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Particle size and moisture content evolution during incineration bottom ash weathering
by
Song, Yapeng
, Cao, Qiguang
, Li, Song
, Zhang, Xiaohui
, Yang, Dongqing
, Xie, Guoli
, Lu, Peng
, Zheng, Mingyue
in
Bottom ash
/ Combustion
/ Disintegration
/ Incineration
/ Incinerators
/ Moisture content
/ Particle size
/ Weathering
2026
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Particle size and moisture content evolution during incineration bottom ash weathering
by
Song, Yapeng
, Cao, Qiguang
, Li, Song
, Zhang, Xiaohui
, Yang, Dongqing
, Xie, Guoli
, Lu, Peng
, Zheng, Mingyue
in
Bottom ash
/ Combustion
/ Disintegration
/ Incineration
/ Incinerators
/ Moisture content
/ Particle size
/ Weathering
2026
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Do you wish to request the book?
Particle size and moisture content evolution during incineration bottom ash weathering
by
Song, Yapeng
, Cao, Qiguang
, Li, Song
, Zhang, Xiaohui
, Yang, Dongqing
, Xie, Guoli
, Lu, Peng
, Zheng, Mingyue
in
Bottom ash
/ Combustion
/ Disintegration
/ Incineration
/ Incinerators
/ Moisture content
/ Particle size
/ Weathering
2026
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Particle size and moisture content evolution during incineration bottom ash weathering
Journal Article
Particle size and moisture content evolution during incineration bottom ash weathering
2026
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Overview
This article collected samples of incineration bottom ash from landfill areas, storage yards, and areas weathered for 2 months. These samples represent bottom ash conditions immediately after removal from the incinerator, which were stored for 1-2 weeks and experienced extended weathering. Particle size analysis revealed significant disintegration of the bottom ash during weathering. After two months of weathering, the proportion of particles larger than 4 mm (grades 7–8) decreased by 14.8%, while the proportion of particles in the 0.3–2 mm range (grades 3–5) increased by 15%. The weakening of particle size correlations after weathering signals that disintegration has produced a more stable bottom ash structure. Analysis of sample moisture content showed that the weathered fine-grained fraction exhibited relatively high moisture content.
Publisher
IOP Publishing
Subject
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