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Nutrient Recovery from Sludge Fermentation Effluent in Upflow Phosphate Crystallization Process  

Ahn, Young-Ho (School of Civil and Environmental Engineering, Yeungnam University)
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Abstract
The nutrient recovery in phosphate crystallization process was investigated by using laboratory scale uptlow reactors, adopting sequencing batch type configuration. The industrial waste lime was used as potential cation source with magnesium salt($MgCl_2$) as control. The research was focused on its successful application in a novel integrated sludge treatment process, which is comprised of a high performance fermenter followed by a crystallization reactor. In the struvite precipitation test using synthetic wastewater first, which has the similar characteristics with the real fermentation effluent, the considerable nutrient removal(about 60%) in both ammonia and phosphate was observed within $0.5{\sim}1$ hr of retention time. The results also revealed that a minor amount(<5%) of ammonia stripping naturally occurred due to the alkaline(pH 9) characteristic in feed substrate. Stripping of $CO_2$ by air did not increase the struvite precipitation rate but it led to increased ammonia removal. In the second experiment using the fermentation effluent, the optimal dosage of magnesium salt for struvite precipitation was 0.86 g Mg $g^{-1}$ P, similar to the mass ratio of the struvite. The optimal dosage of waste lime was 0.3 g $L^{-1}$, resulting in 80% of $NH_4-N$ and 41% of $PO_4-P$ removal, at about 3 hrs of retention time. In the microscopic analysis, amorphous crystals were mainly observed in the settled solids with waste lime but prism-like crystals were observed with magnesium salt. Based on mass balance analysis for an integrated sludge treatment process(fermenter followed by crystallization reactor) for full-scale application(treatment capacity Q=158,880 $m^3\;d^{-1}$), nutrient recycle loading from the crystallization reactor effluent to the main liquid stream would be significantly reduced(0.13 g N and 0.19 g P per $m^3$ of wastewater, respectively). The results of the experiment reveal therefore that the reuse of waste lime, already an industrial waste, in a nutrient recovery system has various advantages such as higher economical benefits and sustainable treatment of the industrial waste.
Keywords
Crystallization; Fermentation Effluent; Hydroxyapatite; Phosphate; Struvite; Waste Lime;
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1 Banister, S. S., Pitman, A. R., and Pretorius, W. A., 'The solubilisation of N and P during primary sludge acid fermentation and precipitation of the resultant P,' Water SA, 24(4), 337-342(1998)
2 Battistoni, P., De Angelis, A., Prisciandaro, M., Boccadoro, R., and Bolzonella, D., 'P removal from anaerobic supernatants by struvite crystallization: long term validation and process modelling,' Water Res., 36, 1927-1938(2002)   DOI   ScienceOn
3 Celen, I. and Turker, M., 'Recovery of ammonia as struvite fromanaerobic digester effluent,' Environ. Technol., 22(11), 1245-1253(2001)   DOI   ScienceOn
4 Velsami-Jones, E., 'Phosphorus in wastewaters: is there a potential for recovery as calcium phosphate?,' Chimica Oggi(Chemistry Today), 5, 52-55(2002)
5 APHA, AWWA and WEF, Standard Methods for the Examination of Water and Wastewater, 19th Ed., Washington D.C., USA(1995)
6 Doyle, J. D. and Parsons, S. A., 'Struvite formation, control and recovery,' Water Res., 36, 3925-3940(2002)   DOI   ScienceOn
7 Ahn, Y. H. and Speece, R. E., 'Elutriated acid fermentation of municipal primary sludge,' Water Res., 40(11), 2210-2220   DOI   ScienceOn
8 Nriagu, J. O. and Moore, P. B., Phosphate Minerals, Springer-verlag(1983)
9 Ahn, Y. H. and Choi, H. C., 'Municipal sludge treatment and disposal in South Korea: status and a new sustainable approach,' Water Sci. Technol., 50(9), 245-253(2004)
10 Banister, S. S. and Pretorius, W. A., 'Optimization of primary sludge acidogenic fermentation for biological nutrient removal,' Water SA, 24(1), 35-41(1998)
11 US EPA, Wastewater Technology Fact Sheet: Ammonia Stripping, EPA 832-F-00-019(2000)
12 한국건설기술연구원, '하수도시설의 유지관리 개선방안에 관한 연구,' KICT 90-EC-111 (1991)
13 Moriyama, K., Kojima, T., Minawa, Y., Matsumoto, S., and Nakamachi, K., 'Development of artificial seed crystal for crystallization of calcium phosphate,' Environ. Technol., 22(11), 1245-1253(2001)   DOI   ScienceOn
14 강병희, 이송, 배재호, 김진한, 김지형, 이용빈, 이태수, 폐석회를 이용한 매립성토제의 개발 및 사용에 따른 환경영향평가에 관한 연구, 동양화학공업(2000)
15 Steen, I., 'Phosphorus availability in the 21st century: management of a non-renewable resource,' Phosphorus & Potassium, 217(1998)