[ 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.