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[1]黄 萍,陈智浩,吴能森,等.蔗渣灰对水泥混凝土性能影响的研究进展 [J].武汉工程大学学报,2026,48(02):167-176.[doi:10.19843/j.cnki.CN42-1779/TQ.202404009]
 HUANG Ping,CHEN Zhihao,WU Nengsen,et al. Review on the influence of sugarcane bagasse ash on the properties of cement concrete [J].Journal of Wuhan Institute of Technology,2026,48(02):167-176.[doi:10.19843/j.cnki.CN42-1779/TQ.202404009]
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蔗渣灰对水泥混凝土性能影响的研究进展
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《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
48
期数:
2026年02期
页码:
167-176
栏目:
现代大化工
出版日期:
2026-04-30

文章信息/Info

Title:
Review on the influence of sugarcane bagasse ash on the properties of cement concrete

文章编号:
1674 - 2869(2026)02 - 0167 - 10
作者:
黄 萍1陈智浩1吴能森2谢信永1徐 青*2
1. 福州工商学院新能源汽车与工程学院,福建 福州 350715;
2. 福建农林大学交通与土木工程学院,福建 福州 350108

Author(s):
HUANG Ping1 CHEN Zhihao1 WU Nengsen2 XIE Xinyong1 XU Qing*2
1. College of New Energy Vehicle and Engineering,Fuzhou Technology and Business University, Fuzhou 350715, China;
2. College of Transportation and Civil Engineering,Fujian Agriculture and Forestry University, Fuzhou 350108, China

关键词:
蔗渣灰水泥混凝土火山灰活性力学性能耐久性
Keywords:
sugarcane bagasse ash cement concrete pozzolanic activity mechanical property durability
分类号:
TU52
DOI:
10.19843/j.cnki.CN42-1779/TQ.202404009
文献标志码:
A
摘要:
蔗渣焚烧发电后产生的蔗渣灰(SCBA)是蔗糖产业链的最终废弃物,常被用作甘蔗种植园的肥料。然而,SCBA作为肥料不仅难以提供矿物质营养,还存在污染土壤和水源的隐患。为降低SCBA对环境的负面影响,建筑材料领域的学者将其应用于水泥基复合材料中,相关试验研究已显示出积极的成果。系统综述了SCBA应用于水泥混凝土的国内外文献资料,详细归纳了SCBA分别作为胶凝材料和填充材料时,对水泥混凝土的物理性质(如流动性、凝固时间等)、力学性能(如抗压强度、抗拉强度等)以及耐久性能(如抗渗性、抗氯性等)产生的影响。同时,深入讨论了SCBA提升水泥混凝土宏观性能的关联机制,其根本原因在于SCBA中无定形SiO2所诱发的二次水化反应。最后,总结SCBA在水泥混凝土领域的研究成果,并展望未来的研究方向,以期为SCBA在混凝土中的进一步研究和规模化应用提供理论依据,以促进农业废弃物的高值利用,推动绿色混凝土技术的发展。
Abstract:
Sugarcane bagasse ash (SCBA),a residual waste from bagasse incineration for power generation in the sugar industry,is commonly used as a fertilizer in sugarcane plantations. However,SCBA not only provides limited mineral nutrients as a fertilizer but also carries potential risks of contaminating soil and water sources. To mitigate its adverse environmental impacts,researchers in construction materials have incorporated SCBA into cement-based composites,with related experimental studies showing promising results. In this paper, we systematically reviewed domestic and international literature on the application of SCBA in cement concrete,summarizing in detail its effects,when used as a cementitious material or filler,on the physical properties (e.g.,workability, and setting time),mechanical properties (e.g.,compressive strength, and tensile strength),and durability (e.g.,impermeability,and chloride ion resistance) of cement concrete. Furthermore, the underlying mechanisms by which SCBA enhances the macro-properties of cement concrete were thoroughly discussed,which are fundamentally attributed to the secondary hydration reaction induced by the amorphous SiO2 present in SCBA. Finally,the research findings on SCBA in cement concrete were summarized,and future research directions were proposed,aiming to provide a theoretical basis for further investigation and large-scale application of SCBA in concrete,promote the high-value utilization of agricultural waste,and advance the development of green concrete technology.

