• 제목/요약/키워드: High TOC concentration

검색결과 96건 처리시간 0.027초

고농도 고형 유기물질을 포함하는 가축 분뇨의 TOC 분석방법 평가 (Assessment of TOC Analysis Method for Livestock Manure including High Strength Solid Organics)

  • 이윤희;어성욱;김용석;박지형
    • 한국물환경학회지
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    • 제30권5호
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    • pp.512-516
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    • 2014
  • Two different methods for TOC (Total Organic Carbon) analysis of livestock manure including high strength solid organics were evaluated. Firstly, an analyzing method by dilution after pre-treated by Ultrasonicator and 100 mesh sieve for homogenization was defined as TOC 1; and secondly method divided by particulate organic carbon (POC) and dissolved organic carbon (DOC) was defined as TOC 2. 116 samples collected from 56 farms were analyzed in TOC1, TOC2, BOD and VSS. TOC1 method showed higher accuracy at less than 30,000 mg/L of TOC while TOC2 method presented significant reliability at over that concentration. Regarding to the sample with the same VSS concentration, the correlation between TOC 2 and VSS (${\rho}$: 0.806) was slightly higher than that between TOC 1 and VSS (${\rho}$: 0.784), resulted from a relatively low loss of solids and a low error probability (dilution and homogenization effects) in the analyzing procedures. In addition, the reliability between POC and VSS in TOC2 was high and the POC was about 4.4 fold that of the VSS. Consequently, TOC 2 without dilution effect was assessed as a proper method to increase the analyzing accuracy of swine manure including high solid organics.

낙동강 지류하천에서 TOC와 COD 유기물의 분포 비교 (Comparison of Organic Matter Distribution in Major Tributaries of the Nakdong River)

  • 김흥섭;홍종진;성진욱;최광순;박제철
    • 한국물환경학회지
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    • 제29권5호
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    • pp.618-624
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    • 2013
  • This study was conducted to suggest the concentration distribution of organic matters in 348 tributaries of Nakdong River, and to review the validity of the conversion of organic matter indexes. The average concentration of organic matters in the tributaries was TOC 2.4 mgC/L, DOC 2.1 mgC/L, COD 1.0 mgC/L, respectively. DOC ratio to TOC is 87% and COD ratio is 44%. First tributaries shows higher organic pollution than second tributaries. The correlation between TOC and COD was relatively high as 0.796 (p < 0.01, n = 670). Based upon these results, a regression analysis was conducted. The results showed that TOC concentration was 2.5 times higher than COD concentration. In conclusion, it is appropriate to use TOC for the management of all organic matters. Furthermore, there is a need to build organic matter-related Databases for more rivers so as to establish TOC standards and manage the water quality.

응집에 영향을 미치는 물리-화학 인자 (The effect of physicochemical factors on the coagulation process)

  • 김상구;류재익;류동춘;김정현
    • 상하수도학회지
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    • 제11권1호
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    • pp.81-87
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    • 1997
  • Coagulation is very important process in water works. The subsequent processes are directly affected by this process. Many factors such as turbidity, alkalinity, pH, hardness, total organic carbon(TOC), velocity gradient and flocculation time effect on coagulation process. Among these factors, specially TOC is being concerned target substance to be removed due to trihalomenthanes(THMs) precursor and alkalinity is being one of the major parameter for removing TOC. We have researched the consumption of coagulant with TOC alkalinity concentration of water and removal efficiency of residual TOC and turbidity with alkalinity. Furthermore we have investigated particle size distributions with velocity gradient and alkalinity. The consumption of coagulant was proportionally increased to TOC and alkalinity concentration and the removal of TOC in Nakdong river water was very difficult more than 150 mg/l in alkalinity but large morecular weight organic such as humic acid could be removed easily. Coagulation of low alkalinity water was more rapidly occured than of high alkalinity water by analyzing the particle size distributions. High alkalinity water needed higher mixing energy for a good coagulation within limited flocculation time.

