Environmental Properties of Environmentally Friendly Construction Materials: Recycled Ldpe Composites Filled by Blast Furnace Dust
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Date
2021
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
College Publishing
Open Access Color
HYBRID
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
This study focused on creating a sustainable composite material using blast furnace dust of the iron-steel industry and plastic wastes of the plastic industry in order to reduce the embodied energy of the material and generate more sustainable material. In this study, varying amounts of blast furnace dust (BFD), which is the primary ironsteel industry waste and which is used as filler for recycled low-density polyethylene (LDPE), was mixed to create the composite material. The embodied energy, emissions to water and air (volatile organic compounds) of BFD filled LDPE composites were determined. It was found that the composite materials had less embodied energy compared with polymer-based flooring materials such as epoxy, polyurethane (PU) and polyvinylchloride (PVC). In addition, it was determined that the composite material did not release emissions to water and have fewer total volatile organic compounds (TVOCs). These results showed that the produced composite material could be used in buildings as a sustainable floor coating material, thus saving raw materials and supporting indoor air quality and recycling.
Description
Celebi, Gulser/0000-0001-5439-9764; Celebi, Gulser/0000-0001-9916-4766
Keywords
Ldpe Composite, Blast Furnace Dust, Embodied Energy, Tvocs, Waste Management
Fields of Science
01 natural sciences, 0105 earth and related environmental sciences
Citation
Kayılı, Merve Tuna; Çelebi, Gülser (2021). "ENVIRONMENTAL PROPERTIES OF ENVIRONMENTALLY FRIENDLY CONSTRUCTION MATERIALS: RECYCLED LDPE COMPOSITES FILLED BY BLAST FURNACE DUST", Journal of Green Building, Vol. 16, No. 3, pp. 135-153.
WoS Q
Scopus Q
Q3

OpenCitations Citation Count
6
Source
Journal of Green Building
Volume
16
Issue
3
Start Page
135
End Page
153
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Citations
CrossRef : 7
Scopus : 6
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Mendeley Readers : 22
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