甘蔗渣与煅烧白云石二元混合灰替代部分水泥提高C-25级混凝土性能的试验研究。

IF 3.9 2区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Dereje Tesfaye Woldesenbet, Jemal Jibril Mohammed, Solomon Demiss Negedu, Jose Henriques, Endrias Adane Bekele
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引用次数: 0

摘要

水泥是一种全球生产的建筑材料,是每个建筑项目的重要组成部分。由于与水泥制造相关的高二氧化碳排放和水泥成本上升,替代材料,主要是农业工业废料,正在成为潜在的水泥替代品。许多天然存在的材料,如稻壳灰、玉米芯灰、粉煤灰、矿渣、硅灰、甘蔗渣灰(BA)和天然火山灰,由于其强度、成本效益和环境效益,被用作混凝土和砂浆中水泥的部分替代品。BA经常被用作混凝土中的部分水泥替代品,但大多数研究将其利用率限制在15%,突出了火山灰材料的局限性。本研究考察了二掺BA和煅烧白云石粉(CDP)作为部分水泥替代,即0%、5%、10%、15%、20%、25%、30%、35%、40%、45%和50%,对C-25级混凝土抗压强度的影响。利用x射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、扫描电镜(SEM)、x射线荧光(XRF)和动态光散射(DLS)研究了BA、CDP和二元混合物的物理化学性质。详细评价了二元混合料对混凝土和易性、凝结时间、抗压强度、强度活性指数(SAI)、吸水率和干密度的影响。通过铸造66个15cm[公式:见文]15cm[公式:见文]15cm尺寸的标准立方体,分别固化7和28天来检测其抗压强度。抗压强度试验表明,将灰火山灰粒径降至水泥级以下,并将BA与CDP混合,可替代30%的水泥,28天抗压强度提高到36.7 MPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Experimental investigation on partial cement replacement with binary blended bagasse ash and calcined dolomite for enhanced C-25 grade concrete performance.

Experimental investigation on partial cement replacement with binary blended bagasse ash and calcined dolomite for enhanced C-25 grade concrete performance.

Experimental investigation on partial cement replacement with binary blended bagasse ash and calcined dolomite for enhanced C-25 grade concrete performance.

Experimental investigation on partial cement replacement with binary blended bagasse ash and calcined dolomite for enhanced C-25 grade concrete performance.

Cement is a globally produced building material and a crucial component of every construction project. Alternative materials, mostly agro-industrial wastes, are emerging as potential cement replacements due to high carbon dioxide emissions associated with cement manufacturing and rising cost of cement. Numerous naturally occurring materials like rice husk ash, corn cob ash, fly ash, slag, silica fume, bagasse ash (BA), and natural pozzolans are used as partial substituents for cement in concrete and mortars due to their strength, cost-effectiveness, and environmental benefits. BA is frequently used as a partial cement replacement in concrete, but most studies limit its utilization to 15%, highlighting the limitations of pozzolanic materials. This study investigates the effects of binary blended BA and calcined dolomite powder (CDP) as partial cement replacement, i.e., 0%, 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, and 50%, on the compressive strength of C-25 grade concrete. Additionally, the physicochemical properties of BA, CDP, and the binary mixture were studied using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscope (SEM), X-ray fluorescence (XRF), and dynamic light scattering (DLS). Furthermore, the effects of the binary mixture on workability, setting time, compressive strength, strength activity index (SAI), water absorption, and dry density on the concrete were evaluated in detail. The compressive strength was examined by casting 66 standard cubes of 15 cm [Formula: see text] 15 cm [Formula: see text] 15 cm size and curing them for 7 and 28 days. The compressive strength test indicates that by reducing pozzolana particle size below cement grade and blending BA with CDP, up to 30% of cement can be replaced by enhancing the compressive strength to 36.7 MPa at the end of 28 days.

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来源期刊
Scientific Reports
Scientific Reports Natural Science Disciplines-
CiteScore
7.50
自引率
4.30%
发文量
19567
审稿时长
3.9 months
期刊介绍: We publish original research from all areas of the natural sciences, psychology, medicine and engineering. You can learn more about what we publish by browsing our specific scientific subject areas below or explore Scientific Reports by browsing all articles and collections. Scientific Reports has a 2-year impact factor: 4.380 (2021), and is the 6th most-cited journal in the world, with more than 540,000 citations in 2020 (Clarivate Analytics, 2021). •Engineering Engineering covers all aspects of engineering, technology, and applied science. It plays a crucial role in the development of technologies to address some of the world''s biggest challenges, helping to save lives and improve the way we live. •Physical sciences Physical sciences are those academic disciplines that aim to uncover the underlying laws of nature — often written in the language of mathematics. It is a collective term for areas of study including astronomy, chemistry, materials science and physics. •Earth and environmental sciences Earth and environmental sciences cover all aspects of Earth and planetary science and broadly encompass solid Earth processes, surface and atmospheric dynamics, Earth system history, climate and climate change, marine and freshwater systems, and ecology. It also considers the interactions between humans and these systems. •Biological sciences Biological sciences encompass all the divisions of natural sciences examining various aspects of vital processes. The concept includes anatomy, physiology, cell biology, biochemistry and biophysics, and covers all organisms from microorganisms, animals to plants. •Health sciences The health sciences study health, disease and healthcare. This field of study aims to develop knowledge, interventions and technology for use in healthcare to improve the treatment of patients.
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