Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Performance of Cementitious Composites with Nanofibrillated Cellulose and High-Volume Slag

View through CrossRef
In this study, the effects of nanofibrillated cellulose (NFC) on the performance of cementitious composites have been explored. The composite mixtures contained cement that was replaced by 40% slag to prepare a high-performance composite, along with fine aggregate and NFC. The air content reduced drastically in the presence of NFC; hence, air entraining admixture (AEA) was added to maintain the criteria of CSA A23.1. In total, eight mixtures were tested with varying dosages of NFC of 0.25%, 0.5%, and 0.75%, where four mixtures contained AEA. Different properties such as fresh (slump flow, air content), mechanical (compressive strength, tensile strength, flexural strength), and durability (rapid chloride penetration, rapid chloride migration, bulk resistivity, resistance against freeze–thaw) have been investigated to evaluate the effectiveness of NFC with high-volume slag after 7 and 28 days. The microstructure of the composites and the distribution of the nanofibers within the paste are also studied by using SEM images. The results revealed that NFC improved the specimen’s splitting strength, flexural strength, and durability. Splitting tensile strength increased by up to 50% at 0.75% NFC, while flexural strength improved by 162% at 0.5% dosage. A negative impact on the compressive, flexural, and durability properties was observed for the 0.75% dosage of NFC due to fiber agglomeration, whereas the 0.5% dosage exhibited the best overall performance. The optimum NFC dosage is found to be 0.25–0.5% which yields a high-strength and durable composite. This research will provide an understanding of the effect of air concentration and NFC on cementitious composites.
Title: Performance of Cementitious Composites with Nanofibrillated Cellulose and High-Volume Slag
Description:
In this study, the effects of nanofibrillated cellulose (NFC) on the performance of cementitious composites have been explored.
The composite mixtures contained cement that was replaced by 40% slag to prepare a high-performance composite, along with fine aggregate and NFC.
The air content reduced drastically in the presence of NFC; hence, air entraining admixture (AEA) was added to maintain the criteria of CSA A23.
1.
In total, eight mixtures were tested with varying dosages of NFC of 0.
25%, 0.
5%, and 0.
75%, where four mixtures contained AEA.
Different properties such as fresh (slump flow, air content), mechanical (compressive strength, tensile strength, flexural strength), and durability (rapid chloride penetration, rapid chloride migration, bulk resistivity, resistance against freeze–thaw) have been investigated to evaluate the effectiveness of NFC with high-volume slag after 7 and 28 days.
The microstructure of the composites and the distribution of the nanofibers within the paste are also studied by using SEM images.
The results revealed that NFC improved the specimen’s splitting strength, flexural strength, and durability.
Splitting tensile strength increased by up to 50% at 0.
75% NFC, while flexural strength improved by 162% at 0.
5% dosage.
A negative impact on the compressive, flexural, and durability properties was observed for the 0.
75% dosage of NFC due to fiber agglomeration, whereas the 0.
5% dosage exhibited the best overall performance.
The optimum NFC dosage is found to be 0.
25–0.
5% which yields a high-strength and durable composite.
This research will provide an understanding of the effect of air concentration and NFC on cementitious composites.

Related Results

A Circular Economy Use of Durian Rind Waste for Cellulose Extraction and Its Application in Polylactic Acid (PLA) Biodegradable Composites
A Circular Economy Use of Durian Rind Waste for Cellulose Extraction and Its Application in Polylactic Acid (PLA) Biodegradable Composites
Durian rind is a food waste by-product left after consuming fruit flesh and can contribute to environmental pollution due to its slow decomposition and the large disposal area requ...
Adhesive Behaviour of BOF Slag to BOF Lining Refractory in Slag Splashing Process
Adhesive Behaviour of BOF Slag to BOF Lining Refractory in Slag Splashing Process
A slag layer is formed when slag is splashed onto refractory lining in BOF slag splashing process. The melting temperature of the slag layer and the adhesion of the slag layer to t...
POTENSI SLAG NIKEL HALUS (FeNi 4) PT. ANTAM POMALAA SEBAGAI AGREGAT HALUS PADA CAMPURAN ASPAL
POTENSI SLAG NIKEL HALUS (FeNi 4) PT. ANTAM POMALAA SEBAGAI AGREGAT HALUS PADA CAMPURAN ASPAL
ABSTRAKSlag nikel (FeNi4) adalah jenis terbaru dengan ukuran butiran mendekati pasir (lolos No. 8). Jumlah buangan slag nikel telah mencapai 1 juta ton pada tahun 2018, sehingga be...
Analysis of the Phase Composition and Microstructure of Slag from a Semi-Steel Converter
Analysis of the Phase Composition and Microstructure of Slag from a Semi-Steel Converter
To clarify the phase composition, microstructural characteristics, and phosphorus retention mechanisms of semi-steel converter slag, this study employed characterization techniques...
NANOCELLULOSE OBTAINED MECHANICALLY BY DIFFERENT COLLOID GRINDING INTENSITIES
NANOCELLULOSE OBTAINED MECHANICALLY BY DIFFERENT COLLOID GRINDING INTENSITIES
Recent advances in nanocellulose technology have enabled production of materials for various applications with attractive properties. The aim of this work was to analyze the nanofi...
Ionic liquid-assisted the preparation of transparent cellulosic biocomposite films
Ionic liquid-assisted the preparation of transparent cellulosic biocomposite films
(English) Interest in new environmentally friendly cellulose-based products has tremendously increased in recent years. Cellulose-based composites come in various forms and have p...
Leaching Characteristics of Potentially Toxic Metals from Tailings at Lujiang Alum Mine, China
Leaching Characteristics of Potentially Toxic Metals from Tailings at Lujiang Alum Mine, China
To investigate the leaching characteristics and potential environmental effects of potentially toxic metals (PTMs) from alum mine tailings in Lujiang, Anhui Province, soaking tests...
Numerical Study on the Mixing Process of Hot Desulfurization Slag and Converter Steel Slag
Numerical Study on the Mixing Process of Hot Desulfurization Slag and Converter Steel Slag
Slag mixing technique is a process that eliminates the lumping phenomenon of slag and iron in desulfurization slag. This process is conducted by mixing the high-temperature convert...

Back to Top