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권중천 ( Joong Chun Kwon ),문서연 ( Seo Yeon Moon ),양창환 ( Chang Hwan Yang ),최경민 ( Kyung Min Choi ) 한국물환경학회 2002 한국물환경학회지 Vol.18 No.6
In this study, a biofilter was applied to a municipal wastewater reuse system. It is an effective unit process in which the biological oxidation by the biofilm attached on the media and the filtration by the packed media happen simultaneously. First of all, the denitrification efficiency of this process was assessed according to the HRT, influent COD/N ratio, and media type. As a result, the effluent NO_3^--N concentration was less than 2 mg/L at the HRT 1∼3hr, and then denitrification efficiency ranged 74∼95 %. Without regard to the type of media used to pack biofilter, a maximum denitrification rate of about 164 g NO_3^--N/m^3-d was achieved with methanol, than the required COD/N ratio was close to 4.5 g COD/g NO_3^--N. And the biofilter was scaled up and operated for the treatment of the municipal wastewater passed through the biological advanced treatment. Under the filtration rate of 0.25∼0.5 m/hr, effluent SS concentration was less than 6 mg/L. If the filtration rate is increased, it have to increase that the media packed layer of the biofillter.
소규모 하수처리를 위한 파일럿 규모 이중슬러지 KNR<sup>®</sup> (Kwon's nutrient removal) 시스템의 영얌염류 제거성능 평가
안진영,권중천,김윤학,정유훈,김두언,유선호,김병우,An, Jin-Young,Kwon, Joong-Chun,Kim, Yun-Hak,Jeng, Yoo-Hoon,Kim, Doo-Eon,Ryu, Sun-Ho,Kim, Byung-Woo 한국청정기술학회 2006 청정기술 Vol.12 No.2
본 연구에서 소규모 하수고도처리를 위한 이중슬러지(Dual sludge) $KNR^{(R)}$ (Kwon's nutrient removal) 시스템이 개발되었다. $KNR^{(R)}$ 시스템은 부유성장식 탈질미생물과 부착성장식 질산화미생물을 분리시킨 이중슬러지 공정으로 최초침전조, 혐기조, 무산소조, 농축조의 복합기능을 수행하는 UMBR (Upflow multi-layer bioreactor)과 펠렛형 담체가 충진된 호기성 담체조로 구성되어 있다. 소규모 하수처리시 본 개발공정의 안정성과 처리성능을 평가하기 위해 처리용량 $50m^3/d$ 규모의 파일럿 플랜트를 고도처리 공정으로 개선공사 중인 처리용량 $50m^3/d$ 규모의 실제 소규모 마을하수처리장에 적용하였다. UMBR과 담체조의 체류시간은 각각 4.7 h와 7.2h이었으며, 반응조 수온은 $18.1{\sim}28.1^{\circ}C$이었다. 유입 하수량과 유입수의 BOD/N의 변동폭이 컸음에도 불구하고 파일럿 플랜트는 안정된 처리성능을 보였다. 전체 실험기간 중 처리수의 $COD_{cr}$, $COD_{Mn}$, $BOD_5$, TN, TP의 평균 농도는 11.0 mg/L, 8.8 mg/L, 4.2 mg/L, 3.5 mg/L, 9.8 mg/L, 0.87/0.17 mg/L (poly aluminium chloride(PAC) 투입/미투입)이었으며, 제거율을 각각 95.3%, 87.6%, 96.3%, 96.5%, 68.2%, 55.4/90.3% 이었다. 잉여슬러지 발생량은 $A_2O$와 Bardenpho 등과 같은 단일슬러지를 이용하는 고도처리공정과 비교시 약 1.9~3.8배 낮은 $0.026kg-DS/m^3$ and 0.220 kg-DS/kg-BOD로 나타났다. A simple dual sludge process, called as $KNR^{(R)}$ (Kwon's Nutrient Removal) system, was developed for small sewage treatment. It is a hybrid system that consists of an UMBR (Upflow multi-layer bioreactor) as anaerobic and anoxic reactor with suspended denitrifier and a post aerobic biofilm reactor, filled with pellet-like media, with attached nitrifier. To evaluate the stability and performance