Citation: | YU Zi-hao, ZHANG Tong-wei, ZHANG Tong-wen, LEI Rong, DENG Yong-feng. Preparation of a tuff polymer and the mechanism of alkaline solution influences on compressive strengths[J]. Chinese Journal of Engineering, 2022, 44(12): 2100-2110. doi: 10.13374/j.issn2095-9389.2021.05.28.004 |
[1] |
He H, Wang Y L, Wang J J. Compactness and hardened properties of machine-made sand mortar with aggregate micro fines. Constr Build Mater, 2020, 250: 118828 doi: 10.1016/j.conbuildmat.2020.118828
|
[2] |
木士春. 凝灰巖的物理化學性質及其開發利用. 中國礦業, 2000, 9(3):17 doi: 10.3969/j.issn.1004-4051.2000.03.005
Mu S C. Physical and chemical features of tuff and its development and application. China Min Mag, 2000, 9(3): 17 doi: 10.3969/j.issn.1004-4051.2000.03.005
|
[3] |
木士春. 凝灰巖開發利用初步研究. 非金屬礦, 2000, 23(2):18
Mu S C. Preliminary study on development and utilization of tuff. Non Met Mines, 2000, 23(2): 18
|
[4] |
Chong L L, Shi C J, Yang J M, et al. Effect of limestone powder on the water stability of magnesium phosphate cement-based materials. Constr Build Mater, 2017, 148: 590 doi: 10.1016/j.conbuildmat.2017.04.207
|
[5] |
Turk K, Demirhan S. Effect of limestone powder on the rheological, mechanical and durability properties of ECC. Eur J Environ Civ Eng, 2017, 21(9): 1151 doi: 10.1080/19648189.2016.1150902
|
[6] |
Shi C J, Day R L. Comparison of different methods for enhancing reactivity of pozzolans. Cem Concr Res, 2001, 31(5): 813 doi: 10.1016/S0008-8846(01)00481-1
|
[7] |
張云升, 孫偉, 李宗津. 地聚合物膠凝材料的組成設計和結構特征. 硅酸鹽學報, 2008, 36(增刊1): 153
Zhang Y S, Sun W, Li Z J. Composition design and microstructural characterization of geopolymeric binder. J Chin Ceram Soc, 2008, 36(Suppl 1): 153
|
[8] |
Oh J E, Monteiro P J M, Jun S S, et al. The evolution of strength and crystalline phases for alkali-activated ground blast furnace slag and fly ash-based geopolymers. Cem Concr Res, 2010, 40(2): 189 doi: 10.1016/j.cemconres.2009.10.010
|
[9] |
Bondar D, Lynsdale C J, Milestone N B, et al. Effect of type, form, and dosage of activators on strength of alkali-activated natural pozzolans. Cem Concr Compos, 2011, 33(2): 251 doi: 10.1016/j.cemconcomp.2010.10.021
|
[10] |
施惠生, 夏明, 郭曉潞. 粉煤灰基地聚合物反應機理及各組分作用的研究進展. 硅酸鹽學報, 2013, 41(7):972 doi: 10.7521/j.issn.0454-5648.2013.07.15
Shi H S, Xia M, Guo X L. Research development on mechanism of fly ash-based geopolymer and effect of each component. J Chin Ceram Soc, 2013, 41(7): 972 doi: 10.7521/j.issn.0454-5648.2013.07.15
|
[11] |
Cheng H, Lin K L, Cui R, et al. The effects of SiO2/Na2O molar ratio on the characteristics of alkali-activated waste catalyst-metakaolin based geopolymers. Constr Build Mater, 2015, 95: 710 doi: 10.1016/j.conbuildmat.2015.07.028
|
[12] |
Aziz I H, Abdullah M M A B, Salleh M A A M, et al. Microstructure and porosity evolution of alkali activated slag at various heating temperatures. J Mater Res Technol, 2020, 9(6): 15894 doi: 10.1016/j.jmrt.2020.11.041
|
[13] |
Gijbels K, Pontikes Y, Samyn P, et al. Effect of NaOH content on hydration, mineralogy, porosity and strength in alkali/sulfate-activated binders from ground granulated blast furnace slag and phosphogypsum. Cem Concr Res, 2020, 132: 106054 doi: 10.1016/j.cemconres.2020.106054
|
[14] |
