Conversion of plastic wastes into value-added lightweight construction materials
With the scarcity of natural resources in Singapore and the high dumping cost of plastic waste, copper slag and marine clay, a good recycling method for those materials is required. This project focused on producing a value-added lightweight construction material, using marine clay, sand and plastic...
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sg-ntu-dr.10356-158952023-03-03T16:59:25Z Conversion of plastic wastes into value-added lightweight construction materials Cao, Nam Hai Chu Jian School of Civil and Environmental Engineering Nanyang Technopreneurship Centre DRNTU::Engineering::Environmental engineering::Waste management With the scarcity of natural resources in Singapore and the high dumping cost of plastic waste, copper slag and marine clay, a good recycling method for those materials is required. This project focused on producing a value-added lightweight construction material, using marine clay, sand and plastic waste. A laboratory study of the engineering and mechanical properties of the geo-plastic material with different Polypropylene contents was conducted. The study focused on density, compressive strength, strain behavior and permeability of the soil. The results were compared with treatment made by other methods such as the use of cement. It is found that the geo-plastic material is as strong as lightweight and low grade concrete. It is also lighter than cement treated materials. It gains full strength almost instantly as compared to a few weeks of curing time required for cement-based materials. Moreover, it is also more cost-effective to be produced. Therefore, the geo-plastic material can become a promising new-material to be used for civil engineering projects. Keyword: Polypropylene; Marine Clay; Copper slag; Sand; Compressive strength; Density; Bachelor of Engineering (Civil) 2009-05-18T08:47:57Z 2009-05-18T08:47:57Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/15895 en Nanyang Technological University 59 p. application/pdf |
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DRNTU::Engineering::Environmental engineering::Waste management Cao, Nam Hai Conversion of plastic wastes into value-added lightweight construction materials |
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With the scarcity of natural resources in Singapore and the high dumping cost of plastic waste, copper slag and marine clay, a good recycling method for those materials is required. This project focused on producing a value-added lightweight construction material, using marine clay, sand and plastic waste. A laboratory study of the engineering and mechanical properties of the geo-plastic material with different Polypropylene contents was conducted. The study focused on density, compressive strength, strain behavior and permeability of the soil. The results were compared with treatment made by other methods such as the use of cement. It is found that the geo-plastic material is as strong as lightweight and low grade concrete. It is also lighter than cement treated materials. It gains full strength almost instantly as compared to a few weeks of curing time required for cement-based materials. Moreover, it is also more cost-effective to be produced. Therefore, the geo-plastic material can become a promising new-material to be used for civil engineering projects.
Keyword: Polypropylene; Marine Clay; Copper slag; Sand; Compressive strength; Density; |
author2 |
Chu Jian |
author_facet |
Chu Jian Cao, Nam Hai |
format |
Final Year Project |
author |
Cao, Nam Hai |
author_sort |
Cao, Nam Hai |
title |
Conversion of plastic wastes into value-added lightweight construction materials |
title_short |
Conversion of plastic wastes into value-added lightweight construction materials |
title_full |
Conversion of plastic wastes into value-added lightweight construction materials |
title_fullStr |
Conversion of plastic wastes into value-added lightweight construction materials |
title_full_unstemmed |
Conversion of plastic wastes into value-added lightweight construction materials |
title_sort |
conversion of plastic wastes into value-added lightweight construction materials |
publishDate |
2009 |
url |
http://hdl.handle.net/10356/15895 |
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1759856825729024000 |