[1] 张 永, 李文勇, 黄志祥, 等. 碳酸氢钠干法脱硫技术的应用研究[J]. 中国环保产业, 2020(4): 43-45. ZHANG Y, LI W Y, HUANG Z X, et al. Research on the technology application of dry desulphurization by sodium bicarbonate[J]. China Environmental Protection Industry, 2020(4): 43-45 (in Chinese). [2] 陈文华, 陈建华. 高活性钙基烟气脱硫剂的研究进展[J]. 电站系统工程, 2009, 25(6): 5-7+10. CHEN W H, CHEN J H. Review of investigation on high activity calcium-based sorbent used for FGD[J]. Power System Engineering, 2009, 25(6): 5-7+10 (in Chinese). [3] CHAUDHARY M, MAITI A. Defluoridation by highly efficient calcium hydroxide nanorods from synthetic and industrial wastewater[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, 561: 79-88. [4] TSAI H C, LO S L. Boron recovery from high boron containing wastewater using modified sub-micron Ca(OH)2 particle[J]. International Journal of Environmental Science and Technology, 2015, 12(1): 161-172. [5] SHIN H G, KIM H, NOH T, et al. Degradation behavior of high surface area calcium hydroxide sorbent for SO2 removal[J]. International Journal of Mineral Processing, 2011, 98(3/4): 145-149. [6] WANG N H, TENG B. Modeling of SO2 removal in fabric filter[J]. Fuel Processing Technology, 2009, 90(5): 636-642. [7] 周昭志, 池 涌, 汤元君, 等. 钙基添加剂对生活垃圾热解过程含氯污染物排放的影响[J]. 现代化工, 2020, 40(9): 121-125. ZHOU Z Z, CHI Y, TANG Y J, et al. Effect of calcium-based additives on emission of chlorine-containing contaminants during MSW pyrolysis[J]. Modern Chemical Industry, 2020, 40(9): 121-125 (in Chinese). [8] SIAGI Z O, MBARAWA M, MOHAMED A R, et al. The effects of limestone type on the sulphur capture of slaked lime[J]. Fuel, 2007, 86(17/18): 2660-2666. [9] XU J, CHEN Q H, QIAN Q R. Application of hydrosoluble polymers to preparation of nanoscale calcium hydroxide[J]. Chemical Research in Chinese Universities, 2004, 20(2): 229-231. [10] 侯瑞琴, 杜玉成, 刘 铮, 等. 纳米氢氧化钙颗粒制备、表征及NOx捕获性能研究[J]. 非金属矿, 2010, 33(5): 5-7+12. HOU R Q, DU Y C, LIU Z, et al. Study on preparation and characterization of nano-Ca(OH)2 and its adsorption performance to NOx[J]. Non-Metallic Mines, 2010, 33(5): 5-7+12 (in Chinese). [11] 周月桂, 彭 军, 朱 贤, 等. 过氧化氢溶液增湿Ca(OH)2脱硫的实验研究及微观机理分析[J]. 工程热物理学报, 2009, 30(3): 513-516. ZHOU Y G, PENG J, ZHU X, et al. Experimental investigation and microscopic analyses on the flue gas desulfurization of Ca(OH)2 humidified by hydrogen peroxide solution[J]. Journal of Engineering Thermophysics, 2009, 30(3): 513-516 (in Chinese). [12] 滕 斌, 高 翔, 刘海蛟, 等. 添加剂对消石灰结构特性和脱硫性能的影响[J]. 浙江大学学报(工学版), 2004, 38(2): 231-239. TENG B, GAO X, LIU H J, et al. Effect of different additives on structural characteristics and desulfurization reactivity of hydrated lime[J]. Journal of Zhejiang University (Engineering Science), 2004, 38(2): 231-239 (in Chinese). [13] 闫东杰, 赵佳璇, 李灶渊, 等. 石灰消化条件对高比表面积Ca(OH)2性能的影响[J]. 中国粉体技术, 2023, 29(4): 46-60. YAN D J, ZHAO J X, LI Z Y, et al. Influence of lime digestion conditions on properties of Ca(OH)2 with high specific surface area[J]. China Powder Science and Technology, 2023, 29(4): 46-60 (in Chinese). [14] 李慧芝, 李 红, 熊颖辉. 