Phosphorus removal from sidestreams by crystallisation of magnesium-ammonium-phosphate using seawater

被引:0
|
作者
Matsumiya, Y [1 ]
Yamasita, T
Nawamura, Y
机构
[1] Japan Inst Wastewater Engn Technol, Toshima Ku, Tokyo, Japan
[2] Environm Bur Kitakyushu City, Kitakyushu, Fukuoka, Japan
[3] Nishihara Environm Sanitat Res Cooperat Ltd, Minato Ku, Tokyo, Japan
来源
JOURNAL OF THE CHARTERED INSTITUTION OF WATER AND ENVIRONMENTAL MANAGEMENT | 2000年 / 14卷 / 04期
关键词
crystallisation; magnesium-ammonium-phosphate; phosphorus; seawater; sidestream;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In recent years, a number of biological-treatment processes have been developed for phosphorus removal, alone or in combination with nitrogen. In anaerobic/oxic and anaerobic/anoxic/oxic processes, it is necessary to lower the concentration of phosphorus in the sidestream from the sludge-disposal processes. To do this, the magnesium-ammonium-phosphate system has been developed in which phosphorus is removed in a side-stream process. Alternative systems require chemicals such as magnesium chloride as the source of magnesium and sodium hydroxide for pH control, and are economically less viable than that described in this paper in which seawater is substituted for the chemicals. Dissolved phosphorus removal of over 70% was achieved without pH control by feeding the sidestream which contained 50-111 mg/l dissolved phosphorus and had a pH greater than 7.77, together with a 9-10% flow of seawater into the reactor containing 4-13% of magnesium ammonium phosphate and which provided a retention of 29 mins.
引用
收藏
页码:291 / 296
页数:6
相关论文
共 50 条
  • [31] Impact of Magnesium Sources for Phosphate Recovery and/or Removal from Waste
    Fattah, Kazi Parvez
    Sinno, Sarah
    Atabay, Serter
    Khan, Zahid
    Al-Dawood, Zahraa
    Yasser, Alaa Kamel
    Temam, Riyad
    ENERGIES, 2022, 15 (13)
  • [32] Synthesis of hydrotalcite using magnesium from seawater and dolomite
    Kameda, T
    Yoshioka, T
    Uchida, M
    Okuwaki, A
    MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 2000, 341 : 1211 - 1216
  • [33] Recycle use of magnesium ammonium phosphate to remove ammonium nitrogen from rare-earth wastewater
    Huang, H. M.
    Xiao, X. M.
    Yan, B.
    WATER SCIENCE AND TECHNOLOGY, 2009, 59 (06) : 1093 - 1099
  • [34] Development of phosphorus recovery reactor for enlargement of struvite crystals using seawater as the magnesium source
    Wongphudphad, Pidchaya
    Kemacheevakul, Patiya
    WATER SCIENCE AND TECHNOLOGY, 2019, 79 (07) : 1376 - 1386
  • [35] Removal of calcium and magnesium from seawater to increase the solid concentration in thickener underflow
    Jeldres R.I.
    Piceros E.C.
    Valenzuela J.A.
    Robles P.A.
    Informacion Tecnologica, 2019, 30 (05): : 291 - 298
  • [36] Removal of ammonium and phosphate from the supernatant of anaerobically digested waste activated sludge by chemical precipitation
    Uludag-Demirer, Sibel
    Othman, Maazuza
    BIORESOURCE TECHNOLOGY, 2009, 100 (13) : 3236 - 3244
  • [37] Temperature-programmed pyrolysis of magnesium ammonium phosphate and removal of ammonia-nitrogen by its pyrolysate
    Tang, Jian-jun
    Chen, Yi-qing
    Zhong, Zhen-hui
    Li, Wen-long
    Yin, Juan
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2016, 26 (09) : 2502 - 2508
  • [38] Study on phosphate removal from aqueous solutions using magnesium-ammonium- and zirconium-modified zeolites: equilibrium, kinetic, and fixed-bed column study
    Marzi, Mostafa
    Kazemian, Hossein
    Bradshaw, Charles
    ENVIRONMENTAL MONITORING AND ASSESSMENT, 2023, 195 (07)
  • [39] Study on phosphate removal from aqueous solutions using magnesium-ammonium- and zirconium-modified zeolites: equilibrium, kinetic, and fixed-bed column study
    Mostafa Marzi
    Hossein Kazemian
    Charles Bradshaw
    Environmental Monitoring and Assessment, 2023, 195
  • [40] Removal of NaCl from seawater using natural zeolite
    Wajima T.
    Shimizu T.
    Yamato T.
    Ikegami Y.
    Toxicological and Environmental Chemistry, 2010, 92 (01) : 21 - 26