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소규모 오수처리를 위한 $A_{2}O$ SBR과 $A_{2}O$ SBBR에서 유입 유기물 농도변화에 따른 염양염류 제거 특성 비교 (A Comparison of Nutrients Removal Characteristics by the Variation of Organics in $A_{2}O$ SBR and $A_{2}O$ SBBR for the Small Sewerage System)

  • 박영식;정노성;김동석
    • 한국환경보건학회지
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    • 제32권5호
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    • pp.451-461
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    • 2006
  • Laboratory scale experiments were conducted to study the conversion of sludge from conventional activated sludge to nitrogen-phosphorus removal sludge using two types of sequencing batch reactor (SBR) systems, a conventional SBR and sequencing batch biofilm reactor (SBBR). The nitrogen and phosphorus removal characteristics were similar between SBR and SBBR and the removal efficiencies were very low when the influent TOC concentrations were low. The nitrogen and phosphorus removal efficiencies in SBR were 96% and 77.5%, respectively, which were higher than those in SBBR (88% and 42.5%) at the high influent TOC concentration. In SBBR, the simultaneous nitrification-denitrification was occurred because of the biofilm process. The variations of pH, DO concentration and ORP were changed as the variation of influent TOC concentration both in SBR and SBBR and their periodical characteristics were cleary shown at the high influent TOC concentration. Especially, the pH, DO concentration and ORP inflections, were cleary occurred in SBR compared with SBBR.

혐기성 고정 생물막 공정에서 유입 농도의 변화에 따른 기질 전달 현상

  • 이덕환;김도한;박영식;윤태영;송승구
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2002년도 생물공학의 동향 (X)
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    • pp.351-354
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    • 2002
  • 부산광역시 수영 하수처리장의 소화조에서 농축조로 보내지는 혐기성 슬러지를 탈기된 증류수와 1:1로 희석하여 11.900 mg/L로 만든 후 혐기성 고정 생물막 반응기에 15일간 생물막을 부착시킨 후, 부유 슬러시를 제거하고 각 반응기에 각각 8.00 mgTOC/L, 9.76 mgTOC/L, 및 18.97mgTOC/L의 기질 농도를 유입하여 HRT 0.496일로 각 반응기에 연속적으로 주입하여 실험하였다. 기질 전달 현상과 관련하여 각 반응기에 대한 실험 결과는, 저농도로 기질이 유입된 반응기 l과 2에서는 생물막 두께 및 기질 제거율, 기질 소비 속도 상수($k_v$), 유효 확산 계수($D_{eff}$) 가 비슷하였으나, 고농도로 기질이 유입된 반응기 3에는 자농도로 기질이 유입된 반응기 1과 2 보다 높은 값을 나타내었다. 이는 본 실험에 사용된 혐기성 미생물이 고농도의 기질을 유입하였을 때, 더욱 원활하게 성장함에 따라 높은 기질 소비를 나타내었다.

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Water quality management strategy based on organic matter characteristics of streams and lakes in the Namhan River Watershed

  • Hyeonjong Youn;Chaewon Kang;Kyungik Gil
    • Membrane and Water Treatment
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    • 제15권3호
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    • pp.99-106
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    • 2024
  • This study developed an efficient management plan to improve the water quality by analyzing fluctuations in the ratio and amount of various organic substances in streams considering watershed characteristics and rainfall patterns. Monitoring was conducted on three streams and one lake over seven sessions during wet and dry seasons. Water quality indicators including total organic (TOC), refractory dissolved organic (RDOC), and particulate organic (POC) carbons were analyzed using high-temperature combustion oxidation. The three streams (Cheongmi, Yanghwa, and Bokha) displayed high TOC concentrations during the rainy season because the accumulated organic substances from the dry season were washed away by rainfall. By contrast, Paldang Lake exhibited a substantial decrease in TOC concentration due to dilution, which was influenced by watershed and rainfall characteristics. Across all streams and lakes, dissolved organic carbon (DOC) accounted for the highest proportion, at 77.5% of TOC, with RDOC making up 91% of DOC and 71% of TOC. Although POC contributed a small annual proportion to annual TOC, the concentration rapidly increased during late spring and early summer, with increases of 40.403%, 25.99%, and 27.388% in Cheongmi, Yanghwa, and Bokha, respectively. Continuous monitoring of RDOC is essential to identify seasonal fluctuations and changes due to rainfall events. Furthermore, intensive POC management during the rainy season, particularly in May and June, is potentially economical and efficient for water quality management.

