As the demand for nonrenewable natural resources, such as aggregate, is increasing worldwide, new production of artificial aggregate should be developed. Artificial lightweight aggregate can bring advantages to the construction field due to its lower density, thus reducing the dead load applied to the structural elements. In addition, application of artificial lightweight aggregate in lightweight concrete will produce lower thermal conductivity. However, the production of artificial lightweight aggregate is still limited. Production of artificial lightweight aggregate incorporating waste materials or pozzolanic materials is advantageous and beneficial in terms of being environmentally friendly, as well as lowering carbon dioxide emissions. ...
The disposal problem of industrial by-products like fly ash, heavy metal sludge, sewage sludge etc. ...
The purpose of this study is to evaluate different lightweight concretes for the first time formulat...
This article presents the development of a sustainable ultra-lightweight geopolymer concrete (with a...
There is great growing concern regarding the environmental impact of the building and construction i...
Due to the rapid depletion of natural resources, the use of waste materials and by-products from dif...
The effect of the application of pelletized fly ash based aggregates obtained through different proc...
The waste materials from industrial are one of the concern issues in sustainable development. Recycl...
The depletion of aggregate-related natural resources is the primary concern of all researchers globa...
Abstract Using industrial side streams as artificial aggregate precursors could increase waste util...
A lightweight concrete (LWC) displays physical, mechanical and structural features preferred in cont...
191-198The aim of this study is to identify a construction material ensuring good mechanical propert...
This study aimed to investigate the recycling opportunities for industrial byproducts and their cont...
The paper presents the result of testing a new patented lightweight aggregates. The only solid mater...
In connection with the growing need for saving natural resources used in aggregates for concrete, th...
In the construction industry, the use of lightweight aggregate is increasing rapidly due to its bene...
The disposal problem of industrial by-products like fly ash, heavy metal sludge, sewage sludge etc. ...
The purpose of this study is to evaluate different lightweight concretes for the first time formulat...
This article presents the development of a sustainable ultra-lightweight geopolymer concrete (with a...
There is great growing concern regarding the environmental impact of the building and construction i...
Due to the rapid depletion of natural resources, the use of waste materials and by-products from dif...
The effect of the application of pelletized fly ash based aggregates obtained through different proc...
The waste materials from industrial are one of the concern issues in sustainable development. Recycl...
The depletion of aggregate-related natural resources is the primary concern of all researchers globa...
Abstract Using industrial side streams as artificial aggregate precursors could increase waste util...
A lightweight concrete (LWC) displays physical, mechanical and structural features preferred in cont...
191-198The aim of this study is to identify a construction material ensuring good mechanical propert...
This study aimed to investigate the recycling opportunities for industrial byproducts and their cont...
The paper presents the result of testing a new patented lightweight aggregates. The only solid mater...
In connection with the growing need for saving natural resources used in aggregates for concrete, th...
In the construction industry, the use of lightweight aggregate is increasing rapidly due to its bene...
The disposal problem of industrial by-products like fly ash, heavy metal sludge, sewage sludge etc. ...
The purpose of this study is to evaluate different lightweight concretes for the first time formulat...
This article presents the development of a sustainable ultra-lightweight geopolymer concrete (with a...