[1] MAHASTI N N N, SHIH Y J, VU X T, et al. Removal of calcium hardness from solution by fluidized-bed homogeneous crystallization (FBHC) process[J]. Journal of the Taiwan Institute of Chemical Engineers, 2017, 78: 378-385. doi: 10.1016/j.jtice.2017.06.040
[2] CHAUSSEMIER M, POURMOHTASHAM E, GELUS D, et al. State of art of natural inhibitors of calcium carbonate scaling[J]. Desalination, 2015, 356: 47-55. doi: 10.1016/j.desal.2014.10.014
[3] 张程, 刘成, 胡伟. 复配药剂软化法对地下水中硬度的去除效能研究[J]. 中国给水排水, 2014, 30(7): 43-46.
[4] 黄明珠, 董燕珊, 苏锡波, 等. 石灰软化法处理地下水源水硬度实验研究[J]. 中国给水排水, 2012, 38(3): 26-29.
[5] COMSTOCK S E H, BOYER T H. Combined magnetic ion exchange and cation exchange for removal of DOC and hardness[J]. Chemical Engineering Journal, 2014, 241: 366-375. doi: 10.1016/j.cej.2013.10.073
[6] LABBAN O, LIU C, CHONG T H, et al. Fundamentals of low-pressure nanofiltration: Membrane characterization, modeling, and understanding the multiionic interactions in water softening[J]. Journal of Membrane Science, 2017, 521: 18-32. doi: 10.1016/j.memsci.2016.08.062
[7] 张华, 崔柳华, 吴百春. 国内外除硬技术现状研究[J]. 工业水处理, 2011, 31(12): 5-8. doi: 10.11894/1005-829x.2011.31(12).5
[8] GAREA A, ALDACO R, IRABIEN A. Improvement of calcium crystallization by means of the reduction of fines formation[J]. Chemical Engineering Journal, 2009, 154: 231-235. doi: 10.1016/j.cej.2009.04.050
[9] SCHETTERS M J A, VAN DER HOEK J P, KRAMER O J I, et al. Circular economy in drinking water treatment: Reuse of ground pellets as seeding material in the pellet softening processs[J]. Water Science and Technology, 2015, 71(4): 479-486. doi: 10.2166/wst.2014.494
[10] TANG C, HEDEGAARD M J, LOPATO L, et al. Softening of drinking water by the pellet reactor: Effects of influent water composition on calcium carbonate pellet characteristics[J]. Science of the Total Environment, 2019, 652: 538-548. doi: 10.1016/j.scitotenv.2018.10.157
[11] LU H, WANG J, WANG T, et al. Crystallization techniques in wastewater treatment: An overview of applications[J]. Chemosphere, 2017, 173: 474-484. doi: 10.1016/j.chemosphere.2017.01.070
[12] TIANGCO K A A, DE LUNA M D G, VILANDO A C, et al. Removal and recovery of calcium from aqueous solutions by fluidized-bed homogeneous crystallization[J]. Process Safety and Environmental Protection, 128: 307-315.
[13] 胡明睿, 聂小保, 周梨, 等. 饮用水钙硬度去除CaCO3的均相和非均相行为[J]. 给水排水, 2019, 45(12): 37-42.
[14] DA SILVA C A M, BUTZGE J J, NITZ M, et al. Monitoring and control of coating and granulation processes in fluidized beds: A review[J]. Advanced Powder Technology, 2014, 25: 195-210. doi: 10.1016/j.apt.2013.04.008
[15] AMOR M B, ZGOLLI D, TLILI M M, et al. Influence of water hardness, substrate nature and temperature on heterogeneous calcium carbonate nucleation[J]. Desalination, 2004, 166: 79-84. doi: 10.1016/j.desal.2004.06.061
[16] NASON J A, LAWLER D F. Particle size distribution dynamics during precipitative softening: Declining solution composition[J]. Water Research, 2009, 43(2): 303-312. doi: 10.1016/j.watres.2008.10.017
[17] MERCER K L, LIN Y P, SINGER P C. Enhancing calcium carbonate precipitation by heterogeneous nucleation during chemical softening[J]. Journal of American Water Works Association, 2005, 97(12): 116-312. doi: 10.1002/j.1551-8833.2005.tb07545.x
[18] CHEN Y F, FAN R, AN D F, et al. Water softening by induced crystallization in fluidized bed[J]. Journal of Environmental Science, 2016, 50: 109-116. doi: 10.1016/j.jes.2016.08.014
[19] 顾艳梅, 许航, 孙宇辰, 等. 造粒反应器处理高硬度水试验研究[J]. 土木建筑与环境工程, 2015, 37(3): 151-116.
[20] 胡瑞柱, 黄廷林, 文刚, 等. 造粒流化床反应器去除地下水中硬度试验研究[J]. 中国给水排水, 2016, 32(21): 39-44.
[21] FATTAH K P, MAVINIC D S, KOCH F A, et al. Determining the feasibility of phosphorus recovery as struvite from filter press centrate in a secondary wastewater treatment plant[J]. Journal of Environmental Science and Health, 2008, 43(7): 756-764. doi: 10.1080/10934520801960052
[22] DAI H, LU X, PENG Y, et al. An efficient approach for phosphorus recovery from wastewater using series-coupled air-agitated crystallization reactors[J]. Chemosphere, 2016, 165: 211-220. doi: 10.1016/j.chemosphere.2016.09.001
[23] YANG M G, SHI J, XU Z W, et al. Phosphorus removal and recovery from fosfomycin pharmaceutical wastewater by the induced crystallization process[J]. Journal of Environmental Management, 2019, 231: 207-212.
[24] TAI C Y. Crystal growth kinetics of two-step growth process in liquid fluidized-bed crystallizers[J]. Journal of Crystal Growth, 1999, 206(1/2): 109-118.
[25] TAI C Y, CHANG M C, LIU C C, et al. Growth of calcite seeds in a magnetized environment[J]. Journal of Crystal Growth, 2014, 389: 5-11. doi: 10.1016/j.jcrysgro.2013.11.006
[26] 智奥帆. 化学结晶循环造粒法去除水中硬度的试验研究[D]. 西安: 西安建筑科技大学, 2018.
[27] 张浩程. 金沙江某水厂低浊水采用药剂软化法除硬度的试验研究[D]. 重庆: 重庆大学, 2015.