[1] Scott W D, Wrigley T J,Webb K M. A computer-model of struvite solution chemistry [J]. Talanta, 1991, 38(8): 889-895
[2] Wang J S, Song Y H, Yuan P, et al. Modeling the crystallization of magnesium ammonium phosphate for phosphorus recovery [J]. Chemosphere, 2006, 65(7): 1182-1187
[3] Wrigley T J, Scott W D,Webb K M. An improved computer-model of struvite solution chemistry [J]. Talanta, 1992, 39(12): 1597-1603
[4] Musvoto E V, Wentzel M C,Ekama G A. Integrated chemical-physical processes modelling Ⅱ. Simulating aeration treatment of anaerobic digester supernatants [J]. Water Res, 2000, 34(6): 1868-1880
[5] Musvoto E V, Wentzel M C, Loewenthal R E, et al. Integrated chemical-physical processes modelling Ⅰ. Development of a kinetic-based model for mixed weak acid/base systems [J]. Water Res, 2000, 34(6): 1857-1867
[6] elen I, Buchanan J R, Burns R T, et al. Using a chemical equilibrium model to predict amendments required to precipitate phosphorus as struvite in liquid swine manure [J]. Water Res, 2007, 41(8): 1689-1696
[7] Lee S I, Weon S Y, Lee C W, et al. Removal of nitrogen and phosphate from wastewater by addition of bittern [J]. Chemosphere, 2003, 51(4): 265-271
[8] Wu Y, Zhou S, Zheng K, et al. Mathematical model analysis of Fenton oxidation of landfill leachate [J]. Waste Manag, 2011, 31(3): 468-474
[9] Wu Y, Zhou S, Chen D, et al. Transformation of metals speciation in a combined landfill leachate treatment [J]. Sci Total Environ, 2011, 409(9): 1613-1620
[10] Zhang C,Chen Y G. Simultaneous nitrogen and phosphorus recovery from sludge-fermentation liquid mixture and application of the fermentation liquid to enhance municipal wastewater biological nutrient removal [J]. Environ Sci Technol, 2009, 43(16): 6164-6170
[11] APHA, Standard methods for the examination of water and wastewater. 21st ed.[M]. Washington DC: American Public Health Association, 2005
[12] 黄海明, 晏波, 陈启华, 等. 化学沉淀法去除稀土废水中氨氮试验 [J]. 环境化学, 2008, 27(6): 775-778
[13] Kim D, Kim J, Ryu H D, et al. Effect of mixing on spontaneous struvite precipitation from semiconductor wastewater [J]. Bioresour Technol, 2009, 100(1): 74-78
[14] Ohlinger K N, Young T M,Schroeder E D. Predicting struvite formation in digestion [J]. Water Res, 1998, 32(12): 3607-3614
[15] Doyle J D,Parsons S A. Struvite formation, control and recovery [J]. Water Res, 2002, 36(16): 3925-3940
[16] Ali M I,Schneider P A. An approach of estimating struvite growth kinetic incorporating thermodynamic and solution chemistry, kinetic and process description [J]. Chem Eng Sci, 2008, 63(13): 3514-3525
[17] Michalowski T,Pietrzyk A. A thermodynamic study of struvite plus water system [J]. Talanta, 2006, 68(3): 594-601
[18] 王崇臣, 郝晓地, 王鹏, 等. 不同pH下鸟粪石(MAP)法目标产物的分析与表征 [J]. 环境化学, 2010,(4): 759-763
[19] Tunay O, Kabdash I, Orhon D, et al. Ammonia removl by magnesium ammonium phosphate precipitation in industrial wastewater [J]. Water Sci Technol, 1997, 36(2/3): 225-228
[20] Song Y H, Yuan P, Zheng B H, et al. Nutrients removal and recovery by crystallization of magnesium ammonium phosphate from synthetic swine wastewater [J]. Chemosphere, 2007, 69: 319-324
[21] Uludag-Demirer S,Othman M. Removal of ammonium and phosphate from the supernatant of anaerobically digested waste activated sludge by chemical precipitation [J]. Bioresour Technol, 2009, 100(13): 3236-3244
[22] Uludag-Demirer S, Demirer G N,Chen S. Ammonia removal from anaerobically digested dairy manure by struvite precipitation [J]. Process Biochem, 2005, 40(12): 3667-3674