[1] MA J F,WANG T,QI S,et al. Effects of structure on the properties of low-molecular-weight superplasticizer using phosphonate as the adsorption group[J]. Colloid and Polymer Science,2018,296(3):503-514. [2] LI Y, ZHANG X G, CUI Y X, et al. Anti-corrosion enhancement of superhydrophobic coating utilizing oxygen vacancy modified potassium titanate whisker[J]. Chemical Engineering Journal,2019,374(15)374:1326-1336. [3] ZHU W J,LI X T,WU D,et al. Synthesis of spherical mesoporous silica materials by pseudomorphic transformation of silica fume a nd its Pb2+ removal properties[J]. Microporous and Mesoporous Materials,2016,222(1):192-201. [4] BAI T,SONG Z G,WANG H,et al. Performance evaluation of metakaolin geopolymer modified by different solid wastes[J]. Journal of Cleaner Production,2019,226(20):114-121. [5] SAAFI M, ANDREW K, TANG P L, et al. Multifunctional properties of carbon nanotube/fly ash geopolymeric nanocomposites[J]. Construction and Building Materials,2013,49(1):46-55. [6] CHICA L, ALZATEE A. Cellular concrete review: New trends for application in construction[J]. Construction and Building Materials,2019,200(10):637-647. [7] RAJ A, SATHYAN D, MINI K M. Physical and functional characteristics of foam concrete: A review[J]. Construction and Building Materials,2019,221(10):787-799. [8] 郑会奇,陈晋,李延军. 二维晶体MXene的制备及催化领域的应用研究进展[J]. 硅酸盐通报,2018,37(6):1908-1913. [9] 柴倩,张耀君. 水镁石纤维增韧炉底渣基地质聚合物的制备和增韧机理[J]. 硅酸盐通报,2018,37(11):3392-3397. [10] PUERTAS F,AMAT T,FERNáNDEZ-JIMéNEZ A,et al. Mechanical and durable behaviour of alkaline cement mortars reinforced with polypropylene fibres[J]. Cement and Concrete Research,2003,33(12):2031-2036. [11] HUSEIN MALKAWI A I,MUTASHER S A,QIU T J. Thermal-structure modeling and temperature control of roller compacted concrete gravity dam[J]. Journal of Performance of Constructed Facilities,2003,17(4):177-187. [12] SHE W, DU Y, ZHAO G, et al. Influence of coarse fly ash on the performance of foam concrete and its application in high-speed railway roadbeds[J]. Construction and Building Materials,2018,170(10):153-166. [13] HILAL A A, THOM N, DAWSON A. The use of additives to enhance properties of pre-formed foamed concrete[J]. International Journal of Engineering and Technology, 2015, 7(4): 286-293. [14] HILAL A A, THOM N, DAWSON A. On void structure and strength of foamed concrete made without/with additives [J]. Construction and Building Materials, 2015, 85(15): 157-164. [15] TCHAKOUTé H K,RüSCHER C H,KONG S,et al. Comparison of metakaolin-based geopolymer cements from commercial sodium waterglass and sodium waterglass from rice husk ash[J]. Journal of Sol Gel Science & Technology,2016,78(3):492-506. [16] SHI J, LIU B, HE Z, et al. A green ultra-lightweight chemically foamed concrete for building exterior: a feasibility study[J]. Journal of Cleaner Production,2020(15):125085. [17] KASHANI A, NGO T D, MENDIS P, et al. A sustainable application of recycled tyre crumbs as insulator in lightweight cellular concrete[J]. Journal of Cleaner Production,2017,149(15):925-935. [18] TIAN Q Z,NAKAMA S,SASAKI K. Immobilization of cesium in fly ash-silica fume based geopolymers with different Si/Al molar ratios[J]. Science of the Total Environment,2019,687(15):1127-1137. [19] HAJIMOHAMMADI A, NGO T, KASHANI A. Sustainable one-part geopolymer foams with glass fines versus sand as aggregates[J]. Construction and Building Materials,2018,171(1):223-231. [20] LIM S K, TAN C S, LIM O Y, et al. Fresh and hardened properties of lightweight foamed concrete with palm oil fuel ash as filler[J]. Construction and Building Materials,2013,46(1):39-47. [21] SHAH S N, MO K H, YAP S P, et al. Lightweight foamed concrete as a promising avenue for incorporating waste materials: a review[J]. Resources, Conservation and Recycling,2021,164(1):105-103. [22] OKOYE F N,DURGAPRASAD J,SINGH N B. Effect of silica fume on the mechanical properties of fly ash based-geopolymer concrete[J]. Ceramics International,2016,42(2):3000-3006. [23] 曹明礼,潘亚宏,袁继祖. 以高岭土作原料合成洗涤剂用助剂4A沸石的研究[J]. 武汉工业大学学报,2000,22(1):34-36. [24] 王亚超,张耀君,徐德龙. 碱激发硅灰-粉煤灰基矿物聚合物的研究[J]. 硅酸盐通报,2011,30(1):50-54. [25] LIM S K, TAN C S, LI B, et al. Utilizing high volumes quarry wastes in the production of lightweight foamed concrete[J]. Construction and Building Materials,2017,151(1):441-448. [26] ALVAREZ-AYUSO E,QUEROL X,PLANA F,et al. Environmental, physical and structural characteriza-tion of geopolymer matrixs synthesized from coal(co-)combustion fly ashes[J]. Journal of Hazardous Materials,2008,154(1):175-183. [27] CHENG Y Z,WANG S,LI J, et al. Engineering and mineralogical properties of stabilized expansive soil compositing lime and natural pozzolans[J]. Construction and Building Materials,2018,187(30):1031-1038. [28] BUSWELL R A, DE W R L, JONES S Z, et al. 3D printing using concrete extrusion: a roadmap for research[J]. Cement and Concrete Research, 2018, 112(1): 37-49. [29] 李自立,陈志波,胡屏,等. 粉煤灰与石灰改良花岗岩残积土压缩特性研究[J]. 水利与建筑工程学报,2019,17(1):82-86. [30] KANGNI F E, POYET S, Le BESCOP P, et al. Carbonation of model cement pastes: the mineralogical origin of microstructural changes and shrinkage[J]. Cement and Concrete Research, 2021, 144(1): 106446. [31] 梁欣,陈常连,周诗聪,等. 碳化硅添加对氮化硅转化为碳化硅晶粒形貌的影响[J]. 武汉工程大学学报,2019,41(1):64-68. [32] 钟园,丁峰,廖奇麟,等. 恩施红层砂岩细粒土工程特性对比的试验研究[J]. 武汉工程大学学报,2017,39(1):64-68.