Nikolov A, Nugteren H, Rostovsky I. Optimization of geopolymers based on natural zeolite clinoptilolite by calcination and use of aluminate activators. Constr Build Mater, 2020, 243: 118257 doi: 10.1016/j.conbuildmat.2020.118257
|
[15] |
郭曉潞, 楊君奕, 熊歸硯. 硅酸鎂鋁及靜置時間對地聚合物流變性能影響. 建筑材料學報,http://kns.cnki.net/kcms/detail/31.1764.TU.20201130.0946.002.html
Guo X L, Yang J Y, Xiong G Y. Effect of magnesium aluminum silicate and rest time on the rheological properties of geopolymer. J Build Mater,http://kns.cnki.net/kcms/detail/31.1764.TU.20201130.0946.002.html
|
[16] |
李爽, 劉和鑫, 楊永, 等. 堿激發礦渣/偏高嶺土復合膠凝材料干燥收縮機理研究. 材料導報, 2021, 35(4):4088 doi: 10.11896/cldb.19070067
Li S, Liu H X, Yang Y, et al. Mechanisms of drying shrinkage for alkali-activated slag/metakaolin composite materials. Mater Rep, 2021, 35(4): 4088 doi: 10.11896/cldb.19070067
|
[17] |
American Society for Testing and Materials, USA. ASTM C109 Standard Test Method for Compressive Strength of Hydraulic Cement Mortars (Using 2-in. or [50-mm] Cube Specimens). Philadelphia: ASTM International, 2016
|
[18] |
Belie N D, Kratky J, Vlierberghe S V. Influence of pozzolans and slag on the microstructure of partially carbonated cement paste by means of water vapour and nitrogen sorption experiments and BET calculations. Cem Concr Res, 2010, 40(12): 1723 doi: 10.1016/j.cemconres.2010.08.014
|
[19] |
約瑟夫∙戴維德維斯, 王克儉. 地聚合物化學及應用. 北京: 國防工業出版社, 2011
Davidovits J, Wang K J. Geopolymer Chemistry & Applications. Beijing: National Defense Industry Press, 2011
|
[20] |
Shi C J. An overview on the activation of reactivity of natural pozzolans. Can J Civ Eng, 2001, 28(5): 778 doi: 10.1139/l01-041
|
[21] |
黃政宇, 區楊蔭, 李操旺. 蒸壓養護下摻石英粉地聚合物的力學性能及微觀結構. 硅酸鹽通報, 2015, 34(10):2925
Huang Z Y, Ou Y Y, Li C W. Mechanical property and microstructure of geopolymers with quartz powder by autoclaving curing. Bull Chin Ceram Soc, 2015, 34(10): 2925
|
[22] |
覃麗芳, 曲波, 史才軍, 等. 鈣硅比對鋁硅酸鹽凝膠形成與特性的影響. 材料導報, 2020, 34(12):12057 doi: 10.11896/cldb.19070122
Qin L F, Qu B, Shi C J, et al. Effect of Ca/Si ratio on the formation and characteristics of synthetic aluminosilicate hydrate gels. Mater Rep, 2020, 34(12): 12057 doi: 10.11896/cldb.19070122
|
[23] |
Firdous R, Stephan D, Djobo J N Y. Natural pozzolan based geopolymers: A review on mechanical, microstructural and durability characteristics. Constr Build Mater, 2018, 190: 1251 doi: 10.1016/j.conbuildmat.2018.09.191
|
[24] |
Lynch J L V, Baykara H, Cornejo M, et al. Preparation, characterization, and determination of mechanical and thermal stability of natural zeolite-based foamed geopolymers. Constr Build Mater, 2018, 172: 448 doi: 10.1016/j.conbuildmat.2018.03.253
|
[25] |
Zhang M, Deskins N A, Zhang G P, et al. Modeling the polymerization process for geopolymer synthesis through reactive molecular dynamics simulations. J Phys Chem C, 2018, 122(12): 6760 doi: 10.1021/acs.jpcc.8b00697
|
[26] |
李宇, 劉月明. 我國冶金固廢大宗利用技術的研究進展及趨勢. 工程科學學報, 2021, 43(12):1713
Li Y, Liu Y M. Progress and trend of bulk utilization technology of metallurgical solid wastes in China. Chin J Eng, 2021, 43(12): 1713
|
[27] |
姜關照, 吳愛祥, 王貽明. 堿激發水泥?磷渣固化性能及與含硫尾砂的相容性. 工程科學學報, 2020, 42(8):963
Jiang G Z, Wu A X, Wang Y M. Curing performance of alkali-activated cement–phosphorous slag and its compatibility with sulfur tailings. Chin J Eng, 2020, 42(8): 963
|