中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Development sustainable concrete with high-volume wastes tile ceramic: Role of silica nanoparticles amalgamation

文献类型:期刊论文

作者Joudah, Zahraa Hussein1,2; Khalid, Nur Hafizah A.1; Baghban, Mohammad Hajmohammadian3; Faridmehr, Iman4; Talip, Adrina Rosseira A.1; Huseien, Ghasan Fahim5,6
刊名CASE STUDIES IN CONSTRUCTION MATERIALS
出版日期2024-12-01
卷号21页码:23
关键词Compressive strength Nanoparticles Strength prediction Sustainable concrete Wastes tile ceramic
ISSN号2214-5095
DOI10.1016/j.cscm.2024.e03733
通讯作者Khalid, Nur Hafizah A.(nur_hafizah@utm.my) ; Baghban, Mohammad Hajmohammadian(mohammad.baghban@ntnu.no) ; Huseien, Ghasan Fahim(ghasanfahim@gmail.com)
英文摘要As the global concrete industry shifts towards sustainable practices, there is an increasing focus on mitigating the environmental impacts of ordinary Portland cement (OPC)-based concrete, which is notorious for its significant greenhouse gas emissions, high energy consumption, and substantial demand for natural resources. This urgency is compounded by the growing production of waste tile ceramic materials due to rapid urban development, leading to enhanced research into their recyclability within concrete for improved durability and sustainability. This study explores the development of high-strength concrete utilizing waste tile ceramic aggregates (WTCAs) and waste tile ceramic powder (WTCP) as replacements for natural aggregate and OPC, respectively. To further enhance the concrete's mechanical properties and microstructure, silica nanoparticles derived from waste bottle glass (WBGNPs) were integrated in varying proportions ranging from 2 % to 10 % of the binder content. Optimal results were achieved with a full replacement of natural aggregate by WTCAs, 60 % substitution of OPC by WTCP, and the inclusion of 4 % WBGNPs, which collectively exhibited superior compressive, splitting tensile, and flexural strengths. Microstructural analyses revealed that the addition of WBGNPs improved the hydration process, increased gel density, and reduced porosity. From the obtained numerical results, the coefficient of determination value of 0.92 further confirms the model's predictive strength, demonstrating that the Random Forest algorithm can reliably estimate the compressive strength. The findings indicate that the concrete formulated with WTCP and WBGNPs not only meets diverse construction demands but also significantly contributes to environmental sustainability by reducing impacts on global warming and minimizing landfill usage. This study advocates for the strategic incorporation of WTCP and WBGNPs in concrete applications to promote environmentally sustainable construction practices. It is highly recommended that WTCP be utilized in sustainable binders as a replacement for OPC and natural aggregates to enhance it strength and durable properties, reduce the environmental issues, costs, and the depletion of natural resources.
WOS关键词SUPPLEMENTARY CEMENTITIOUS MATERIALS ; ORDINARY PORTLAND-CEMENT ; PREDICTIVE MODELS ; FLY-ASH ; STRENGTH ; NANOMATERIALS ; ENHANCEMENT ; PERFORMANCE ; DURABILITY ; POWDER
资助项目Universiti Teknologi Malaysia Fundamental Research[Q.J13000.3822.22H88]
WOS研究方向Construction & Building Technology ; Engineering ; Materials Science
语种英语
WOS记录号WOS:001313246800001
出版者ELSEVIER
资助机构Universiti Teknologi Malaysia Fundamental Research
源URL[http://ir.giec.ac.cn/handle/344007/42871]  
专题中国科学院广州能源研究所
通讯作者Khalid, Nur Hafizah A.; Baghban, Mohammad Hajmohammadian; Huseien, Ghasan Fahim
作者单位1.Univ Teknol Malaysia, Fac Civil Engn, Johor Baharu 81310, Johor, Malaysia
2.Univ Misan, Fac Engn, Dept Civil Engn, Amarah 62001, Iraq
3.Norwegian Univ Sci & Technol NTNU, Dept Mfg & Civil Engn, N-2815 Gjovik, Norway
4.Girne Amer Univ, Fac Engn, Civil Engn Dept, Via Mersin 10, N Cyprus, Turkiye
5.Chinese Acad Sci, Guangzhou Inst Energy Convers, Guangzhou 510640, Guangdong, Peoples R China
6.Natl Univ Singapore, Sch Design & Environm, Dept Built Environm, Singapore 117566, Singapore
推荐引用方式
GB/T 7714
Joudah, Zahraa Hussein,Khalid, Nur Hafizah A.,Baghban, Mohammad Hajmohammadian,et al. Development sustainable concrete with high-volume wastes tile ceramic: Role of silica nanoparticles amalgamation[J]. CASE STUDIES IN CONSTRUCTION MATERIALS,2024,21:23.
APA Joudah, Zahraa Hussein,Khalid, Nur Hafizah A.,Baghban, Mohammad Hajmohammadian,Faridmehr, Iman,Talip, Adrina Rosseira A.,&Huseien, Ghasan Fahim.(2024).Development sustainable concrete with high-volume wastes tile ceramic: Role of silica nanoparticles amalgamation.CASE STUDIES IN CONSTRUCTION MATERIALS,21,23.
MLA Joudah, Zahraa Hussein,et al."Development sustainable concrete with high-volume wastes tile ceramic: Role of silica nanoparticles amalgamation".CASE STUDIES IN CONSTRUCTION MATERIALS 21(2024):23.

入库方式: OAI收割

来源:广州能源研究所

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