Abstract
In this study, Fenton reaction was studied for the possibility of applying as advanced treatment and its optimal condition for the removal of refractory organics from the dye wastewater. Fenton reaction was applied to remove refractory organics after the bio-treatment (secondary treatment) inside test laboratory and on-site pilot plant. Wastewater from the secondary treatment was used and its $COD_{Mn}$ was measured as 30~50mg/L. After the Fenton reaction, the optimal condition was found as pH 3~3.5, reaction time 2~2.5hr, chemical input ratio of ($FeCl_2$(33%)/$H_2O_2$(35%)) was 3 : 1. When chemical input ratio of ($FeCl_2$(33%)/$H_2O_2$(35%)) was at its optimal, amount of sludge volume ($SV_{2hr}$) was 21~28%. With pilot plant test, removal rate was heavily influenced by the hydraulic retention time(HRT), and optimum value of HRT was 2.0 hr. When pilot plant($2m^3/d$) was placed on-site and operated continuously, it showed steady and fairly good treatment of COD where COD removal rate was 60~70%, treated water showed below 20mg/L.
본 연구는 염색폐수 처리시설에서 생물학적공정(2차) 처리를 거처 배출되고 있는 방류수 중에 미처리되어 잔존하고 있는 난분해성 유기물(COD) 성분을 제거하기 위하여, 고도처리공법으로서 Fenton 산화공정을 적용하여, 공법의 적용 가능성과 최적의 운전조건을 얻고자, 실험실 실험과 Pilot Plant 현장 운전을 실시하였다. 본 Fenton 산화실험의 원수로 사용된 생물학적(2차) 처리수의 수질은 실험기간동안 $COD_{Mn}$ 30~50mg/L으로 측정되었다. Fenton 산화반응 실험 결과, 최적의 반응조건은 pH 3~3.5, 반응시간 2~2.5시간, 약품 주입량비($FeCl_2$(33%)/$H_2O_2$(35%)) 3 : 1 로 나타났다. 약품 주입량 비가 적정조건일 때, 슬러지 발생량($SV_{2hr}$)은 전체 양의 21~28% 범위인 것으로 측정되었다. Pilot Plant 실험 결과, 산화반응조의 체류시간 변화에 따라 처리효율이 크게 영향을 받고 있었으며, 적정 체류시간은 2.0시간 이었다. 현장에 Pilot Plant($2m^3/d$)를 설치하여 연속운전을 실시한 결과, COD 농도가 제거효율 면에서 60~70%를 나타내었고, 처리수질은 20mg/L 이하로 측정되어, 대체로 안정적이고 양호한 처리효율을 나타내고 있었다.