Investigation of N and P removal from aqueous solution by magnesium ammonium phosphate (MAP) precipitation

被引:1
作者
Ozturk, Mustafa [1 ]
Bali, Ulusoy [2 ]
机构
[1] Sivas Cumhuriyet Univ, Bitkisel & Hayvansal Uretim Bolumu, Sivas Tekn Bilimler Meslek Yuksekokulu, Sivas, Turkiye
[2] Sivas Cumhuriyet Univ, Cevre Muhendisligi Bolumu, Muhendislik Fak, Sivas, Turkiye
来源
PAMUKKALE UNIVERSITY JOURNAL OF ENGINEERING SCIENCES-PAMUKKALE UNIVERSITESI MUHENDISLIK BILIMLERI DERGISI | 2023年 / 29卷 / 05期
关键词
Treatment; Nitrogen; Phosphorus; MAP; Nutrient removal; Struvite; SOURCE SEPARATED URINE; WASTE-WATER TREATMENT; STRUVITE PRECIPITATION; PHOSPHORUS REMOVAL; NITROGEN REMOVAL; RECOVERY; CRYSTALLIZATION; OPTIMIZATION; CRYSTAL; CALCIUM;
D O I
10.5505/pajes.2022.99894
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Precipitation of struvite or magnesium ammonium phosphate (MgNH4PO4.6H(2)O, MAP) in wastewater treatment plants where nitrogen (N) and phosphorus (P) treatment is carried out causes very important operational problems. Also, since MAP has commercial value, its control and recovery is important. Therefore, batch experiments were conducted to examine the effects of pH, Magnesium (Mg): N and N:P molar ratio, different Mg2+ sources and the presence of calcium (Ca2+) on MAP crystallization. Experimental results showed that at a constant Mg:N:P=1:1:1 ratio, the optimum pH was 9, and the N and P removal efficiencies at this pH were 79.4% and 88.4% respectively. These removal efficiencies for N and P increased to 87.6% and 99.1%, respectively, by increasing the Mg:N ratio to 1.25:1. By increasing the N:P ratio to 1:1.15, the N removal efficiency increased to 96.4%, but the P removal efficiency decreased to 96.1%. The most effective source of Mg2+ was found to be MgCl2.6H(2)O, with N and P removal efficiencies of over 96%. It was found that the N removal efficiency was significantly reduced in the presence of Ca2+ in the solution. It was determined that the N removal efficiency, which was >96% in the absence of Ca2+, decreased to 68.6% at 1000 mg/L Ca2+ concentration. In the XRD analysis performed on the sediment, it was determined that the formation was a MAP crystal, and in the addition of Ca2+, an amorphous structure rich in Ca2+ was formed instead of MAP.
引用
收藏
页码:537 / 545
页数:9
相关论文
共 39 条
[11]   Recovery of ammonia nitrogen from industrial wastewater treatment as Struvite slow releasing fertilizer [J].
El Diwani, G. ;
El Rafie, Sh. ;
El Ibiari, N. N. ;
El-Aila, H. I. .
DESALINATION, 2007, 214 (1-3) :200-214
[12]   Simultaneous phosphate and ammonium removal from aqueous solution by a hydrated aluminum oxide modified natural zeolite [J].
Guaya, Diana ;
Valderrama, Cesar ;
Farran, Adriana ;
Armijos, Chabaco ;
Luis Cortina, Jose .
CHEMICAL ENGINEERING JOURNAL, 2015, 271 :204-213
[13]   Simultaneous recovery of ammonium, potassium and magnesium from produced water by struvite precipitation [J].
Hu, Lei ;
Yu, Jiuling ;
Luo, Hongmei ;
Wang, Huiyao ;
Xu, Pei ;
Zhang, Yanyan .
CHEMICAL ENGINEERING JOURNAL, 2020, 382
[14]   Removal of nutrients from piggery wastewater using struvite precipitation and pyrogenation technology [J].
Huang, Haiming ;
Xu, Chunlian ;
Zhang, Wei .
BIORESOURCE TECHNOLOGY, 2011, 102 (03) :2523-2528
[15]   Potential phosphorus recovery by struvite formation [J].
Jaffer, Y ;
Clark, TA ;
Pearce, P ;
Parsons, SA .
WATER RESEARCH, 2002, 36 (07) :1834-1842
[16]  
James DD, 2002, Water Research, P3925
[17]   Enhancing struvite precipitation potential for ammonia nitrogen removal in municipal landfill leachate [J].
Kim, Daekeun ;
Ryu, Hong-Duck ;
Kim, Man-Soo ;
Kim, Jinhyeong ;
Lee, Sang-Ill .
JOURNAL OF HAZARDOUS MATERIALS, 2007, 146 (1-2) :81-85
[18]   A holistic and sustainable approach for recovery of phosphorus via struvite crystallization from synthetic distillery wastewater [J].
Kumari, Soni ;
Jose, Sanoj ;
Tyagi, Megha ;
Jagadevan, Sheeja .
JOURNAL OF CLEANER PRODUCTION, 2020, 254
[19]  
Le Corre K. S., 2006, THESIS CRANFIELD U C
[20]   Performance studies of phosphorus removal using cross-flow nanofiltration [J].
Lee, W. P. Cathie ;
Mah, Shee-Keat ;
Leo, C. P. ;
Wu, Ta Yeong ;
Chai, Siang-Piao .
DESALINATION AND WATER TREATMENT, 2014, 52 (31-33) :5974-5982