Synergistic In-situ Control of NO/SO2 and Heavy Metals during Co-combustion of Sewage Sludge with Coal
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Updated Time:2026-08-11 22:13:09 Hits:0
Oral Presentation
Abstract
The co-combustion of sewage sludge (SS) with coal offers a promising strategy for waste valorization, yet its effects on pollutant emissions (NO, SO2, heavy metals (HMs)) remain insufficiently elucidated. This work investigated the NO/SO2 release patterns, HMs retention and extractability, and ash fusion behaviors during SS/coal co-combustion. Comprehensive analyses of flue gases and residual ashes reveal multiple synergistic benefits. Co-firing SS promotes early ignition and enhances overall combustion reactivity of coal through the rapid release of abundant volatiles that facilitate fixed-carbon combustion, although excessive SS blending reduces heat release due to its low calorific value and high ash content. Concurrent in-situ reductions of NO and SO2 are achieved: NO suppression results from intensified O2 consumption and elevated CO formation, which inhibit NH3/HCN precursor oxidation while promoting NO reduction via CO or char active sites; SO2 mitigation is linked to sulfur retention by Ca-bearing minerals forming stable sulfates. Co-combustion enhances retention of Cr, Cu, Pb, and Zn in ash matrices while reducing their extractability, associated with silicate, aluminosilicate, and phosphate-rich phases that encapsulate HMs. These refractory phases elevate ash flow temperatures and inhibit liquid slag formation. Overall, SS/coal co-combustion achieves reduced gaseous emissions, stabilized HMs in ashes, and enhanced ash fusibility.
Keywords
Coal combustion; Sewage sludge disposal; NO and SO2 reduction; Heavy metal retention; Ash fusibility
Submission Author
Jingchong Yan
Anhui University of Technology
Yasen Wu
Anhui University of Technology
Renhua Zhang
Anhui University of Technology
Li Zhang
Anhui University of Technology
Hengfu Shui
Anhui University of Technology
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