[[abstract]]In this study, artificial lightweight aggregate (LWA) manufactured from recycled resources was investigated. Residues from mining, fly ash from an incinerator and heavy metal sludge from an electronic waste water plant were mixed into raw aggregate pellets and fed into a tunnel kiln to be sintered and finally cooled rapidly. Various feeding and sintering temperatures were employed to examine their impact on the extent of vitrification on the aggregate surface. Microstructural analysis and toxicity characteristic leaching procedure (TCLP) were also performed. The results show that the optimum condition of LWA fabrication is sintering at 1150 degrees C for 15 min with raw aggregate pellets fed at 750 degrees C. The rapidly vitrifi...
This study involved the reuse of residues, including fly ash (FA) and bottom ash (BA), from municipa...
The purpose of this study was to improve the recycling rate of industrial wastes by investigating th...
This paper is focused on the manufacturing and properties of light weight aggregates made from local...
In this study, artificial lightweight aggregate (LWA) manufactured from recycled resources was inves...
[[abstract]]©2006 Widener - Artificial ultra-lightweight aggregate (ULWA) manufactured from recycled...
[[abstract]]©2007 Elsevier - Metal sludge from industrial wastewater treatment plants was mixed with...
This research focused on the obtainment of sustainable lightweight aggregates (LWAs) for agronomic a...
The aim of this study was to investigate the development of a process for manufacturing lightweight ...
This study assessed the technical feasibility of formulating lightweight aggregates (LWA) from munic...
Abstract: Lightweight aggregate (LWA) production with sewage sludge and municipal solid waste incine...
The fraction of municipal solid waste incinerator bottom ash with a particle size less than 8mm has ...
This work focuses on the assessment of technological properties and on the leaching behavior of ligh...
Cold-bonded pelletizing technique is frequently used in aggregate manufacturing process as it can mi...
This study focused on the reclamation of ash from incineration process and development of new artifi...
This paper investigates the effect of a two-stage heating process on the properties of lightweight a...
This study involved the reuse of residues, including fly ash (FA) and bottom ash (BA), from municipa...
The purpose of this study was to improve the recycling rate of industrial wastes by investigating th...
This paper is focused on the manufacturing and properties of light weight aggregates made from local...
In this study, artificial lightweight aggregate (LWA) manufactured from recycled resources was inves...
[[abstract]]©2006 Widener - Artificial ultra-lightweight aggregate (ULWA) manufactured from recycled...
[[abstract]]©2007 Elsevier - Metal sludge from industrial wastewater treatment plants was mixed with...
This research focused on the obtainment of sustainable lightweight aggregates (LWAs) for agronomic a...
The aim of this study was to investigate the development of a process for manufacturing lightweight ...
This study assessed the technical feasibility of formulating lightweight aggregates (LWA) from munic...
Abstract: Lightweight aggregate (LWA) production with sewage sludge and municipal solid waste incine...
The fraction of municipal solid waste incinerator bottom ash with a particle size less than 8mm has ...
This work focuses on the assessment of technological properties and on the leaching behavior of ligh...
Cold-bonded pelletizing technique is frequently used in aggregate manufacturing process as it can mi...
This study focused on the reclamation of ash from incineration process and development of new artifi...
This paper investigates the effect of a two-stage heating process on the properties of lightweight a...
This study involved the reuse of residues, including fly ash (FA) and bottom ash (BA), from municipa...
The purpose of this study was to improve the recycling rate of industrial wastes by investigating th...
This paper is focused on the manufacturing and properties of light weight aggregates made from local...