Validation and Applications of a Chemical Equilibrium Model for Struvite Precipitation
Tóm tắt
Từ khóa
Tài liệu tham khảo
Altinbas, M., Ozturk, I., & Aydin, A. F. (2002). Ammonia recovery from high strength agro industry effluents. Water Science and Technology, 45, 189–196.
Altinbaş, M., Yangin, C., & Ozturk, I. (2002). Struvite precipitation from anaerobically treated municipal and landfill wastewaters. Water Science and Technology, 46, 271–278.
Battistoni, P., De Angelis, A., Prisciandaro, M., Boccadoro, R., & Bolzonella, D. (2002). P removal from anaerobic supernatants by struvite crystallization: long term validation and process modeling. Water Research, 36, 1927–1938. doi: 10.1016/S0043-1354(01)00401-8 .
Battistoni, P., Pavan, P., Cecchi, F., & Mata-Alvarez, J. (1998). Phosphate removal in real anaerobic supernatants: modeling and performance of a fluidized bed reactor. Water Science and Technology, 38, 275–283. doi: 10.1016/S0273-1223(98)00412-0 .
Burns, R. T., Moody, L. B., Walker, F. R., & Raman, D. R. (2001). Laboratory and in-site reductions of soluble phosphorus in swine waste slurries. Environmental Technology, 22, 1273–1278. doi: 10.1080/09593332208618190 .
Çelen, I., Buchanan, J. R., Burns, R. T., Robinson, R. B., & Raman, D. R. (2007). Using a chemical equilibrium model to predict amendments required to precipitate phosphorus as struvite in liquid swine manure. Water Research, 41, 1689–1696. doi: 10.1016/j.watres.2007.01.018 .
Filella, M., & May, P. M. (2003). Computer simulation of the low-molecular-weight inorganic species distribution of antimony (III) and antimony (V) in natural waters. Geochimica et Cosmochimica Acta, 67, 4013–4031. doi: 10.1016/S0016-7037(03)00095-4 .
Harada, H., Shimizu, Y., Miyagoshi, Y., Matsui, S., Matsuda, T., & Nagasaka, T. (2006). Predicting struvite formation for phosphorus recovery from human urine using an equilibrium model. Water Science and Technology, 54, 247–255. doi: 10.2166/wst.2006.720 .
Jaffer, Y., Clark, T. A., Pearce, P., & Parsons, S. A. (2002). Potential phosphorus recovery by struvite formation. Water Research, 36, 1834–1842. doi: 10.1016/S0043-1354(01)00391-8 .
Loewenthal, R. E., Kornmüller, U. R. C., & van Heerden, E. P. (1994). Modeling struvite precipitation in anaerobic treatment systems. Water Science and Technology, 30, 107–116.
Miles, A., & Ellis, T. G. (2001). Struvite precipitation potential for nutrient recovery from anaerobically treated wastes. Water Science and Technology, 43, 259–266.
Munch, E. V., & Barr, K. (2001). Controlled struvite crystallization for removing phosphorus from anaerobic digester sidestreams. Water Research, 35, 151–159. doi: 10.1016/S0043-1354(00)00236-0 .
Ohlinger, K. N., Young, T. M., & Schroeder, E. D. (1998). Predicting struvite formation in digestion. Water Research, 32, 3607–3614. doi: 10.1016/S0043-1354(98)00123-7 .
Sarkar, A. K. (1990). Phosphate cement-based fast setting binders. Journal of American Ceramic Society Bulletin, 69, 234–238.
Schuiling, R. D., & Andrade, A. (1999). Recovery of struvite from calf manure. Environmental Technology, 20, 765–768. doi: 10.1080/09593332008616872 .
Scott, W. D., & Venkitachalam, T. H. (1996). Struvite precipitation: a design approach, paper prepared for the International Association of Water Quality (IAWQ) 17th Biennial International Conference, Budapest, Hungary, 24–30 July, 1994. http://www.groundwaterresearch.com.au/knowledgebase/struvite/struvite.html
Scott, W. D., Wrigley, T. J., & Webb, K. M. (1991). A computer model of struvite solution chemistry. Talanta, 38, 889–895. doi: 10.1016/0039-9140(91)80268-5 .
Stratful, I., Scrimshaw, M. D., & Lester, N. J. (2001). Conditions influencing the precipitation of magnesium ammonium phosphate. Water Research, 35, 4191–4199. doi: 10.1016/S0043-1354(01)00143-9 .
Tünay, O., Kabdasli, I., Orhon, D., & Kolçak, S. (1997). Ammonia removal by magnesium ammonium phosphate precipitation in industrial wastewaters. Water Science and Technology, 36, 225–228. doi: 10.1016/S0273-1223(97)00391-0 .
Uludag-Demirer, S., Demirer, G. N., & Chen, S. (2005). Ammonia removal from anaerobically digested dairy manure by struvite precipitation. Process Biochemistry, 40, 3667–3674. doi: 10.1016/j.procbio.2005.02.028 .
Wang, J. S., Song, Y. H., Yuan, P., Peng, J. F., & Fan, M. H. (2006). Modeling the crystallization of magnesium ammonium phosphate for phosphorus recovery. Chemosphere, 65, 1182–1187. doi: 10.1016/j.chemosphere.2006.03.062 .
Webb, K. M. (1996). Chemical modeling for the precipitation of metal ammonium phosphate salts from wastewater solutions. Ph.D. Thesis, School of Environmental Science, Murdoch University, Perth, Australia.
Wilsenach, J. A., Schuurbiers, C. A. H., & van Loosdrecht, M. C. M. (2007). Phosphate and potassium recovery from source separated urine through struvite precipitation. Water Research, 41, 458–466. doi: 10.1016/j.watres.2006.10.014 .
Wrigley, T. J. (1999). Water quality improvement of piggery effluent, Ph.D. Thesis, School of Environmental Science, Murdoch University, Perth, Australia.
Wrigley, T. J., Scott, W. D., & Webb, K. M. (1992). An improved computer model of struvite solution chemistry. Talanta, 39, 1597–1603. doi: 10.1016/0039-9140(92)80190-O .