参考文献/References:

[ 1 ] SALES A, LIMA S A. Use of Brazilian sugarcane bagasse ash in concrete as sand replacement [J]. Waste Management,2010,30(6):1114-1122.
[ 2 ] 黄萍,徐青,吴能森,等. 蔗渣灰特性及其在建筑材料的应用研究综述 [J]. 武汉工程大学学报,2022,44(6):599-607.
[ 3 ] 沈华艳,谢东,刘海露,等. 甘蔗渣生物质资源在复合材料领域的研究进展 [J]. 现代化工,2019,39(7):52-55.
[ 4 ] XU Q, JI T, GAO S J, et al. Characteristics and applications of sugar cane bagasse ash waste in cementitious materials [J]. Materials,2019,12(1):39.
[ 5 ] THOMAS B S, YANG J, BAHURUDEEN A,et al. Sugarcane bagasse ash as supplementary cementitious material in concrete:a review [J]. Materials Today Sustainability,2021,15:100086.
[ 6 ] MARTIRENA-HERNáNDEZ J F, MIDDENDORF B,GEHRKE M,et al. Use of wastes of the sugar industry as pozzolana in lime-pozzolana binders:study of the reaction [J]. Cement and Concrete Research,1998,28(11):1525-1536.
[ 7 ] ZAREEI S A, AMERI F, BAHRAMI N. Micro-structure,strength,and durability of eco-friendly concretes containing sugarcane bagasse ash [J]. Construction and Building Materials,2018,184:258-268.
[ 8 ] WU N S, JI T, HUANG P, et al. Use of sugar cane bagasse ash in ultra-high performance concrete (UHPC) as cement replacement [J]. Construction and Building Materials,2022,317:125881.
[ 9 ] RUKZON S, CHINDAPRASIRT P. Utilization of bagasse ash in high-strength concrete [J]. Materials and Design,2012,34:45-50.
[10] BAHURUDEEN A, KANRAJ D, GOKUL DEV V , et al. Performance evaluation of sugarcane bagasse ash blended cement in concrete [J]. Cement and Concrete Composites,2015,59:77-88.
[11] KATARE V D, MADURWAR M V. Experimental characterization of sugarcane biomass ash:a review [J]. Construction and Building Materials,2017,152:1-15.
[12] MONTAKARNTIWONG K, CHUSILP N,TANGCHIRAPAT W,et al. Strength and heat evolution of concretes containing bagasse ash from thermal power plants in sugar industry [J]. Materials and Design,2013,49:414-420.
[13] KLATHAE T, TANAWUTTIPHONG N,TANGCHIRAPAT W,et al. Heat evolution,strengths,and drying shrinkage of concrete containing high volume ground bagasse ash with different LOIs [J]. Construction and Building Materials,2020,258:119443.
[14] BAHURUDEEN A, SANTHANAM M. Influence of different processing methods on the pozzolanic performance of sugarcane bagasse ash [J]. Cement and Concrete Composites,2015,56:32-45.
[15] PRAVEENKUMAR S,SANKARASUBRAMANIAN G,SINDHU S. Strength,permeability and microstructure characterization of pulverized bagasse ash in cement mortars [J]. Construction and Building Materials,2020,238:117691.
[16] KAZMI S M S,MUNIR M J,PATNAIKUNI I,et al. Pozzolanic reaction of sugarcane bagasse ash and its role in controlling alkali silica reaction [J]. Construction and Building Materials,2017,148:231-240.
[17] CORDEIRO G C,ANDRE?O P V,TAVARES L M. Pozzolanic properties of ultrafine sugar cane bagasse ash produced by controlled burning [J]. Heliyon,2019,5(10):e02566.
[18] SINGH N B,SINGH V D,RAI S. Hydration of bagasse ash-blended portland cement [J]. Cement and Concrete Research,2000,30(9):1485-1488.
[19] TANTAWY M A,EL-ROUDI A M, SALEM A A. Immobilization of Cr(VI) in bagasse ash blended cement pastes [J]. Construction and Building Materials,2012,30:218-223.
