正在加载图片...
·1464 工程科学学报,第42卷,第11期 (刘英,倪文,黄晓燕,等.拜耳法低铁赤泥在电石渣-脱硫石膏体 grouting materials.J Clean Prod,2020,245:118759 系中的水化硬化特性.材料导报,2016,30(14):120) [19]Department of inorganic chemistry,Dalian University of [10]Li Y C,Min X B,Ke Y,et al.Preparation of red mud-based Technology.Inorganic Chemistry.5th Ed.Beijing:Higher geopolymer materials from MSWI fly ash and red mud by Education Press,2006 mechanical activation.Waste Manage,2019,83:202 (大连理工大学无机化学教研室.无机化学,5版.北京:高等教 [11]Hu W,Nie Q K,Huang B S,et al.Mechanical and microstructural 育出版社,2006) characterization of geopolymers derived from red mud and fly [20]Zhou XX,Shen J M.Micromorphology and microstructure of coal ashes.J Clean Prod,2018,186:799 fly ash and furnace bottom slag based light-weight geopolymer [12]Gao S J,Ni W,Zhu L P,et al.Effect of gypsum on strength Construct Build Mater,2020,242:118168 performance of cemented backfilling materials of red mud-slag [21]Xiao L G,Zhang H L.Influence of new composite early strength system.J Cent South Univ Sci Technol,2013,44(6):2259 agent on mechanical properties of concrete(mortar)and its (高术杰,倪文,祝丽萍,等.脱硫石膏对赤泥-矿渣胶结充填料 mechanism analysis.Bull Chin Ceram Soc,2018,37(7):2115 强度性能的影响.中南大学学报:自然科学版,2013,44(6): (肖力光,张洪磊.新型复合早强剂对混凝土(砂浆)力学性能的 2259) 影响及机理分析.硅酸盐通报,2018,37(7):2115) [13]Chen J L,Zhang N,Li H,et al.Hydration characteristics of red- [22]Qiu Y B,Wang Q P.Study on the pozzolanic activity of fly ash mud based paste-like backfill material.Chin J Eng,2017,39(11): activated by NaSOa.Mater Rev,2013,27(12):121 1640 (邱轶兵,王庆平.NSO,激发粉煤灰火山灰活性研究.材料导 (陈蛟龙,张娜,李恒,等.赤泥基似膏体充填材料水化特性研究 报,2013,27(12):121) 工程科学学报,2017,39(11):1640) [23]Liu P F,Lan M Z,Xiang B F,et al.Influence of hydroxypropyl [14]Wu A X,Yang Y,Cheng H Y,et al.Status and prospects of paste methyl cellulose ether on properties of machine spraying mortar. technology in China.Chin J Eng,2018,40(5):517 New Build Mater,2016,43(7):49 (吴爱样,杨莹,程海勇,等.中国膏体技术发展现状与趋势.工 (刘鹏飞,兰明章,项斌峰,等.羟丙基甲基纤维素醚对机喷水泥 程科学学报,2018,40(5):517) 砂浆性能的影响.新型建筑材料,2016,43(7):49) [15]Hou C,Zhu WC,Yan B X,et al.Influence of binder content on [24]Jiang G Z,Wu A X,Wang Y M,et al.Effect of compound temperature and internal strain evolution of early age cemented activator on copper slag activity and preparation of filling tailings backfill.Construct Build Mater,2018,189:585 materials.ChinJ Eng,2017,39(9):1305 [16]Liu J H,Wu R D,Wu A X,et al.Bleeding characteristics and (姜关照,吴爱祥,王贻明,等.复合激发剂对铜炉渣活性影响及 improving mechanism of self-flowing tailings filling slurry with 充填材料制备.工程科学学报,2017,39(9):1305) low concentration.Minerals,2017,7(8):131 [25]Keeley P M,Rowson N A,Johnson T P,et al.The effect of the [17]Nath S K,Kumar S.Role of particle fineness on engineering extent of polymerization of a slag structure on the strength of properties and microstructure of fly ash derived geopolymer alkali-activated slag binders.Int Miner Process,2017,164:37 Construct Build Mater,2020,233:117294 [26]Kwan S,La Rosa-Thompson J,Grutzeck M W.Structure and [18]Li Z F,Zhang J,Li S C,et al.Effect of different gypsums on the phase relations of aluminum-substituted calcium silicate hydrate./ workability and mechanical properties of red mud-slag based Am Ceram Soc,.1996,79(4上:967(刘英, 倪文, 黄晓燕, 等. 拜耳法低铁赤泥在电石渣-脱硫石膏体 系中的水化硬化特性. 材料导报, 2016, 30(14):120) Li  Y  C,  Min  X  B,  Ke  Y,  et  al.  