异丙醇改性氢氧化钙的研究[J]. 无机盐工业, 2008, 40(9): 32-34. LI H Z, LI H, XIONG Y H. Study on modification of calcium hydroxide with isopropanol[J]. Inorganic Chemicals Industry, 2008, 40(9): 32-34 (in Chinese). [15] 郝志飞, 张印民, 张永锋, 等. 湿法改性制备高比表面积氢氧化钙及表征[J]. 无机盐工业, 2015, 47(12): 19-21. HAO Z F, ZHANG Y M, ZHANG Y F, et al. Wet modified preparation and characterization of calcium hydroxide with high specific surface area[J]. Inorganic Chemicals Industry, 2015, 47(12): 19-21 (in Chinese). [16] 王 杰, 赵旭波, 汤 勇, 等. 生石灰湿法消化制备高比表面积氢氧化钙及结构表征[J]. 无机盐工业, 2024, 56(12): 104-112. WANG J, ZHAO X B, TANG Y, et al. Preparation and structural characterization of high specific surface area calcium hydroxide by wet digestion of quicklime[J]. Inorganic Chemicals Industry, 2024, 56(12): 104-112 (in Chinese). [17] 胡伟卿. 基于半干法脱硫工艺的生石灰干消化特性实验研究[D]. 哈尔滨: 哈尔滨工业大学, 2010. HU W Q. Experimental study on dry digestion characteristics of quicklime based on semi dry desulfurization process[D]. Harbin: Harbin Institute of Technology, 2010 (in Chinese). [18] BERNARD L, FRECHE M, LACOUT J L, et al. Modeling of the dissolution of calcium hydroxyde in the preparation of hydroxyapatite by neutralization[J]. Chemical Engineering Science, 2000, 55(23): 5683-5692. [19] JOHANNSEN K, RADEMACHER S. Modelling the kinetics of calcium hydroxide dissolution in water[J]. Acta Hydrochimica et Hydrobiologica, 1999, 27(2): 72-78. [20] POTGIETER J H, POTGIETER S S, DE WAAL D. An empirical study of factors influencing lime slaking. Part II: lime constituents and water composition[J]. Water SA, 2003, 29(2): 157-160. [21] LI Z, ZHANG S, LEE W E. Improving the hydration resistance of lime-based refractory materials[J]. International Materials Reviews, 2008, 53(1): 1-20. [22] 滕 斌. 半干法烟气脱硫的实验及机理研究[D]. 杭州: 浙江大学, 2004. TENG B. Experimental and mechanistic study on semi dry flue gas desulfurization[D]. Hangzhou: Zhejiang University, 2004 (in Chinese). [23] 陈建华, 陈文华, 赵俊峰. 添加PEG对钙基烟气脱硫剂结构和性能的影响[J]. 煤炭转化, 2010, 33(2): 85-87+91. CHEN J H, CHEN W H, ZHAO J F. The effect of PEG addition on the structure and properties of calcium-based flue gas desulfurization agent[J]. Coal Conversion, 2010, 33(2): 85-87+91 (in Chinese) [24] ZHANG Y P, DING C, ZHANG N, et al. Surface modification of silica micro-powder by titanate coupling agent and its utilization in PVC based composite[J]. Construction and Building Materials, 2021, 307: 124933. [25] 何淑婷, 刘宝春. 纳米SiO2的表面改性[J]. 应用化工, 2017, 46(4): 693-697. HE S T, LIU B C. Surface modification of nano-SiO2[J]. Applied Chemical Industry, 2017, 46(4): 693-697 (in Chinese). [26] 李伟峰, 马素花, 沈晓冬, 等. 二乙醇单异丙醇胺对硅酸盐水泥粉磨及性能的影响[J]. 南京工业大学学报(自然科学版), 2015, 37(4): 17-20. LI W F, MA S H, SHEN X D, et al. Effects of DEIPA on grinding and performance of Portland cement[J]. Journal of Nanjing Tech University (Natural Science Edition), 2015, 37(4): 17-20 (in Chinese). |