[20] LURA P, WYRZYKOWSKI M, TANG C, et al. Internal curing with lightweight aggregate produced from biomass-derived waste [J]. Cement and Concrete Research,2014,59:24-33.
[21] SRINIVASAN R, SATHIYA K. Experimental study on bagasse ash in concrete [J]. International Journal for Service Learning in Engineering,Humanitarian Engineering and Social Entrepreneurship,2010,5(2):60-66.
[22] 熊伟,王四青,李文,等. 甘蔗渣灰对混凝土和易性及强度的影响 [J]. 江西建材,2023(4):24-25,28.
[23] BATOOL F,MASOOD A,ALI M. Characterization of sugarcane bagasse ash as pozzolan and influence on concrete properties [J]. Arabian Journal for Science and Engineering,2020,45(5):3891-3900.
[24] AMIN M N, ASHRAF M,KUMAR R,et al. Role of sugarcane bagasse ash in developing sustainable engineered cementitious composites [J]. Frontiers in Materials,2020,7:65.
[25] RERKPIBOON A, TANGCHIRAPAT W,JATURAPITAKKUL C. Strength,chloride resistance,and expansion of concretes containing ground bagasse ash [J]. Construction and Building Materials,2015,101(Part 1):983-989.
[26] CHINDAPRASIRT P, SUJUMNONGTOKUL P,POSI P. Durability and mechanical properties of pavement concrete containing bagasse ash [J]. Materials Today:Proceedings,2019,17:1612-1626.
[27] HUSSEIN A A E,SHAFIQ N,NURUDDIN M F,et al. Compressive strength and microstructure of sugar cane bagasse ash concrete [J]. Research Journal of Applied Sciences,Engineering and Technology,2014,7(12):2569-2577.
[28] ROSSIGNOLO J A,RODRIGUES M S, FRIAS M,et al. Improved interfacial transition zone between aggregate-cementitious matrix by addition sugarcane industrial ash [J]. Cement and Concrete Composites,2017,80:157-167.
[29] ARENAS-PIEDRAHITA J, MONTES-GARCíA P,MENDOZA-RANGEL J,et al. Mechanical and durability properties of mortars prepared with untreated sugarcane bagasse ash and untreated fly ash [J]. Construction and Building Materials,2016,105:69-81.
[30] JAGADESH P, RAMACHANDRAMURTHY A,MURUGESAN R. Overview on properties of sugarcane bagasse ash (SCBA) as pozzolan [J]. Indian Journal of Geo-Marine Sciences,2018,47(10):1934-1945.
[31] JOSHAGHANI A, RAMEZANIANPOUR A A,ROSTAMI H. Effect of incorporating sugarcane bagasse ash (SCBA) in mortar to examine durability of sulfate attack[C]//Second International Conference on Concrete Sustainability . Madrid,Spain:F,2016.
[32] 李明韬.偏高岭土-蔗渣灰-硅酸盐水泥三元体系设计及抗碳酸水研究[D].南宁:广西大学,2023.
[33] AFSHINNIA K, RANGARAJU P R. Influence of fineness of ground recycled glass on mitigation of alkali-silica reaction in mortars [J]. Construction and Building Materials,2015,81:257-267.
[34] BARBHUIYA S A, BASHEER P A M, CLARK M W,et al. An investigation into the behaviour of concrete containing seawater-neutralised bauxite refinery residues in silage effluent [J]. Biosystems Engineering,2010,106(4):433-439.
[35] de SILVA ANDRADE NETO J, de FRAN?E M J S, de AMORIM JúNIOR N S,et al. Effects of adding sugarcane bagasse ash on the properties and durability of concrete [J]. Construction and Building Materials,2021,266(Part A):120959.
[36] PACHECO TORGAL F, MIRALDO S, LABRINCHA J A, et al. An overview on concrete carbonation in the context of eco-efficient construction:evaluation,use of SCMs and/or RAC [J]. Construction and Building Materials,2012,36:141-150.
