• Title/Summary/Keyword: SCOD

Search Result 177, Processing Time 0.029 seconds

Piggery Slurry Composting Using Batch Operating Autothermal Thermophilic Aerobic Digestion System

  • Ahn, Hee K.;Choi, Hong L.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • v.19 no.2
    • /
    • pp.273-279
    • /
    • 2006
  • The performance of an autothermal thermophilic aerobic digestion (ATAD) system was studied to determine if nitrogen loss, as ammonia, was affected by an exhaust gas condenser. The system was run with and without a condenser while treating $8m^3$ of piggery slurry for 8 days. The system with a condenser (SWC) maintained the reactor temperatures above $40^{\circ}C$ for 2 days during the 8 days run, while the system without a condenser (SWOC) remained above $40^{\circ}C$ for 6 days. The SWC maintained the reactor temperatures mostly at mesophilic conditions while the SWOC at thermophilc conditions. Differences in operation conditions for the two runs were mainly caused by differences in atmospheric temperatures. Soluble chemical oxygen demand (SCOD) and volatile solids (VS) removal efficiencies of the SWC (SCOD: 62%, VS: 41%) were higher than those of the SWOC (SCOD: 40%, VS: 20%). The total Kjeldal nitrogen (TKN) removal efficiency of the SWC (7%) was less than that of the SWOC (25%). The concentration of total volatile fatty acids (VFA) in the SWC was observed to be lower than the threshold value of 0.23 g total VFA/L after 6 days, while the SWOC progressed below the threshold value after 3 days. No offensive odor emissions were observed in either run, which suggest that the use of the ATAD system may be a good odor removal strategy.

Comparison of Sewage Sludge Solubilization through Different Pretreatment Methods (전처리 방법에 따른 하수슬러지 가용화 비교연구)

  • Kwon, Jae-Hyun;Kim, Bong-Jun;Kim, Min-Kyu;Yeom, Ick-Tae;Kim, Hyung-Soo
    • Journal of Korean Society of Water and Wastewater
    • /
    • v.17 no.4
    • /
    • pp.567-573
    • /
    • 2003
  • The pretreatment process was carried out to solubilize the sewage sludge for enhancing its biodegradability using alkaline treatment, ultrasonic treatment(15kHz), ozone treatment and different combination of these three methods: alkaline followed by ultrasonic as well as ozone, and ultrasonic followed by alkaline. The solubilization efficiency was evaluated based on the SCOD/TCOD ratio and VSS/TS ratio. In results, the proper condition of alkaline treatment was shown as 30meq/l of NaOH, pH 12 and 3hours of reaction time. Solubilization efficiency increased to 17% from initial 2% based on SCOD/TCOD ratio under this condition. In ultrasonic treatment, the higher ultrasonic power, the longer treatment time and the lower sludge volume resulted in higher solubilization respectively. There was a rapid increase in solubilization efficiency after 20 minute, then it was measured as 32% of SCOD/TCOD ratio in 1 hour at a ultrasonic power of 1,300W with 1/sludge. Solubilization efficiencies in combined treatment using alkaline and ultrasonic were 47-53% higher than single treatment at a sonicated time of 1 hour. Ozone treatment followed by alkaline treatment also represented the enhanced solubilization compared to ozone treatment. Therefore, ultrasonic or ozone treatment assisted by alkaline could achieve the short treatment time as well as high solubilizetion efficiency.

Livestock Wastewater Treatment by Zeolite Ion Exchange and Gamma-ray Irradiation (제올라이트와 감마선을 이용한 축산 폐수 처리)

  • Lee, Sang-Ryul;Kim, Tak-Hyun;Lee, Myun-joo
    • Journal of Radiation Industry
    • /
    • v.2 no.1
    • /
    • pp.9-14
    • /
    • 2008
  • Livestock wastewater containing high concentrations of organic matters and ammonia-nitrogen has been known as one of the recalcitrant wastewater. It is difficult to treat by conventional wastewater treatment techniques. This study was carried out to evaluate the feasibility of zeolite ion exchange and gamma-ray irradiation treatment of livestock wastewater. The removal efficiencies of $SCOD_{Cr}$ and $NH_3-N$ were significantly enhanced by gamma-ray irradiation after zeolite ion exchange as a pre-treatment. However, the effects of zeolite particle size on the $SCOD_{Cr}$ and $NH_3-N$ removal efficiencies were insignificant. These results indicate that the combined process of zeolite ion exchange and gamma-ray irradiation has potential for the treatment of livestock wastewater.

