• 제목/요약/키워드: NOM removal

검색결과 66건 처리시간 0.018초

완속여과공정에서 운전시간 및 여층깊이에 따른 자연유기물질(NOM) 제거 특성 (Removal characteristics of NOMs in a slow sand filter at different media depth and operation time)

  • 박노백;박상민;서태경;전항배
    • 상하수도학회지
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    • 제22권4호
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    • pp.467-473
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    • 2008
  • Natural organic matter (NOM) removal by physico-chemical adsorption and biological oxidation was investigated in five slow sand filters with different media depths. Non-purgeable dissolved organic carbon(NPDOC) and $UV_{254}$ absorbance were measured to evaluate the characteristics of NOM removal at different filter depths. Removal efficiency of NOM was in the range of 10-40% throughout the operation time. At start-up of the filters packed with clean sand media, NOM was probably removed by physico-chemical adsorption on the surface of sand through the overall layer of filter bed. However, when Schumutzdecke layer was built up after 30 days operation, the major portion of NPDOC was removed by biological oxidation and/or bio-sorption in lower depth above 50 mm. NOM removal rate in the upper 50 mm filter bed was $0.82hr^{-1}$. It was about 20 times of the rate($0.04hr^{-1}$) in the deeper filter bed. Small portion of NPDOC could be removed in the deeper filter bed by both bio-sorption and biodegradation. SEM analysis and VSS measurement clearly showed the growth of biofilm in the deeper filter bed below 500 mm, which possibly played an important role in the NOM removal by biological activity besides the physco-chemical adsorption mechanism

Ion Exchange Processes: A Potential Approach for the Removal of Natural Organic Matter from Water

  • Khan, Mohd Danish;Ahn, Ji Whan
    • 에너지공학
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    • 제27권2호
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    • pp.70-80
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    • 2018
  • Natural organic matter (NOM) is among the most common pollutant in underground and surface waters. It comprises of humic substances which contains anionic macromolecules such as aliphatic and aromatic compounds of a wide range of molecular weights along with carboxylic, phenolic functional groups. Although the concentration of NOM in potable water usually lies in the range of 1-10 ppm. Conventional treatment technologies are facing challenge in removing NOM effectively. The main issues are concentrated to low efficiency, membrane fouling, and harmful by-product formation. Ion-exchangers can be considered as an efficient and economic pretreatment technology for the removal of NOM. It not only consumes less time for pretreatment but also resist formation of trihalomethanes (THMs), an unwanted harmful by-product. This article provides a comprehensive review of ion exchange processes for the removal of NOM.

RO 및 NF막에서의 부식질에 의한 Fouling 및 미량오염물질의 제거 (NOM fouling and Removal of Micro-pollutants in RO and NF Membrane processes)

  • 왕창근;차준철;이용현;김수동;류주환
    • 상하수도학회지
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    • 제18권1호
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    • pp.73-80
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    • 2004
  • This study investigated the phenomena of membrane fouling by NOM and the effect of the fouling on removal of micro-pollutants. NOM has a great effect on decline of permeate flux. Permeate flow rate was reduced by 88% in RO and 34.8% in NF for 323hr operation period. Removal rate of $UV_{254}$, is 87.4% in RO and 78.5% in NF and removal rate of DOC is 42.7% in RO and 32.9% in NF for 2mg/l humic acid. Removal efficiency of the micro-pollutants by the RO and NF membranes fouled by humic acid was mostly lower than that by the new membrane. The concentration polarization which affects the flux and the rejection was thought to occur in the active layer of the membrane, as the membrane was getting fouled.

세라믹막(MF) 고도정수처리에서 NOM 제거 특성 (Removal characteristics of NOM in advanced water treatment using ceramic MF membrane)

  • 유상준;박성한;임재림;서정민;장성호;홍성철;이병인
    • 상하수도학회지
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    • 제28권4호
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    • pp.367-376
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    • 2014
  • This study assessed the removal efficiency of NOM which is known as the precursors of DBPs in advanced water treatment using the ceramic membrane filtration, introduced the first in the nation at the Y water treatment plant (WTP). It is generally well-known that the removal of NOM by MF Membrane is very low in water treatment process. But, the result of investigation on removal efficiency of NOM in advanced water treatment using the ceramic membrane was different as follows. The removal rate of organic contaminant by the ceramic membrane advanced water treatment was determined to be 65.5% for the DOC, 85.8% for UV254, and 77 to 86% for DBPFP. The removal rate of pre-ozonation was found to be 6 to 15% more effective compared with the pre-chlorination. The removal rate of DOC and $UV_{254}$ in biological activated carbon(BAC) process was over 50% and 75%, respectively although the rate was decreased 10 ~ 20% according to analysis items in converting from GAC to BAC.