of this system for small sewage treatment, the pilot-scale $KNR^{(R)}$ plant with a treatment capacity of $50m^3/d$ was practically applied to the actual sewage treatment plant, which was under retrofit construction during pilot plant operation, with a capacity of $50m^3/d$ in a small rural community. The HRTs of a UMBR and a post aerobic biofilm reactor were about 4.7 h and 7.2 h, respectively. The temperature in the reactor varied from $18.1^{\circ}C$ to $28.1^{\circ}C$. The pilot plant showed stable performance even though the pilot plant had been the severe fluctuation of influent flow rate and BOD/N ratio. During a whole period of this study, average concentrations of $COD_{cr}$, $COD_{Mn}$, $BOD_5$, TN, and TP in the final effluent obtained from this system were 11.0 mg/L, 8.8 mg/L, 4.2 mg/L, 3.5 mg/L, 9.8 mg/L, and 0.87/0.17 mg/L (with/without poly aluminium chloride(PAC)), which corresponded to a removal efficiency of 95.3%, 87.6%, 96.3%, 96.5%, 68.2%, and 55.4/90.3%, respectively. Excess sludge production rates were $0.026kg-DS/m^3$-sewage and 0.220 kg-DS/kg-BOD lower 1.9 to 3.8 times than those in activated sludge based system such as $A_2O$ and Bardenpho.
신항식,권중천,구자공,Shin, Hang Sik,Kwon, Joong Chun,Koo, Ja Kong 대한토목학회 1988 대한토목학회논문집 Vol.8 No.2
본 연구는 SBR system에서 COD/N 변화에 따른 질소제거와 탈질화에 대한 탄소원으로서 폐수 내의 유기물의 이용을 조사하였다. 실험은 실험실에서 반응조 4개를 운전방식을 세가지로 변화시켜 행하였다. 세가지 운전방식의 차이로는 Mode I은 유입기간 동안 폭기하고 Mode II는 폭기를 중단한 상태에서 유입하였으며, Mode III는 폭기를 중단한 상태에서 1 cycle 동안 두 번 유입을 하였다. COD/N비가 증가되었을 때 총 질소 제거율은 Mode I에서 8.7에서 57.7%까지 증가되었고, Mode II에서는 28.9에서 83.2%까지, Mode III에서는 42.7에서 97.8%까지 증가되었다. COD 제거율은 전 실험기간 동안에 93에서 98%까지로 비교적 높았다. 1 cycle 동안 폭기를 하지 않은 상태에서 두 번의 유입을 하는 Mode III로 운전하는 것이 질소제거에서 가장 효과적인 방법으로 판명되었으며, 유출수에 포함된 질소농도는 유입수의 COD와 질소농도를 사용하여 추정할 수 있었다. This research investigated the effect of COD/N ratio on nitrogen removal, and the use of organics in raw wastewater as a carbon source for denitrification in SBR(Sequencing Batch Reactor) systems. Four laboratory scale reactors were operated in three modes. Only the difference between modes were; Mode I operated in aerated condition during fill while Mode II in anoxic condition and Mode III operated on two fills per cycle in anoxic condition. When COD/N ratio increased, total nitrogen removal efficiencies increased from 8.7 to 57.7 percent in Mode I, from 28.9 to 83.2 percent in Mode II and from 42.7 to 97.8 percent in Mode III, respectively. COD removal efficiencies ranged from 93 to 98 percent throughout the study. SBR operation in Mode III of feeding twice per cycle in anoxic condition was an effective operating method for nitrogen removal and nitrogen concentration in effluent can be estimated using influent COD and nitrogen concentrations.