[37] 姜文斌.水泥矿物及其水化产物对氯离子的固化机理[D].武汉:武汉理工大学,2018.
[38] LE D H, SHEEN Y N, LAM M N T. Fresh and hardened properties of self-compacting concrete with sugarcane bagasse ash-slag blended cement [J]. Construction and Building Materials,2018,185:138-147.
[39] JAGADESH P, RAMACHANDRAMURTHY A,MURUGESAN R. Evaluation of mechanical properties of sugar cane bagasse ash concrete [J]. Construction and Building Materials,2018,176:608-617.
[40] JOSHAGHANI A, MOEINI M A. Evaluating the effects of sugar cane bagasse ash (SCBA) and nanosilica on the mechanical and durability properties of mortar [J]. Construction and Building Materials,2017,152:818-831.
[41] JHA P, SACHAN A K, SINGH R P. Agro-waste sugarcane bagasse ash (SCBA) as partial replacement of binder material in concrete [J]. Materials Today:Proceedings,2020,44(Part 1):419-427.
[42] 李腾宇,梁晋鹏,陀广泉,等. 蔗渣灰对砂浆性能及孔结构的影响研究 [J]. 混凝土与水泥制品,2022(10):92-95,100.
[43] INBASEKAR M, HARIPRASATH P,SENTHILKUMAR D. Study on potential utilization of sugarcane bagasse ash in steel fiber reinforced concrete [J]. International Journal of Engineering Science and Research Technology,2016,5(4):43-50.
[44] AMIN N U. Use of bagasse ash in concrete and its impact on the strength and chloride resistivity [J]. Journal of Materials in Civil Engineering,2011,23(5):717-720.
[45] MINNU S N, BAHURUDEEN A, ATHIRA G. Comparison of sugarcane bagasse ash with fly ash and slag:an approach towards industrial acceptance of sugar industry waste in cleaner production of cement [J]. Journal of Cleaner Production,2021,285:124836.
[46] MAMATHA P, NARAYANA D, KUMAR T N. To evaluate the mechanical and durability properties of nano sugarcane bagasse ash in cement concrete [J]. International Journal of Engineering Science and Research Technology,2017,3(8):425-430.
[47] CHINDAPRASIRT P, KROEHONG W,DAMRONGWIRIYANUPAP N,et al. Mechanical properties,chloride resistance and microstructure of Portland fly ash cement concrete containing high volume bagasse ash [J]. Journal of Building Engineering,2020,31:101415.
[48] ACI Committee 318. Building code requirements for structural concrete(ACI 318-11) and commentary [M]. Farmington Hills, MI:American Concrete Institute,2011.
[49] LI Y,CHAI J Q,WANG R J,et al. Utilization of sugarcane bagasse ash (SCBA) in construction technology:a state-of-the-art review [J]. Journal of Building Engineering,2022,56:104774.
[50] KIRAN K,SIVA KISHORE I. An experimental study on partial replacement of cement with bagasse ash in concrete mix [J]. International Journal of Civil Engineering and Technology,2017,8(1):452-455.
[51] QUEDOU P G, WIRQUIN E, BOKHOREE C. Sustainable concrete:potency of sugarcane bagasse ash as a cementitious material in the construction industry [J]. Case Studies in Construction Materials,2021,14:e00545.
[52] DHENGARE S W,RAUT S P,BANDWAL N V,et al. Investigation into utilization of sugarcane bagasse ash as supplementary cementitious material in concrete [J]. International Journal of Emerging Engineering Research and Technology,2015,3(4):109-119.
