher), Joos, L. (Researcher), Van Loo, K. (Project Assistant) & Ommeslag, S. (Project Assistant)
1/11/22 → 31/10/24
Project: Research
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BASTA: BASTA: Biochar’s Added value in Sustainable land use with Targeted Applications in processes, growing media & (future proof) open-field cultivation
Vandecasteele, B. (Project Manager), Debode, J. (ProjectSupervisor), Peiren, N. (ProjectSupervisor), De Campeneere, S. (ProjectSupervisor), Eeckhaut, T. (ProjectSupervisor), Viaene, J. (Researcher), Joos, L. (Researcher) & De Tender, C. (Former Project Supervisor)
1/01/19 → 31/05/24
Project: Research
Activities
- 1 Lecture and oral contribution
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Sulfur-enhanced microbial activation of biochar for circular horticulture (Green Carbon Webinar Series)
Vandecasteele, B. (Speaker)
23-May-2024Activity: Talk or presentation › Lecture and oral contribution
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