낙동강에서 유기오염 및 SS 농도 변화에 따른 DOC 농도 변화의 특성 (Characteristics of Changes in DOC Concentration according to Concentrations of Organic Matter and Suspended Solids in the Nakdong River)

  • 이규열;김주언;이권철;이경락;이인정;임태효
    • 한국물환경학회지
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    • 제29권4호
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    • pp.540-550
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    • 2013
  • Temporal increase of SS induces concentrations in various forms of organic matter including BOD, COD, TOC. Consequently, it causes hard to identify sources of water pollution during or after precipitation. The objective of this study is to investigate variations of DOC concentration caused by increase of flow and changes of external factors in river by comparing to SS concentration. In results, monitoring sites (e.g., Banbyeonchen) consisting of hard riverbed showed high correlation between SS and organic matters, except BOD. On the contrary, other sites (e.g., Naesungcheon) where riverbed consists of sand were found in a wide range of annual fluctuation in SS level, whereas these sites showed a narrow range in annual DOC fluctuation. In Gumhogang and Namgang, a lower correlation between SS and other factors was found most likely because of high concentration in organic matter. However, lower annual fluctuation values of DOC were observed in comparison to those of COD and TOC. Similar results were also confirmed in main river sites, Sangju and Mulgeum. In conclusion, DOC concentration is better indicator for monitoring organic matter which cannot be provided by BOD, COD, TOC in the Nakdong river basin.

(AO)2 SBBR에서 운전주기에 따른 질소와 인 제거 특성 비교 (Characteristics of Nitrogen and Phosphorus Removal According to the Variation of Operating Cycles in (AO)2 SBBR)

  • 박영식;김동석
    • 한국환경과학회지
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    • 제16권1호
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    • pp.45-53
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    • 2007
  • This study was carried out to investigate the variation of organic, nitrogen and phosphorus in $(AO)_2$ SBBR process according to the variation of operating cycle at the high TOC concentration. The operation time in anoxic (anaerobic) time to oxic time was 1:1. Three lab-scale SBBRS were fed with synthetic wastewater based on glucose as carbon source, The variation of total TOC removal was similar each other irrespective of operation time, however, the TOC concentrations in SBBRs showed a little difference according to the operating condition. In SBBR, complete nitrification was not occurred at all reactors, however, R3 showed a higher nitrification than R2. And in SBBR, the variation of operating time more affected at phosphorus removal than nitrogen removal. R2 which had the shortest time at the 1st aeration time showed the lowest phosphorus release and uptake efficacy.

하수처리장 방류수에서 TOC와 COD 유기물관리 (Management of TOC and COD Organic Matter of Effluents in Sewage Treatment Plants)

  • 황석호;박제철
    • 한국환경과학회지
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    • 제27권4호
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    • pp.261-266
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    • 2018
  • In this study, the organic matter of effluents from sewage treatment plants, located in the Nakdong watershed was investigated. Regression equations were computed using treated sewage data to convert the chemical oxygen demand(COD) concentrations, which are mostly available from an open database, into total organic carbon(TOC) concentrations. The average concentration of organic matter in the sewage treatment plant effluents were 2.2~16.8 mg/L for COD and 3.4~14.3 mg/L for TOC. The concentrations of COD were positively correlated with the TOC concentrations. The correlation between COD and TOC was relatively high, at 0.865(p<0.01). Based on these results, regression analysis was conducted. The regression equation for TOC was $1.651{\times}COD_{Mn}-0.084$ ($R^2=0.84$). Furthermore, organic matter-related databases for more sewage treatment plants need to be built in order to establish TOC standards and manage the water quality.

수중(水中) 수은(水銀) 및 鉛(연)의 농도(濃度)가 BOD값에 미치는 영향(影響)에 관(關)하여 (Effect of Mercury and Lead on the Biochemical Oxygen Demand (BOD))

  • 문재동
    • Journal of Preventive Medicine and Public Health
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    • 제17권1호
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    • pp.217-221
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    • 1984
  • In order to estimate interfering effects of mercury and lead on biochemical oxygen demand (BOD), BOD in 18 effluent samples were measured under three different concentrations of mercury and lead. The results obtained were as follows: 1. Biochemical oxygen demand(BOD) was decreased under the presence of mercury and lead, with parallel correlation of mercury concentration. 2. High correlations were noted between original BOD concentration and decreasing amount of BOD when concentrations of mercury or lead were increased. 3. When the lead concentration was high, the close correlation was observed between total organic carbon(TOC) and decreasing amount of BOD. 4. There was a negative correlation between TOC/BOD ratio and decreasing amount of BOD when the mercury concentrations were high.

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