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金秀生,池基遠,朴出在 동아대학교 환경문제연구소 1990 硏究報告 Vol.13 No.1
Adapting two step aeration system to a waste water treatment of W-paper manufactory as Full-Scale Plants, we drew a following conclusion from its practical working. 1. Because BOD removal efficiency was 20% in A-Stage, 90% in B-Stage and total removal efficiency was 97%, it worked treatment plant well and was suitable for discharged water standard as well. Because COD removal efficiency was 42% in A-Stage, 71% in B-Stage and the total removal efficiency was 94%, COD control was possible in discharged water quality. 2. Treatment efficiency according to a load capacity was average 20% in 1.401 BOD㎏/㎥·d load of A-Stage and average 90% in 0.273BOD㎏/㎥·d load of B-Stage. 3. Treatment efficiency according to a ration of F/M was 2.657∼5.024㎏ BOD/㎏ MLSS·d in A-Stage and BOD removal efficiency was 16∼26% in the same stage. The ratio of F/M was 0.068∼0.094㎏BOD-㎏MLSS·d and BOD removal efficiency ratio was 85∼94%. Therefore treatment efficiency could be kept stably and volume of aeration tank could be reduced wholly. 4. Treatment efficiency according to MLSS appeared BOD 20%, COD 42%, in A-Stage and removal efficiency appeared BOD 90%, COD 71% in B-Stage. They were suitable for plan condition. 5. Because of working of complemented treatment plant by AB-Process. 20,000,000won a month was saved than the ordinary working cost. So, it was assumed that invested cost could be recollected in 19 months or so consequently.
배양적 및 비배양적 방법에 의한 생물활성탄 부착세균 군집 특성
박홍기,정은영,정미은,정종문,지기원,유평종,Park, Hong-Ki,Jung, Eun-Young,Jung, Mi-Eun,Jung, Jong-Moon,Ji, Ki-Won,Yu, Pyung-Jong 한국생명과학회 2007 생명과학회지 Vol.17 No.9
정수처리 공정에서 생물활성탄 (BAC) 공정은 미생물의 유기물 제거능을 극대화시킨 일종의 생물여과 공정이다 BAC 공정은 유기물과 미생물 재성장능을 효과적으로 제거한다. BAC 공정은 그 수계에 존재하는 미생물들이 활성탄에 부착 ${\cdot}$ 서식하며 수중의 천연유기물질을 기질로 이용하기 때문에 그 수계에 서식하는 미생물 종들에 매우 의존적이다. 본 연구는 낙동강 하류의 배리취수장 원수를 사용하여 생물활성탄에 의한 pilot-plant 공정을 운전하면서 SAC 공정에서의 활성탄 재질별로 배양작 (평판배양법) 및 비배양적 방법 (FISH)을 이용하여 SAC 부착세균의 군집구조 특성을 조사하였다. 실험결과 석탄계 재질의 부착세균 HPC 및 생산력이 각각 $1.20{\times}l0^7{\sim}56.2{\times}l0^7$ CFU/g, $1.2{\sim}3.7\;mg-C/m^3{\cdot}h$ 의 범위를 보여 세균 생체량과 DOC 제거율은 석탄계 재질이 가장 높은 것으로 나타났다. 배양적 방법으로 활성탄 재질별 부착세균을 동정한 결과 Pseudomonas 속이 우접하였고, 그 다음으로 Flavobacterium 속, Alcaligenes 속, Acinetobacter 속, Sphingomonas 속 등의 순으로 동정되었다. 또한, Pseudomonas 속 중 석탄계와 야자계 BAC에서는 Pseudomonas vesicularis, 목탄계 BAC에서는 Pseudomonas cepacia가 우점종으로 분포하였다. 비배양적 방법인 FISH 법을 이용한 세균 군집구조 조사결과 활성탄 재질별로 ${\alpha}$군집 27.0 ${\sim}$ 43.0%, ${\gamma}$ 군집 11.3 ${\sim}$ 28.6%, ${\beta}$ 군집 7.1 ${\sim}$ 22.0% 비율로 나타나 유기물 제거효율은 주로 ${\alpha}$ 군집에 의해 조절되어짐을 알 수 있었다. The Biological Activated Carbon (BAC) process in the water treatments represents a kind of biofiltration process which capabilities of bacteria to remove organic matters are maximized. It enables to eliminate organic matters and effectively reduce microbial regrowth potentials. As attached bacteria employ natural organic matter as a substrate, they are significantly dependent on indigenous microorganisms. In this study, characteristics of bacterial community by culturable and unculturable Methods have been conducted in a pilot plant using SAC in water treatment process at the downstream of the Nakdong River. Based on the results, HPC and bacterial- production for coal-based activated carbon material were $1.20{\sim}56.2{\times}l0^7$ cfu/g and $1.2{\sim}3.7\;mgC/m^{3}h$, respectively, in the SAC process. The highest level of attached bacteria biomass and organic carbon removal efficiency was found in the coal-based activated carbon. The genera Pseudomonas, Flavobacterium, Alcaligenes, Acilzetobacter, and Spingomonas were identified for each activated carbon material. Pseudomonas vesicularis was the dominant species in the coconut- and coal-based materials, where as Pseudomonas cepacia was the dominant species in the wood-based material. The Scanning Electron Microscope (SEM) observation of the activated carbon surface also found the widespread distribution of rod form and coccus. The community of attached bacteria was investigated by performing Fluorescent in situ hybridization (FISH) analysis. a group was dominant in coal, wood and coccunt-based materials, ${\alpha},\;{\beta}\;and\;{\gamma}$ group ranged from 27.0 ${\sim}$ 43.0%, 7.1 ${\sim}$ 22.0%, 11.3 ${\sim}$ 28.6%, respectively. These results suggest that a group bacterial community appears to be regulated removal efficiency of organic material in water treatment process.