Suppr超能文献

废纸骨料和聚对苯二甲酸乙二酯对砂浆性能的影响。

Effect of waste paper aggregate and polyethylene terephthalate on mortar performanCE.

作者信息

Harabi Houmame, Khouadjia Mohamed Lyes Kamel, Bensalem Sara, Isleem Haytham F, Khishe Mohammad

机构信息

Department of Civil Engineering, Laboratory of Materials and Durability of Constructions (LMDC), University of Mentouri Constantine 1, 25000, Constantine, Algeria.

Department of computer Science, University of York, York YO10 5DD, United Kingdom.

出版信息

Sci Rep. 2024 Nov 28;14(1):29588. doi: 10.1038/s41598-024-80914-0.

Abstract

Concrete's widespread use in construction is increasing due to urbanization and population growth. While it offers durability and strength, its production poses environmental challenges. Researchers and global initiatives are working towards more sustainable concrete production methods and effective waste management, particularly for paper waste (WPA) and polyethylene terephthalate waste (PET). This study aims to investigate the effects of waste paper aggregate (WPA) on the flow time, compressive strength, flexural strength, and thermal conductivity of mortars. Furthermore, it explores the potential of polyethylene terephthalate (PET) to enhance the compressive and flexural strengths of these mortars. To conduct this study, the materials were characterized using EDX spectroscopy and SEM analysis. Gwyddion software was employed to conduct a comprehensive analysis of the grain segmentation and microstructural characteristics of the WPA mortars. Subsequently, four distinct mixtures were selected for further investigation. The first mixture involved substituting sand with various percentages of waste paper aggregate (WPA) (1-4%) without PET. The second mixture included WPA (1-4%) and 5% PET. Due to the ineffective plasticizer in the first two mixtures, the third mixture replaced 20% of quarry sand with dune sand (DS) while maintaining the same percentages of WPA and PET as in the previous mixtures. The results indicate that mortars RM1 (0% WPA + 0% PET) and RM2 (0% WPA + 0% PET + 20% DS) demonstrated the best flow time. This suggests that incorporating WPA and PET into the mortar mix can negatively impact its workability, making it more challenging to handle, shape, and apply. Sample PW4, composed of 4% WPA and 0% PET, displayed a significant increase in compressive strength from 46.36 MPa to 49.81 MPa and flexural strength from 10.5 MPa to 11.47 MPa, indicating that incorporating WPA into the mortars can enhance resistance to both compressive and flexural strengths. This same mixture, PW4, demonstrated that the mortars are poor conductors of heat and would be more effective as thermal insulators. Grain segmentation of WPA mortars using Gwyddion software revealed that shorter WPA fibers tend to align with the width, while longer WPA fibers tend to align with the length of the section.

摘要

由于城市化和人口增长,混凝土在建筑中的广泛应用正在增加。虽然它具有耐久性和强度,但其生产带来了环境挑战。研究人员和全球倡议正在致力于更可持续的混凝土生产方法和有效的废物管理,特别是针对废纸(WPA)和聚对苯二甲酸乙二酯废物(PET)。本研究旨在研究废纸骨料(WPA)对砂浆的流动时间、抗压强度、抗弯强度和导热系数的影响。此外,还探讨了聚对苯二甲酸乙二酯(PET)增强这些砂浆抗压和抗弯强度的潜力。为了进行这项研究,使用能谱仪(EDX)和扫描电子显微镜(SEM)分析对材料进行了表征。采用Gwyddion软件对WPA砂浆的颗粒分割和微观结构特征进行了全面分析。随后,选择了四种不同的混合物进行进一步研究。第一种混合物是用不同百分比(1-4%)的废纸骨料(WPA)替代沙子,不含PET。第二种混合物包括WPA(1-4%)和5%的PET。由于前两种混合物中的增塑剂效果不佳,第三种混合物用沙丘砂(DS)替代了20%的采石场砂,同时保持与前一种混合物相同的WPA和PET百分比。结果表明,砂浆RM1(0%WPA + 0%PET)和RM2(0%WPA + 0%PET + 20%DS)表现出最佳的流动时间。这表明将WPA和PET掺入砂浆混合物中会对其工作性产生负面影响,使其在处理、成型和施工方面更具挑战性。由4%WPA和0%PET组成的样品PW4,抗压强度从46.36MPa显著提高到49.81MPa,抗弯强度从10.5MPa提高到11.47MPa,表明将WPA掺入砂浆中可以提高抗压和抗弯强度。同样是这种混合物PW4,表明砂浆是不良热导体,作为隔热材料会更有效。使用Gwyddion软件对WPA砂浆进行颗粒分割显示,较短的WPA纤维倾向于与截面宽度对齐,而较长的WPA纤维倾向于与截面长度对齐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c98b/11604962/a05ca19abb10/41598_2024_80914_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验