A Study on the treatment efficiency of A2O Process coupled with Mesh Screening Reactor (Mesh Screening Reactor와 결합된 A2O 공정의 처리효율에 관한 연구)

  • Whang, Gye-Dae;Lim, Dong-Min
    • Journal of Korean Society of Water and Wastewater
    • /
    • v.22 no.6
    • /
    • pp.705-714
    • /
    • 2008
  • Three Mesh Screenning Reactors (MSRs) were operated in three different modes to investigate the effect of the mesh opening size and the filtrate flux on the removal of particulate matters and the production of soluble organic matters. The mesh opening size was $82{\mu}m$ (Mode 1), $61{\mu}m$ (Mode 2) and $38{\mu}m$ (Mode 3), respectively, and each mode has three different filtrate flux; $0.47m^3/m^2/d$, $0.95m^3/m^2/d$ and $1.42m^3/m^2/d$, respectively. TSS removal efficiency of mode 1, 2, and 3 fed with 191 mgTSS/L was 27%, 36%, and 60%, respectively. The SCOD concentration of 91mg/L in influent for the mode 1, 2, and 3 increased to 117 mg/L, 127 mg/L, and 155 mg/L, respectively. For the all MSRs, there was no significant effect of filtrate flux on the removal of particulate matters and the production of soluble organic matters. However, the mesh opening size greatly affected the removal of particulate matters and the production of soluble organic matters in wastewater. Three parallel A2O processes consisting of anaerobic, anoxic and aerobic reactors maintaining mixed liquor suspended solids (MLSS) of 3,000 mg/L were operated to investigate the effectiveness of MSR on the removal efficiencies of the organic matters, nitrogen, and phosphorus; MSR influent was introduced to System 1 (183 mgTSS/L, 324 mgTCOD/L, 87 mgSCOD/L, 45.2 mgTKN/L, and 6.6 mgTP/L) and MSR efluent was introduced to System 2 and 3(72 mgTSS/L, 289 mgTCOD/L, 141 mgSCOD/L, 40.2 mgTKN/L, and 4.2 mgTP/L). HRTs of the anaerobic reactors in systems 1, 2 and 3 were 1 h, 1 h and 0.6 h, respectively and anoxic reactors were 2 h in all systems. HRTs of the aerobic reactors in systems 1, 2 and 3 were 5 h, 3 h and 3 h, respectively. TSS concentration in effluent of both system 2 and 3 is about 8 mg/L and lower than that of system 1 effluent. Despite higher TCOD loading and SCOD loading, both Systems 2 and 3 had a greater TCOD and SCOD removal efficiency at 91% and 92% than System 1 was at 88% and 82%, respectively. The nitrification efficiency for system 2 was greater than observed for System 1 (99% verses 97%). The denitrification efficiency for systems 1, 2 and 3 was 78%, 88% and 87%, respectively. System 2 and 3 showed about 12% higher TN removal efficiency than system 1 (85% verses 73%). The effluent TP concentration for system 2 was less than observed for system 1 and 3.

Solubilization of Dairy Sludge using Ultrasonic Pretreatment (초음파를 이용한 유가공 슬러지의 가용화)

  • Moon, Sang Jae;Jeon, Byeong Cheol;Choi, Jin Taek;Nam, Se Yong
    • Journal of Dairy Science and Biotechnology
    • /
    • v.35 no.4
    • /
    • pp.244-248
    • /
    • 2017
  • The effects of ultrasonic (1.2~1.7 kJ/g TS) pretreatment on the solubilization of dairy and livestock sludge were separately evaluated to investigate the possibility of recycling dairy sludge as a potential source of organic carbon. Compared to other industrial wastewater and sewage sludge, dairy sludge has higher organic matter content and no toxic materials. The solubilization rates of dairy and livestock sludge, at a specific energy input of 1.7 kJ/g TS, were 14.5% and 10.6%, respectively. After the 90-minute ultrasonic treatment, the soluble COD (chemical oxygen demand) increased about 7.1 times that of the initial SCOD, at an increase rate of $0.022m^{-1}$. In comparison, the increase in soluble nitrogen, which was ~3.4 times that of the initial soluble nitrogen concentration, was much smaller than the increase in SCOD; thus, the C/N ratio increased from 4.0 to 8.7.

