2016년 4월 6일 수요일

Influence of COD:N ratio on sludge properties and their role in membrane fouling of a submerged membrane bioreactor

http://www.sciencedirect.com/science/article/pii/S004313541530378X

Hao, L., Liss, S. N., & Liao, B. Q. (2015). Influence of COD:N ratio on sludge properties and their role in membrane fouling of a submerged membrane bioreactor. Water Research89, 132–141. http://doi.org/10.1016/j.watres.2015.11.052

Abstract

The effect of COD:N ratio on sludge properties and their role in membrane fouling were examined using a well-controlled aerobic membrane bioreactor receiving a synthetic high strength wastewater containing glucose. Membrane performance was improved with an increase in the COD/N ratio (100:5–100:1.8) (i.e. reduced N dosage). Surface analysis of sludge by X-ray photoelectron spectroscopy (XPS) indicates significant differences in surface concentrations of elements C, O and N that were observed under different COD/N ratios, implying changes in the composition of extracellular polymeric substances (EPS). Fourier transform-infrared spectroscopy (FTIR) revealed a unique characteristic peak (CO bonds) at 1735 cm−1 under nitrogen limitation conditions. Total EPS decreased with an increase in COD/N ratio, corresponding to a decrease in the proteins (PN) to carbohydrates (CH) ratio in EPS. There were no significant differences in the total soluble microbial products (SMPs) but the ratio of PN/CH in SMPs decreased with an increase in COD/N ratios. The results suggest that EPS and SMP composition and the presence of a small quantity of filamentous microorganisms played an important role in controlling membrane fouling.

Comment

C/N비가 올라가면 막오염이 저감된다는 논문.

2016년 1월 29일 금요일

COD/N비가 EPS와 SMP에 미치는 영향

Influence of COD:N ratio on sludge properties and their role in membrane fouling of a submerged membrane bioreactor
L. Hao, S.N. Liss, B.Q. Liao

http://www.sciencedirect.com/science/article/pii/S004313541530378X

Abstract
The effect of COD:N ratio on sludge properties and their role in membrane fouling were examined using a well-controlled aerobic membrane bioreactor receiving a synthetic high strength wastewater containing glucose. Membrane performance was improved with an increase in the COD/N ratio (100:5–100:1.8) (i.e. reduced N dosage). Surface analysis of sludge by X-ray photoelectron spectroscopy (XPS) indicates significant differences in surface concentrations of elements C, O and N that were observed under different COD/N ratios, implying changes in the composition of extracellular polymeric substances (EPS). Fourier transform-infrared spectroscopy (FTIR) revealed a unique characteristic peak (Cdouble bond; length as m-dashO bonds) at 1735 cm−1 under nitrogen limitation conditions. Total EPS decreased with an increase in COD/N ratio, corresponding to a decrease in the proteins (PN) to carbohydrates (CH) ratio in EPS. There were no significant differences in the total soluble microbial products (SMPs) but the ratio of PN/CH in SMPs decreased with an increase in COD/N ratios. The results suggest that EPS and SMP composition and the presence of a small quantity of filamentous microorganisms played an important role in controlling membrane fouling.

- 고농도 합성하수 이용
- C/N비가 증가하면 Membrane performance는 증가 (100:5-100:1.8)
- CN는 EPS의 성상을 변화시킴
- 질소의 제한은 EPS 생성을 감소시킴  단백질 감소 때문
- SMP 양은 크게 다르지 않음. 단 Protein/carbohydrate는 감소