Biomass Ash: A Review of Chemical Compositions and Management Trends
Зола биомассы: обзор химического состава и тенденций обращения
2025-05-27
SCID: 54.1/xaaefxcw
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agricultural fertilizersbiomass fly ashchemical compositionheavy metalssustainable utilization
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Abstract (AI)
With the increasing global emphasis on renewable energy, the generation of biomass fly ash is anticipated to rise substantially in the coming years. This trend highlights the urgent need for effective strategies to manage and utilize this byproduct sustainably. This study reviews and classifies selected types of biomass ashes, treating them as representative examples that illustrate the wide variability in chemical compositions and physical properties across different biomass sources. These include ashes derived from woody biomass, agricultural residues, animal-origin biomass, and sewage sludge. Biomass ashes exhibit significant heterogeneity compared to coal ashes, which makes understanding their chemical composition—particularly the major components such as calcium (Ca), silicon (Si), and phosphorus (P)—critical for identifying suitable industrial applications. Special categories of ashes with elevated heavy metals and chlorine (Cl) levels are also identified and discussed. This approach enables the identification of sustainable utilization pathways, ranging from traditional uses, such as agricultural fertilizers and construction materials, to emerging applications in advanced engineering materials. Additionally, this paper addresses the assessment and mitigation of potential risks related to hazardous metals in biomass ashes.
Key Findings
1
Ashes with elevated heavy-metal and chlorine concentrations constitute special categories requiring targeted assessment and management.
2
Biomass ash compositions and physical properties vary substantially across woody, agricultural, animal-origin, and sewage-sludge sources.
3
Compared with coal ash, biomass ash is more heterogeneous, requiring detailed characterization of calcium, silicon, and phosphorus for application selection.
4
Effective biomass-ash management must assess and mitigate potential risks associated with hazardous metals.
5
Sustainable utilization pathways include agricultural fertilizers, construction materials, and emerging advanced engineering materials.
Research Object
Biomass ashes from woody biomass, agricultural residues, animal-origin biomass, and sewage sludge
Research Subject
Their chemical compositions and physical-property variability, management and sustainable utilization pathways, and risks associated with hazardous metals
Publication Details
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2025-05-27
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