Development of New BNR Process Using Fixed-Biofilm to Retrofit the Existing Sewage Treatment Plant (고정생물막을 이용한 기존 하수처리장의 생물학적 영양염 제커 신공정개발)

  • Kim, Mi-Hwa;Lee, Ji-Hyung;Chun, Yang-Kun;Park, Tae-Joo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.22 no.6
    • /
    • pp.1093-1101
    • /
    • 2000
  • The object of this study was to develop new BNR process using fixed-biofilm which could be applied to retrofit the existing wastewater treatment plant or to introduce as tertiary treatment plant. To achieve complete denitrification from typical raw sewage in Korea, external carbon source must be supplied because $SCOD_{cr}/T-N(NH_4{^+}-N+NOx-N)$of raw sewage was lower than other countries. In this study, the ratio of $SCOD_{cr}/NH_4{^+}-N$ was 2.49 and the influent $NH_4{^+}$-N concentration during the experimental period was varied from 25 to 37 mg/L. To enhance nitrogen removal from the sewage, the two processes using fixed biofilm were adopted as R-Hanoxic/mid.settler/aerobic/anoxic/ aerobic) and R-2(aerobic/mid.settlerlanoxic/anoxic/aerobic), respectively. In the comparison of $NH_4{^+}$-N, T-N effluent quality and T-N removal efficiency in both processes without external carbon source, R-1 process was better than R-2 process for nitrogen removal from raw sewage. With respect to $SCOD_{cr}$/NOx-N ratio and total nitrogen removal in each anoxic reactor of two processes, R-1's was more effective than R-2's for distributing organic matters of raw sewage. In the both processes using fixed biofilm, the amount of required alkalinity to remove unit $NH_4{^+}$-N were 5.18 and 5.76($g{\cdot}CaCO_3/g{\cdot}NH_4{^+}-N_{removed}$), respectively and were lower than activated sludge BNR process(7.14).

  • PDF

유기물부하에 따른 음식물지꺼기의 산발효

  • Jang, Seong-Ho;An, Cheol-U;Park, Jin-Sik;Mun, Chu-Yeon
    • Proceedings of the Korean Environmental Sciences Society Conference
    • /
    • 2006.05a
    • /
    • pp.355-357
    • /
    • 2006
  • 본 연구에서는 산생성효율의 최적 운전인자 도출을 위하여 중온 및 고온혐기성산발효공정에서의 유기물부하에 따른 산발효 효율을 비교 검토하였으며, 다음과 같은 결론을 얻었다. 유기물 부하별로 고온과 중온 조건에서 실험을 진행했을 때 VFA생성과 pH변화를 비교했을 때, 고온 조건이 중온조건보다 더 높은 부하율에서 운전이 가능한 것으로 나타났으며, 생성되는 VFA의 농도도 더 높은 것으로 나타났으며, pH의 변화는 고온 조건에서 4.8$\sim$6.2, 중온 조건에서 5.8$\sim$6.7로 고온에서 중온보다 pH가 낮게 나타났다. 고온과 중온에서 유기물 부하별로 산발효시 생성된 유기산의 구성성분을 비교했을 때, 고온에서 생성된 유기산이 중온보다 acetic acid의 비율이 높은 것으로 나타났다. 음식물찌꺼기 고온 산발효액의 성상에서 $SCOD_{Cr}$/TKN, $SCOD_{Cr}$/T-P이 각각 18.9, 73.4로 나타나 하수처리장에서 저부하 유기물 유입시에 탄소원으로 충분히 활용 가능한 것으로 판단된다.

