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손대희 ( Dae Hee Son ),정윤철 ( Yun Chul Chung ),신정훈 ( Jeong Hoon Shin ),정진영 ( Jin Young Jung ),안대희 ( Dae Hee Ahn ) 한국물환경학회 2004 한국물환경학회지 Vol.20 No.3
The sewages produced from small villages, rural community, drinking water reservation area and park which doesn`t have sewage piping system can be caused a serious water pollution at the restricted areas. The objective of this research was to suggest an economical and effective sewage treatment method by investigating the removal of the organics, nitrogen, and phosphorus in the multi-soil-layering reactor. Soil, natural zeolite, and iron slag were used as a supporting media of multi-soil-layering in this research. The purpose of natural zeolite addition was to maintain the consistent ammonium exchange capacity by providing a sequential environment, and that of iron slag addition was to remove phosphorus by adsorption. Continuous experiment of lab-scale single-soil-layering (S-1), multi-soil-layering (S-2), and mixed-soil-layering (S-3) methods were studied to compare and optimize three different types of the reactors. The organic removal efficiencies showed more than 90% in all three reactors. While S-1 and S-3 reactors showed about T-N removal of 31%, 45%, respectively, the average T-N removal efficiency of the S-2 reactor represented an 87%. In conclusion, that results suggest that the multi-soil-layering reactor could be effectively utilized as a plant for treatment of small village sewage.
Zoogloea ramigera의 회분식, 유가배양, 연속배양에 의한 생물고분자 생산
안대희,정윤철 한국산업미생물학회 1992 한국미생물·생명공학회지 Vol.20 No.2
Zoogloea ramigera 115를 사용하여 생물응집제로서 사용되는 생물고분자생산 실험을 하였다. 생물고분자 생산을 높이기 위하여 회분식, 유가배양, 연속배양방법을 사용하였다. 탄소원으로는 포도당, 유당, 당밀, 유청을 사용하였다. 기질이 포도당의 경우에는 C/N배 98일 때 생물고분자 생산 효과가 가장 좋았으며, 유당의 경우에는 C/N비 30, 당밀과 유청의 경우에는 C/N비 60일 때 생물고분자 생산이 가장 좋았다. 유가배양 방법이 회분식 배양방법 보다 최종 생물고분자 생산이 우수하였다. C/N비를 달리한 2단계 연속 배양방법으로 생산성을 향상시켰다. 당밀의 경우 0.048 hr^-1의 희석속도에서 유청의 경우 0.096hr^-1에서 생산성이 가장 좋았다. Zoogloea ramigera 115 was selected for the production of viscous microbial polysaccharide for bioflocculants usage. Batch, fed-batch, and continuous culture processes were examined with regard to the high biopolymer production. Several carbon sources were tested, including glucose, lactose, molasses, and cheese whey. The C/N ratio of 90 was most effective for biopolymer production from glucose, while the C/N ratios of 30 for lactose and 60 for both molasses and cheese whey substrate gave a maximum production. Fed batch culture proved more effective to increase final biopolymer concentration than batch culture. Continuous fermentation with two stages modifying C/N ratio increased the productivity. The production rates were a maximum at dilution rate of 0.048 hr^-1 for molasses and at 0.096 hr^-1 for cheese whey.