Preparation  of  red  mud-based geopolymer  materials  from  MSWI  fly  ash  and  red  mud  by mechanical activation. Waste Manage, 2019, 83: 202 [10] Hu W, Nie Q K, Huang B S, et al. Mechanical and microstructural characterization  of  geopolymers  derived  from  red  mud  and  fly ashes. J Clean Prod, 2018, 186: 799 [11] Gao  S  J,  Ni  W,  Zhu  L  P,  et  al.  Effect  of  gypsum  on  strength performance  of  cemented  backfilling  materials  of  red  mud-slag system. J Cent South Univ Sci Technol, 2013, 44(6): 2259 (高术杰, 倪文, 祝丽萍, 等. 脱硫石膏对赤泥–矿渣胶结充填料 强度性能的影响. 中南大学学报: 自然科学版, 2013, 44(6): 2259) [12] Chen J L, Zhang N, Li H, et al. Hydration characteristics of red￾mud based paste-like backfill material. Chin J Eng, 2017, 39(11): 1640 (陈蛟龙, 张娜, 李恒, 等. 赤泥基似膏体充填材料水化特性研究. 工程科学学报, 2017, 39(11):1640) [13] Wu A X, Yang Y, Cheng H Y, et al. Status and prospects of paste technology in China. Chin J Eng, 2018, 40(5): 517 (吴爱祥, 杨莹, 程海勇, 等. 中国膏体技术发展现状与趋势. 工 程科学学报, 2018, 40(5):517) [14] Hou C, Zhu W C, Yan B X, et al. Influence of binder content on temperature  and  internal  strain  evolution  of  early  age  cemented tailings backfill. Construct Build Mater, 2018, 189: 585 [15] Liu  J  H,  Wu  R  D,  Wu  A  X,  et  al.  Bleeding  characteristics  and improving  mechanism  of  self-flowing  tailings  filling  slurry  with low concentration. Minerals, 2017, 7(8): 131 [16] Nath  S  K,  Kumar  S.  Role  of  particle  fineness  on  engineering properties  and  microstructure  of  fly  ash  derived  geopolymer. Construct Build Mater, 2020, 233: 117294 [17] Li Z F, Zhang J, Li S C, et al. Effect of different gypsums on the workability  and  mechanical  properties  of  red  mud –slag  based [18] grouting materials. J Clean Prod, 2020, 245: 118759 Department  of  inorganic  chemistry,  Dalian  University  of Technology. Inorganic Chemistry.  5th  Ed.  Beijing:  Higher Education Press, 2006 (大连理工大学无机化学教研室. 无机化学. 5版. 北京: 高等教 育出版社, 2006) [19] Zhou X X, Shen J M. Micromorphology and microstructure of coal fly  ash  and  furnace  bottom  slag  based  light-weight  geopolymer. Construct Build Mater, 2020, 242: 118168 [20] Xiao L G, Zhang H L. Influence of new composite early strength agent  on  mechanical  properties  of  concrete(mortar)  and  its mechanism analysis. Bull Chin Ceram Soc, 2018, 37(7): 2115 (肖力光, 张洪磊. 新型复合早强剂对混凝土(砂浆)力学性能的 影响及机理分析. 硅酸盐通报, 2018, 37(7):2115) [21] Qiu Y B, Wang Q P. Study on the pozzolanic activity of fly ash activated by NaSO4 . Mater Rev, 2013, 27(12): 121 (邱轶兵, 王庆平. NaSO4激发粉煤灰火山灰活性研究. 材料导 报, 2013, 27(12):121) [22] Liu P F, Lan M Z, Xiang B F, et al. Influence of hydroxypropyl methyl  cellulose  ether  on  properties  of  machine  spraying  mortar. New Build Mater, 2016, 43(7): 49 (刘鹏飞, 兰明章, 项斌峰, 等. 羟丙基甲基纤维素醚对机喷水泥 砂浆性能的影响. 新型建筑材料, 2016, 43(7):49) [23] Jiang  G  Z,  Wu  A  X,  Wang  Y  M,  et  al.  Effect  of  compound activator  on  copper  slag  activity  and  preparation  of  filling materials. Chin J Eng, 2017, 39(9): 1305 (姜关照, 吴爱祥, 王贻明, 等. 复合激发剂对铜炉渣活性影响及 充填材料制备. 工程科学学报, 2017, 39(9):1305) [24] Keeley P M, Rowson N A, Johnson T P, et al. The effect of the extent  of  polymerization  of  a  slag  structure  on  the  strength  of alkali-activated slag binders. Int J Miner Process, 2017, 164: 37 [25] Kwan  S,  La  Rosa-Thompson  J,  Grutzeck  M  W.  Structure  and phase relations of aluminum-substituted calcium silicate hydrate. J Am Ceram Soc, 1996, 79(4): 967 [26] · 1464 · 工程科学学报,第 42 卷,第 11 期
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有