[53] SOMNA R,JATURAPITAKKUL C,RATTANACHU P,et al. Effect of ground bagasse ash on mechanical and durability properties of recycled aggregate concrete [J]. Materials and Design,2012,36:597-603.
[54] ARIF E,CLARK M W,LAKE N. Sugar cane bagasse ash from a high efficiency co-generation boiler:applications in cement and mortar production [J]. Construction and Building Materials,2016,128:287-297.
[55] 刘志勇,詹镇峰. 混凝土电阻率及其在钢筋混凝土耐久性评价中的应用研究 [J]. 混凝土,2006(10):13-16.
[56] GAR P S, SURESH N, BINDIGANAVILE V. Sugar cane bagasse ash as a pozzolanic admixture in concrete for resistance to sustained elevated temperatures [J]. Construction and Building Materials,2017,153:929-936.
[57] RAMJAN S, TANGCHIRAPAT W,JATURAPITAKKUL C. Influence of bagasse ash with different fineness on alkali-silica reactivity of mortar [J]. Materiales de Construcción,2018,68(332):e169.
[58] HUANG P,HUANG B C,LI J J,et al. Application of sugar cane bagasse ash as filler in ultra-high performance concrete [J]. Journal of Building Engineering,2023,71:106447.
[59] MODANI P O, VYAWAHARE M R. Utilization of bagasse ash as a partial replacement of fine aggregate in concrete [J]. Procedia Engineering,2013,51:25-29.
[60] HASNAIN M H, JAVED U, ALI A, et al. Eco-friendly utilization of rice husk ash and bagasse ash blend as partial sand replacement in self-compacting concrete [J]. Construction and Building Materials,2021,273:121753.
[61] DAYO A A, KUMAR A, RAJA A,et al. Use of sugarcane bagasse ash as a fine aggregate in cement concrete [J]. Engineering Science and Technology International Research Journal,2019,3(3):8-11.
[62] de SANDE V T, SADIQUE M, PINEDA P, et al. Potential use of sugar cane bagasse ash as sand replacement for durable concrete [J]. Journal of Building Engineering,2021,39:102277.
[63] MORETTI J P,SALES A,ALMEIDA F C R,et al. Joint use of construction waste (CW) and sugarcane bagasse ash sand (SBAS) in concrete [J]. Construction and Building Materials,2016,113:317-323.
[64] DAYO A A, KUMAR A, RAJA A, et al. Effect of sugarcane bagasse ash as fine aggregates on the flexural strength of concrete[C]//International Conference on Sustainable Development in Civil Engineering. Jamshore, Pakistan:MUET,2019.
[65] HEMKEMEIER T A, ALMEIDA F C R, SALES A,et al. Carbonation and chloride penetration of repair mortars with water treatment plant sludge and sugarcane bagasse ash sand [J]. MATEC Web of Conferences,2022,364:04011.
[66] ALMEIDA F C R, SALES A, MORETTI J P, et al. Sugarcane bagasse ash sand (SBAS):Brazilian agroindustrial by-product for use in mortar [J]. Construction and Building Materials,2015,82:31-38.

相似文献/References:

[1]黄 萍,徐 青*,吴能森,等.蔗渣灰特性及其在建筑材料的应用研究综述[J].武汉工程大学学报,2022,44(06):599.[doi:10.19843/j.cnki.CN42-1779/TQ.202109017]
 HUANG Ping,XU Qing*,WU Nengsen,et al.Review of Characteristics of Sugar Cane Bagasse Ash and Its Application in Construction Materials[J].Journal of Wuhan Institute of Technology,2022,44(02):599.[doi:10.19843/j.cnki.CN42-1779/TQ.202109017]

备注/Memo

备注/Memo:
收稿日期:2024-04-06
基金项目:福建省教育科学规划2024年度常规课题(FJJKBK24-136);福建省本科高校教育教学研究重大项目(FBJY20240005);福建省中青年教师教育科研项目(科技类)(JZ250071)
作者简介:黄 萍,硕士,讲师。Email:huangping@fafu.edu.cn
*通信作者:徐 青,博士,副教授。Email:xuqing@fafu.edu.cn

更新日期/Last Update: 2026-05-07