Devolatilization and ash comminution of two different sewage sludges under fluidized bed combustion conditions

Two different wet sewage sludges have been characterized under fluidized bed combustion conditions with reference to their devolatilization behavior and ash comminution with the aid of different and complementary experimental protocols. Analysis of the devolatilization process allowed to determine t...

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Published in:Experimental thermal and fluid science Vol. 34; no. 3; pp. 387 - 395
Main Authors: Solimene, R., Urciuolo, M., Cammarota, A., Chirone, R., Salatino, P., Damonte, G., Donati, C., Puglisi, G.
Format: Journal Article Conference Proceeding
Language:English
Published: Amsterdam Elsevier Inc 01-04-2010
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Abstract Two different wet sewage sludges have been characterized under fluidized bed combustion conditions with reference to their devolatilization behavior and ash comminution with the aid of different and complementary experimental protocols. Analysis of the devolatilization process allowed to determine the size of fuel particle able to achieve effective lateral spreading of the volatile matter across the cross-section of medium-scale combustors. Primary fragmentation and primary ash particle characterization pointed out the formation of a significant amount of relatively large fragments. The mechanical properties of these fragments have been characterized by means of elutriation/abrasion tests using both quartz and sludge ash beds.
AbstractList Two different wet sewage sludges have been characterized under fluidized bed combustion conditions with reference to their devolatilization behavior and ash comminution with the aid of different and complementary experimental protocols. Analysis of the devolatilization process allowed to determine the size of fuel particle able to achieve effective lateral spreading of the volatile matter across the cross-section of medium-scale combustors. Primary fragmentation and primary ash particle characterization pointed out the formation of a significant amount of relatively large fragments. The mechanical properties of these fragments have been characterized by means of elutriation/abrasion tests using both quartz and sludge ash beds.
Two different wet sewage sludges have been characterized under fluidized bed combustion conditions with reference to their devolatilization behavior and ash comminution with the aid of different and complementary experimental protocols. Analysis of the devolatilization process allowed to determine the size of fuel particle able to achieve effective lateral spreading of the volatile matter across the cross-section of medium-scale combustors. Primary fragmentation and primary ash particle characterization pointed out the formation of a significant amount of relatively large fragments. The mechanical properties of these fragments have been characterized by means of elutriation/abrasion tests using both quartz and sludge ash beds. (author)
Author Urciuolo, M.
Solimene, R.
Damonte, G.
Puglisi, G.
Donati, C.
Cammarota, A.
Chirone, R.
Salatino, P.
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  surname: Cammarota
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Issue 3
Keywords Comminution phenomena
Devolatilization
Wet sewage sludge
Attrition
Fluidized beds
Fluidized bed combustion
Ash
Urban waste water
Waste water purification
Sewage sludge
Fragmentation
Language English
License CC BY 4.0
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MeetingName Sixth Mediterranean Combustion Symposium
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Snippet Two different wet sewage sludges have been characterized under fluidized bed combustion conditions with reference to their devolatilization behavior and ash...
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SubjectTerms ABRASION
Abrasion resistance
Applied sciences
ASHES
Attrition
Combustion
Combustion of heterogeneous mixtures. Incineration
Combustion. Flame
COMBUSTORS
COMMINUTION
Comminution phenomena
DEVOLATILIZATION
ELUTRIATION
Energy
ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION
Energy. Thermal use of fuels
Exact sciences and technology
Fluidized beds
FLUIDIZED-BED COMBUSTION
FRAGMENTATION
Fragments
FUEL PARTICLES
INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY
MECHANICAL PROPERTIES
PARTICLES
Sewage
SEWAGE SLUDGE
SIZE
Theoretical studies. Data and constants. Metering
VOLATILE MATTER
Wet sewage sludge
Title Devolatilization and ash comminution of two different sewage sludges under fluidized bed combustion conditions
URI https://dx.doi.org/10.1016/j.expthermflusci.2009.10.033
https://search.proquest.com/docview/1671294870
https://www.osti.gov/biblio/21285679
Volume 34
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