[1] 吴彦瑜, 彭晓春, 陈志良, 等. MAP沉淀法去除渗滤液中低浓度氨氮. 环境工程学报, 2013, 7(3): 925-930 Wu Yangyu, Peng Xiaochun, Chen Zhiliang, et al. Treatment of low concentration ammonium nitrogen in landfill leachate with MAP precipitation. Chinese Journal of Environmental Engineering, 2013, 7(3), 925-930(in Chinese)
[2] 王国文, 王栋, 王明明, 等. 重金属杂质对磷酸铵镁结晶法处理制药废水的影响. 环境工程学报, 2013, 7(12): 4866-4868 Wang Guowen, Wang Dong, Wang Mingming, et al. Effect of heavy metal impurities on struvite precipitation for treatment of pharmaceutical wastewater. Chinese Journal of Environmental Engineering, 2013, 7(12): 4866-4868(in Chinese)
[3] Zhang Tao, Ding Lili, Ren Hongqiang, et al. Ammonium nitrogen removal from coking wastewater by chemical precipitation recycle technology. Water Research, 2009, 43(20): 5209-5215
[4] He Shilong, Zhang Yu, Yang Min, et al. Repeated use of MAP decomposition residues for the removal of high ammonium concentration from landfill leachate. Chemosphere, 2007, 66(11): 2233-2238
[5] Kim D., Kim J., Ryu H.D., et al. Effect of mixing on spontaneous struvite precipitation from semiconductor wastewater. Bioresource Technology, 2009, 100(1): 74-78
[6] Pakdil N. B., Filibeli A. The evaluation of pumice stone applicability at struvite crystallization by using box-benhken experimental design. Journal of Residuals Science and Technology, 2008, 5(2): 95-102
[7] Liu Zhigang, Zhao Qingliang, Lee D.J., et al. Enhancing phosphorus recovery by a new internal recycle seeding MAP reactor. Bioresource Technology, 2008, 99(14): 6488-6493
[8] Kim E.H., Yim S.B., Jung H. C., et al. Hydroxyapatite crystallization from a highly concentrated phosphate solution using powdered converter slag as a seed material. Journal of Hazardous Materials, 2006, 136(3): 690-697
[9] Ohlinger K. N., Young T. M., Schroeder E. D. Postdigestion struvite precipitation using a fluidized bed reactor. Journal of Environmental Engineering, 2000, 126(4): 361-368
[10] Wu Qingzhong, Bishop P. L. Enhancing struvite crystallization from anaerobic supernatant. Journal of Environmental Engineering and Science, 2004, 3(1): 21-29
[11] Shimamura K., Tanaka T., Miura Y., et al. Development of a high-efficiency phosphorus recovery method using a fluidized-bed crystallized phosphorus removal system. Water Science and Technology, 2003, 48(1): 163-170
[12] Battistoni P., Boccadoro R., Fatone F., et al. Auto-nucleation and crystal growth of struvite in a demonstrative fluidized bed reactor (FBR). Environmental Technology, 2005, 26(9): 975-982
[13] Battistoni P., Fava G., Pavan P., et al. Phosphate removal in anaerobic liquors by struvite crystallization without addition of chemicals: Preliminary results. Water Research, 1997, 31(11): 2925-2929
[14] Ohlinger K. N., Young T. M., Schroeder E. D. Kinetics effects on preferential struvite accumulation in wastewater. Journal of Environmental Engineering, 1999, 125(8): 730-737