DocumentCode
508359
Title
Transformation of Phosphorus Forms in the Construction Process of Phosphate Reduction System of Hypersaline and High-Phosphorus Wastewater
Author
Yao, Chen ; Jian, Zhou ; Teng-rui, Long ; Zhi-gan, Li
Author_Institution
Key Lab. of Three Gorges Reservoir Region´´s Eco-Environ., Chongqing Univ., Chongqing, China
Volume
2
fYear
2009
fDate
16-18 Oct. 2009
Firstpage
892
Lastpage
896
Abstract
Transformation of phosphorus forms in the construction process of biological phosphate reduction system was discussed in treating saline and high-phosphorus pickled mustard tuber wastewater to resolve problems encountered with present phosphorus removal technology. A phosphate reduction system under hypersaline condition (salinity, 7%, measured by NaCl) was successfully constructed, when the reactor was started with 3%-salinity wastewater and the salinity was increased through two stages, at influent organic loading 0.45 kgCOD/(m3·d), phosphorus loading 5.0 g PO4 3--P/(m3·d), DO 6 mg/L, 30°C and without sludge discharge. Phosphorus balance and transformation of phosphorus forms in sludge was studied on 26 running cycles of this phosphorus reduction system. Results showed that averagely 41.8 mg/L of external phosphorus got lost per day, and that 155 mg of internal phosphorus in sludge get lost through the path of phosphorus forms transformation and phosphate reduction, which accounted for 14.2% of the external phosphorus loss and 12.5% of the total phosphorus loss, respectively. The transformation path of phosphorus forms in sludge is Org-P¿NaOH85-P¿HCl-P¿NaOH-P¿BD-P¿H2O-P.
Keywords
phosphorus; wastewater treatment; biological phosphate reduction system; high-phosphorus pickled mustard tuber wastewater; high-phosphorus wastewater; hypersaline wastewater; phosphorus forms transformation; phosphorus removal technology; salinity; Chemical processes; Costs; Educational institutions; Educational technology; Inductors; Microorganisms; Power engineering and energy; Reservoirs; Systems engineering education; Wastewater treatment; hypersaline and high-phosphorus wastewater; phosphate reduction; phosphorus balance; phosphorus forms;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy and Environment Technology, 2009. ICEET '09. International Conference on
Conference_Location
Guilin, Guangxi
Print_ISBN
978-0-7695-3819-8
Type
conf
DOI
10.1109/ICEET.2009.454
Filename
5366928
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