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甘蔗渣灰废料在胶凝材料中的特性及应用

Characteristics and Applications of Sugar Cane Bagasse Ash Waste in Cementitious Materials.

作者信息

Xu Qing, Ji Tao, Gao San-Ji, Yang Zhengxian, Wu Nengsen

机构信息

College of Transportation and Civil Engineering, Fujian Agriculture and Forestry University, Fuzhou 350116, China.

College of Civil Engineering, Fuzhou University, Fuzhou 350116, China.

出版信息

Materials (Basel). 2018 Dec 22;12(1):39. doi: 10.3390/ma12010039.


DOI:10.3390/ma12010039
PMID:30583562
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6337557/
Abstract

Sugar cane bagasse ash (SCBA) is an abundant byproduct of the sugar and ethanol industry. SCBA is generally used as a fertilizer or is disposed of in landfills, which has led to intensified environmental concerns. In recent years, SCBA research has mainly been focused on utilization in construction materials due to the abundance and pozzolanic characteristics of SCBA. In this paper, a comprehensive review of the state-of-the-art morphology, physical properties, chemical composition, and mineralogical composition of SCBA is presented. Studies indicate that SCBA is a potentially promising construction material. The applications of SCBA as a pozzolanic material, a new source for preparing alkali-activated binders, aggregates, and fillers in construction materials, are summarized. The impacts of SCBA on fresh and hardened concrete properties are highlighted, including the physical properties, mechanical strength, microstructure, and durability. Key factors that govern pozzolanic activity are discussed in detail, including calcination and recalcination temperatures, and durations, fineness, loss on ignition (LOI), and crystal silicon dioxide. Finally, further research on the optimal and broad utilization of SCBA in construction materials is recommended.

摘要

甘蔗渣灰(SCBA)是制糖和乙醇行业丰富的副产品。SCBA通常用作肥料或被丢弃在垃圾填埋场,这引发了日益严重的环境问题。近年来,由于SCBA储量丰富且具有火山灰特性,其研究主要集中在建筑材料领域的应用。本文对SCBA的最新形态、物理性质、化学成分和矿物组成进行了全面综述。研究表明,SCBA是一种具有潜在前景的建筑材料。总结了SCBA作为火山灰质材料、制备碱激发胶凝材料的新原料、建筑材料中的骨料和填料的应用。重点介绍了SCBA对新拌混凝土和硬化混凝土性能的影响,包括物理性能、力学强度、微观结构和耐久性。详细讨论了影响火山灰活性的关键因素,包括煅烧和再煅烧温度、持续时间、细度、烧失量(LOI)和结晶二氧化硅。最后,建议对SCBA在建筑材料中的优化和广泛应用进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e732/6337557/fb144b207352/materials-12-00039-g009.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e732/6337557/fb144b207352/materials-12-00039-g009.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e732/6337557/fb144b207352/materials-12-00039-g009.jpg

相似文献

[1]
Characteristics and Applications of Sugar Cane Bagasse Ash Waste in Cementitious Materials.

Materials (Basel). 2018-12-22

[2]
Use of Slag/Sugar Cane Bagasse Ash (SCBA) Blends in the Production of Alkali-Activated Materials.

Materials (Basel). 2013-7-25

[3]
Pozzolanic properties of ultrafine sugar cane bagasse ash produced by controlled burning.

Heliyon. 2019-10-9

[4]
Influence of Sugarcane Bagasse Ash and Silica Fume on the Mechanical and Durability Properties of Concrete.

Materials (Basel). 2022-4-21

[5]
Use of waste recycling coal bottom ash and sugarcane bagasse ash as cement and sand replacement material to produce sustainable concrete.

Environ Sci Pollut Res Int. 2022-7

[6]
Experimental study on fresh, mechanical properties and embodied carbon of concrete blended with sugarcane bagasse ash, metakaolin, and millet husk ash as ternary cementitious material.

Environ Sci Pollut Res Int. 2022-1

[7]
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J Environ Manage. 2010-5-20

[8]
Investigation of Pozzolanic Properties of Sugarcane Bagasse Ash for Commercial Applications.

ACS Omega. 2023-3-21

[9]
Mechanical and Dielectric Properties of Fly Ash Geopolymer/Sugarcane Bagasse Ash Composites.

Polymers (Basel). 2022-3-12

[10]
Recovery of used frying sunflower oil with sugar cane industry waste and hot water.

J Food Sci Technol. 2014-11

引用本文的文献

[1]
Carbon-Negative Construction Material Based on Rice Production Residues.

Materials (Basel). 2025-7-28

[2]
Mechanical and environmental performance of sugarcane Bagasse Ash from Khyber Pakhtunkhwa in sustainable concrete.

Sci Rep. 2025-7-8

[3]
Mechanical properties, sorption characteristics, and microstructure of Portland cement concrete containing sulfate-resistant mineral admixture and sugarcane bagasse ash.

Sci Prog. 2025

[4]
Mesoporous SBA-16/SOH from waste sugarcane bagasse ash for efficient Biginelli reactions.

Sci Rep. 2025-5-6

[5]
Effect of costus lucanius bagasse fibre on fresh and hardened concrete using RSM modelling.

Sci Rep. 2024-10-19

[6]
Health burden of sugarcane burning on agricultural workers and nearby communities.

Inhal Toxicol. 2024-5

[7]
Valorization of sugarcane bagasse with in situ grown MoS for continuous pollutant remediation and microbial decontamination.

Environ Sci Pollut Res Int. 2024-3

[8]
Mechanical, Electrical, and Tensile Self-Sensing Properties of Ultra-High-Performance Concrete Enhanced with Sugarcane Bagasse Ash.

Materials (Basel). 2023-12-23

[9]
Analysis of the Mechanical Properties of a Stabilized Subgrade Type Soil under a Sustainable Approach for Construction.

Materials (Basel). 2023-9-25

[10]
Slag and Bagasse Ash: Potential Binders for Sustainable Rigid Pavement.

ACS Omega. 2023-8-26

本文引用的文献

[1]
Use of Slag/Sugar Cane Bagasse Ash (SCBA) Blends in the Production of Alkali-Activated Materials.

Materials (Basel). 2013-7-25

[2]
Valorization of sugarcane bagasse ash: producing glass-ceramic materials.

J Environ Manage. 2014-1-23

[3]
Recycling of sugarcane bagasse ash waste in the production of clay bricks.

J Environ Manage. 2012-3-2

[4]
Use of Brazilian sugarcane bagasse ash in concrete as sand replacement.

Waste Manag. 2010-2-18

[5]
Characterisation of sugar cane straw waste as pozzolanic material for construction: calcining temperature and kinetic parameters.

Waste Manag. 2007

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