Assessing the feasibility of N and P recovery by struvite precipitation from nutrient-rich wastewater: a review
详细信息    查看全文
  • 作者:Ramesh Kumar ; Parimal Pal
  • 关键词:Wastewater ; Nutrients ; Struvite ; Integrated process ; Sustainable strategy
  • 刊名:Environmental Science and Pollution Research
  • 出版年:2015
  • 出版时间:November 2015
  • 年:2015
  • 卷:22
  • 期:22
  • 页码:17453-17464
  • 全文大小:1,009 KB
  • 参考文献:Abbona F, Boistelle R, Lundager H (1982) Crystallization of two magnesium phosphates, struvite and newberyite: effect of pH and concentration. J Cryst Growth 57:6-4
    Altinbas M, Ozturk I, Aydin AF (2002a) Ammonia recovery from high strength agro-industry effluents. Water Sci Technol 45:189-96
    Altinbas M, Yangin C, Ozturk I (2002b) Struvite precipitation from anaerobically treated municipal and landfill wastewaters. Water Sci Technol 46:271-78
    Andrade A, Schuiling R (2001) The chemistry of struvite crystallization. Mineral J 23(5/6):37-6
    Battistoni P, De Angelis A, Pavan P, Prisciandaro M, Cecchi F (2001) Phosphorus removal from a real anaerobic supernatant by struvite crystallization. Water Res 35:2167-178
    Bhuiyan MIH (2007) Investigation into struvite solubility, growth and dissolution kinetics in the context of phosphorus recovery from wastewater. Ph.D. thesis, The University of British Columbia, Vancouver, Canada
    Bhuiyan MIH, Mavinic DS, Beckie RD (2007) A solubility and thermodynamic study of struvite. Environ Technol 28:1015-026
    Bhuiyan MIH, Mavinic DS, Koch FA (2008) Thermal decomposition of struvite and its phase transition. Chemosphere 70:1347-356
    Bittsánszky A, Pilinszky K, Gyulai G, Komives T (2015) Overcoming ammonium toxicity. Plant Sci 231:184-90
    Bond DR, Lovley DR (2003) Electricity production by Geobacter sulfurreducens attached to electrodes. Appl Environ Microbiol 69(3):1548-555
    Borojovitch EJC, Munster M, Rafailov Z (2010) Precipitation of ammonium from concentrated industrial wastes as struvite: a search for the optimal reagents. Water Environ Res 82(7):586-91
    Bouropoulos N, Koutsoukos PG (2000) Spontaneous precipitation of struvite from aqueous solutions. J Cryst Growth 213:381-88
    Bowers KE, Westerman PW (2005a) Design of cone-shaped fluidized bed struvite crystallizers for phosphorus removal from wastewater. Trans ASAE 48(3):1217-226
    Bowers KE, Westerman PW (2005b) Performance of cone-shaped fluidized bed struvite crystallizers in removing phosphorus from wastewater. Trans ASAE 48(3):1227-234
    Burns RT, Moody LB, Walker FR, Raman DR (2001) Laboratory and in situ reductions of soluble phosphorus in swine waste slurries. Environ Technol 22:1273-278
    Chimenos JM, Fernandez AI, Villalba G et al (2003) Removal of ammonium and phosphates from wastewater resulting from the process of cochineal extraction using MgO containing by-product. Water Res 37:1601-607
    Crutchik D, Garrido JM (2011) Struvite crystallization versus amorphous magnesium and calcium phosphate precipitation during the treatment of a saline industrial wastewater. Water Sci Technol 64(12):2011
    de-Bashan LE, Bashan Y (2004) Recent advances in removing phosphorus from wastewater and its future use as fertilizer (1997-003). Water Res 38:4222-246
    Di Iaconi C, Rossetti S, Lopez A, Ried A (2011) Effective treatment of stabilized municipal landfill leachates. Chem Eng J 168:1085-092
    Dockhorn T (2009) About the economy of phosphorus recovery. In: International Conference on Nutrient Recovery from Wastewater Streams, Vancouver, Canada. IWA Publishing, London, UK, pp 145-58. ISBN 9781843392323
    Doyle JD, Parsons SA (2002) Struvite formation, control and recovery. Water Res 36:3925-940
    El Diwani G, El Rafie S, El Ibiari NN, El-Aila HI (2007) Recovery of ammonia nitrogen from industrial wastewater treatment as struvite slow releasing fertilizer. Desalination 214:200-14
    Fittschen I, Hahn HH (1998) Characterization of the municipal wastewater part human urine and a preliminary comparison with liquid cattle excretion. Water Sci Technol 38(6):9-6
    Foletto EL, dos Santos WRB, Mazutti MA, Jahn SL, Gundel A (2013) Production of struvite from beverages waste as phosphorus source. Mater Res 16:242-45
    Gaterell MR, Gay R, Wilson R, Gochin RJ, Lester JN (2000) An economic and environmental evaluation of the opportunities for substituting phosphorus recovered from wastewater treatment works in existing UK fertilizer markets. Environ Technol 21:1067-084
    Gunay A, Karadag D, Tosun I, Ozturk M (2008) Use of magnesit as a magnesium source for ammonium removal from leachate. J Hazard Mater 156:619-23
    Hao XD, van Loosdrecht MCM (2006) Model-based evaluation of struvite recovery from P-released supernatant in a BNR process. Water Sci Technol 53(3):191-98
    Hao XD, Wang CC, Lan L, van Loosdrecht CM (2008) Struvite formation, analytical methods and effects of pH. Water Sci Technol 58(8):1687-692
    Hotta S, Funamizu N (2008) Evolution of ammonification potential in storage process of urine with faecal contamination. Bioresour Technol 99:13-7
    Huang H, Xiao D, Zhang Q, Ding L (2014) Removal of ammonia from landfill leachate by struvite precipitation with the use of low-cost phosphate and magnesium sources. J Environ Manag 145:191-98
    Ichihashi O, Hirooka K (2012) Removal and recovery of phosphorus as struvite from swine wastewater using microbial fuel cell. B
  • 作者单位:Ramesh Kumar (1)
    Parimal Pal (1)

    1. Environment and Membrane Technology laboratory, Department of Chemical Engineering, National Institute of Technology Durgapur, Mahatma Gandhi Avenue, Durgapur, 713209, India
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Environment
    Atmospheric Protection, Air Quality Control and Air Pollution
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Industrial Pollution Prevention
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1614-7499
文摘
Literature on recovery of nitrogen and phosphorous from wastewater in the form of value-added struvite fertilizer has been critically reviewed towards the evolution of a sustainable management strategy. Presence of nitrogen and phosphorus is widespread in both domestic as well as industrial wastewater streams such as swine wastewater, landfill leachate, urine waste, dairy manure, coke wastewater, and beverage wastewater. Where these nitrogen and phosphorus compounds cause eutrophication of water bodies and considered as harmful discharges to the environment, they can be turned useful through simple chemical conversion into struvite (MgNH4PO4·6H2O). In extensive studies on wastewater treatment, aspects of recovery of valuable materials remain dispersed. In the present article, almost all relevant aspects of sources of raw materials, chemistry and technology of struvite production, and its detailed characterization have been captured in a systematic and classified way so as to help in planning and designing an integrated scheme of struvite production through conversion of nitrogen and phosphorus components of waste streams. The study will help in formulating a new waste management strategy in this context by shifting focus from removal to recovery of nutrients from waste streams. Keywords Wastewater Nutrients Struvite Integrated process Sustainable strategy

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700