Cold-bonded pelletizing technique is frequently used in aggregate manufacturing process as it can minimise the energy consumption. It has contributed to both economical and environmental advantages because it helps to reduce the gas emissions problems. Bottom ash collected from municipal solid waste incineration (MSWI) plant was selected as raw material in this study and was utilised as a partial replacement for cement for artificial aggregate production. Several percentage of ash replacement was selected ranged from 10 to 50%. Aggregate pellets were subjected to different types of curing condition which is room-water (RW), room-room (RR), oven-room (OR) and oven-water (OW) condition. Properties of aggregate pellets were examined to obtain ...
In this study, the utilization of bottom ash as an aggregate in the production of lightweight buildi...
Production of artificial lightweight aggregate (LWA) from industrial by-products or abundant volcani...
There is great growing concern regarding the environmental impact of the building and construction i...
Cold-bonded pelletizing technique is frequently used in aggregate manufacturing process as it can mi...
Municipal solid waste incineration (MSWI) bottom ash fine particles (0–2 mm, BAF) are a potential bu...
This study focused on the reclamation of ash from incineration process and development of new artifi...
Cement-based cold bonding pelletization process has recently gained relevant consideration in litera...
The pelletizing technique is widely used to produce cold bonded aggregates based on waste powder mat...
The municipal solid waste incineration bottom ash (MSWIBA) contains amounts of hazardous elements or...
In this work, an extensive study on the recycling of municipal solid waste incinerator fly ash by me...
The reported research explored the feasibility of cold bonding as a method to produce low-embodied-e...
The cold-bonding pelletizing technique is applied in this study as an integrated method to recycle m...
[[abstract]]In this study, artificial lightweight aggregate (LWA) manufactured from recycled resourc...
This paper reports the results of an investigation on material recovery by stabilization/solidificat...
In this study, the utilization of bottom ash as an aggregate in the production of lightweight buildi...
Production of artificial lightweight aggregate (LWA) from industrial by-products or abundant volcani...
There is great growing concern regarding the environmental impact of the building and construction i...
Cold-bonded pelletizing technique is frequently used in aggregate manufacturing process as it can mi...
Municipal solid waste incineration (MSWI) bottom ash fine particles (0–2 mm, BAF) are a potential bu...
This study focused on the reclamation of ash from incineration process and development of new artifi...
Cement-based cold bonding pelletization process has recently gained relevant consideration in litera...
The pelletizing technique is widely used to produce cold bonded aggregates based on waste powder mat...
The municipal solid waste incineration bottom ash (MSWIBA) contains amounts of hazardous elements or...
In this work, an extensive study on the recycling of municipal solid waste incinerator fly ash by me...
The reported research explored the feasibility of cold bonding as a method to produce low-embodied-e...
The cold-bonding pelletizing technique is applied in this study as an integrated method to recycle m...
[[abstract]]In this study, artificial lightweight aggregate (LWA) manufactured from recycled resourc...
This paper reports the results of an investigation on material recovery by stabilization/solidificat...
In this study, the utilization of bottom ash as an aggregate in the production of lightweight buildi...
Production of artificial lightweight aggregate (LWA) from industrial by-products or abundant volcani...
There is great growing concern regarding the environmental impact of the building and construction i...