  • PDF

Respirometry for COD Fractionation of Wastewater (미생물 호흡률 분석에 의한 하수의 유기물 분류)

  • Choi, Younggyun;Kim, Gyudong;Kim, Heejun;Kim, Yunjung;Chung, Taihak
    • Journal of Korean Society of Water and Wastewater
    • /
    • v.17 no.4
    • /
    • pp.503-509
    • /
    • 2003
  • COD fractionation of primary settled municipal wastewater was conducted by respirometry. RBCOD (Readily Biodegradable COD) fraction was analyzed to be 21% of influent TCOD. However, SCOD fraction, analyzed by physical separation using $0.45{\mu}m$ membrane filter, was about 31% of TCOD. Therefore, 10% of soluble inert COD was comprised in TCOD. It means that kinetic analysis of activated sludge system was impossible because serious error would be occurred if SCOD was used as a biodegradable soluble component instead of RBCOD estimated from respirometry. In this study, RBCOD fraction of raw wastewater could be analyzed by respirometry within the error range of 57%. In addition, SBCOD (Slowly Biodegradable COD) content could be determined by kinetic simulation of the experimental results. SBCOD showed about 2-fold higher fraction (38% of TCOD) as compared with RBCOD.

Acid Fermentation Characteristic of Food Wastes According to the Organic Loading Rate (유기물부하에 따른 음식물찌꺼기의 산발효 특성)

  • Park, Jin-Sik;Ahn, Chul-Woo;Jang, Seong-Ho
    • Journal of Environmental Science International
    • /
    • v.15 no.10
    • /
    • pp.975-982
    • /
    • 2006
  • This study has been conducted to optimum operating conditions for effective acid fermentation according to OLR(organic loading rate) in the mesophilic and thermophilic acid fermentation process. The results are summarized as follows. In order to obtain reasonable acid fermentation efficiency in performing acid fermentation of food wastes in thermophilic condition, organic loading rate was required below 20 gVS/L.d. As $SCOD_{Cr}/TKN,\;SCOD_{Cr}/T-P$ of thermophilic acid fermented food wastes In organic loading rate 20 gVS/L.d were 18.9, 73.4 respectively, it was possible to utilize as external carbon source for denitrification in sewage treatment plant after solid-liquid separation as well as co-digestion of fermented food wastes and sewage sludge.

Impact of Irradiation Time on the Hydrolysis of Waste Activated Sludge by the Dielectric Heating of Microwave

  • Byun, Imgyu;Lee, Jaeho;Lim, Jisung;Lee, Jeongmin;Park, Taejoo
    • Environmental Engineering Research
    • /
    • v.19 no.1
    • /
    • pp.83-89
    • /
    • 2014
  • The effects of initial solid concentration and microwave irradiation (MWI) time on the hydrolysis of waste activated sludge (WAS) were investigated. MWI time strongly influenced WAS hydrolysis for all initial solid concentrations of 8.20, 31.51, and 52.88 g VSS/L. For all WAS, the volatile suspended solids (VSS) solubilization degree ranged from 35.6% to 38.4% during a total MWI time of 10 min. Soluble chemical oxygen demand (SCOD) concentration increased at a rate proportional to the decrease of VSS during the MWI. However, the clearly different VSS solubilization patterns that were observed during the MWI were explained by the 2-step hydrolysis of WAS, consisting of the initial disintegration of the easily degradable part of the sludge, followed by the subsequent disintegration of the hardly degradable part of the sludge. WAS hydrolysis rates for 3 to 6 min of MWI were significantly lower than those for less than 3 min, or more than 6 min. From these results, 3 min MWI time and WAS of 31.51 g VSS/L (centrifugal thickener WAS) showed the most efficient hydrolysis of WAS at 36.0%. The profiles of total nitrogen (T-N) concentrations corresponded well to the SCOD increases in terms of the empirical formula of bacterial cell mass ($C_5H_7O_2N$). The negligible T-N increase and pH decrease during WAS hydrolysis by MWI will allow the application of this process to subsequent biological processes, such as anaerobic digestion.