Abstract
제지폐수의 효율적인 생물학적 처리와 폐수특성에 적합한 미생물제제의 개발을 위하여 토양 및 산업폐수로부터 방향족 화합물에 분해활성이 높은 KN11, KN13 및 KN27 균주와 세포 외 섬유소 가수분해효소 생산 균주 GT21 등의 균주를 분리하였다. 형태학적, 생리학적 및 생화학적 분류를 통해 이들 분리주 KN11, KN13, KN27 및 GT21 등은 Acinetobacter sp., Neisseria sp., Bacillus sp., Pseudomonas sp.와 유사한 것으로 판명되어 최종적으로 각각 Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27, Pseudomonas sp. GT21로 명명하였다. 제지폐수 중 난분해성 물질과 COD 증가원인 물질을 분석하고자 GC/MS를 이용하여 방향족 화합물 및 그 유도체들을 검출하였다. 분리균주 Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27 및 Pseudomonas sp. GT21의 균체로 구성된 미생물제제 J30을 제조하여 제지폐수의 효율적 처리를 위한 연구에 사용하였다. 미생물제제 J30의 제지폐수에서 COD 제거를 위한 최적온도와 pH는 각각 <TEX>$30^{\circ}C$</TEX>와 7.5였으며 배양 60시간에서 최대의 COD 제거효율을 나타내었다. 실험실 규모의 pilot plant에서 미생물제제 J30의 COD 제거효율은 87%의 높은 제거효율을 나타내었다. This study was performed to investigate the effects of microbial augmentation on the biological treatment of paper mill wastewater. Three bacteria (KN11, KN13, KN27) capable of degrading aromatic compounds and a bacterial strain (GT21) producing an extracellular cellulase were isolated from soil and wastewater by selective enrichment culture. Through morphological, physiological, and biochemical taxonomies, isolated strains of KN11, KN13, KN27, and GT21 were identified as Acinetobacter sp., Neisseria sp., Bacillus sp., and Pseudomonas sp. and named Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27, and Pseudomonas sp. GT21, respectively. For analysis of non-biodegradable and chemical oxygen demand (COD)-increasing matter in a paper mill wastewater, we utilized GC/MS to detect aromatic compounds and their derivatives containing several substituted functional groups. The microbial augmentation, J30 formulated with the mixture of bacteria including Acinetobacter sp. KN11, Neisseria sp. KN13, Bacillus sp. KN27, and Pseudomonas sp. GT21, was used for the treatment of paper mill wastewater. The optimum temperature and pH for COD removal of the microbial augmentation, J30, were <TEX>$30^{\circ}C$</TEX> and 7.5, respectively. For evaluation of the industrial applicability of the microbial augmentation, J30 in the pilot test, treatment efficiency was examined using paper mill wastewater. The microbial augmentation, J30, showed a COD removal rate of 87%. On the basis of the above results, we designed the wastewater treatment process of the activated sludge system.
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