생물활성탄처리에서 제거된 유기물 특성 (Characterization of Organic Matters Removed by Biological Activated Carbon)

  • 김우항;오카다미츠마사
    • 한국환경과학회지
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    • 제16권6호
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    • pp.671-675
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    • 2007
  • The objective of this study was to clarify the characteristics of the removed micropollutant since the breakthrough of adsorption ability was occurred in biological activated carbon(BAC) process. The removal efficiency of DOC (Dissolved Organic Carbon) was 36 % in the breakthrough of BAC occurred by NOM (Natural Organic Matter). The most of removal DOC was found out the adsorbable and biodegradable DOC (A&BDOC). But it was not clear to remove by any mechanism because A&BDOC have simultaneously the adsorption of activated carbon and biodegradation by microorganism in BAC. The removal of bromophenol was examined with BAC and rapid sand filter, for investigation of DOC removal mechanism in the breakthrough of BAC. In this experiment, BAC filter has been operated for 20 months for the treatment of reservoir water. The BAC filter was already exhausted by NOM. Bromophenol, adsorbable and refractory matter, was completely removed by BAC filter. Therefore, it might be removed by the adsorption in BAC. Adsorption isotherms of bromophenol were compared to two BACs which was preloaded with 500 daltons and 3,000 daltons of NOM. BAC preloaded with 3,000 daltons of NOM was not decreased to the adsorbability of bromophenol but BAC preloaded with 500 daltons of NOM was greatly decreased to it. These result indicated that NOM of low molecular weight can be removed by adsorption after a long period of operation and the breakthrough by NOM in BAC. Therefore, micropollutants might be removed through adsorption by saturated BAC.

정수처리시 천연유기물질의 제거에 대한 급속혼화유형의 영향 (Influence of Different Mixing Types on the Removal of Natural Organic Matter in Water Treatment)

  • 김현철;유명진;이석헌
    • 상하수도학회지
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    • 제19권3호
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    • pp.370-377
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    • 2005
  • Dispersion of coagulant should be completed in a fraction of a second before the metal hydroxide precipitate has form. For the reason so-called pump diffusion flash mixing (PDFM) have been proposed, and PDFM is one of reasonable methods to quickly disperse the hydrolyzing metal salts. In this study, therefore, we attempt to understand the difference of removal characteristics of natural organic matter (NOM) between pump diffusion flash mixing (PDFM) and conventional rapid mixing (CRM) for coagulation in a water treatment system, and to enhance the removal of NOM through the improved mixing process. DOC and turbidity removal by PDFM higher than those by CRM, while SUVA value of water treated by PDFM was high as compared with that by CRM. Hydrophilic NOM was more effectively removed by PDFM than CRM, since charge neutralization effect increased by quick dispersion of coagulant. The DBP formation potentials due to NOM was effectively reduced by the improved mixing (i.e., PDFM) for coagulation and could be controlled through decrease in concentration of precursor rather than reduction of activity with disinfectant.

Natural Organic Matter Removal and Fouling Control in Low-Pressure Membrane Filtration for Water Treatment

  • Cui, Xiaojun;Choo, Kwang-Ho
    • Environmental Engineering Research
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    • 제19권1호
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    • pp.1-8
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    • 2014
  • Natural organic matter (NOM) is a primary component of fouling in low-pressure membrane filtration, either solely, or in concert with colloidal particles. Various preventive measures to interfere with NOM fouling have been developed and extensively tested, such as coagulation, oxidation, ion exchange, carbon adsorption, and mineral oxide adsorption. Therefore, this article aims to conduct a literature review covering the topics of low-pressure membrane processes, NOM characteristics and fouling behaviors, and diverse fouling control strategies. In-depth explanations and discussion are made regarding why some treatment options are able to remove NOM from source water, but do not reduce fouling. This review provides insight for hybridized membrane processes with respect to NOM removal and fouling mitigation in water treatment.

광촉매 반응과 침지형 정밀여과를 이용한 자연산 유기물의 제거 (Use of a Combined Photocatalysis/Microfiltration System for Natural Organic Matter Removal)

  • 추광호;박경원;김문현
    • 멤브레인
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    • 제14권2호
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    • pp.149-156
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    • 2004
  • 본 연구에서는 광촉매 반응과 막분리 기술을 접목시킨 혼성 고도 정수처리 공정에서 소독 부산물의 전구체로 알려진 자연산 유기물을 효과적으로 제거하고자 하였고 다양한 운전 조건에서 시스템의 성능을 비교 평가하였다. 자연산 유기물은 흡입여과 방식의 분리막과 TiO$_2$ 광촉매를 이용하여 광분해하였을 때 광촉매 투입량의 증가에 따라 반응속도가 증가하였지만 과량의 촉매 주입시에는 반응 속도 향상에 오히려 부정적으로 작용하였다. 자연산 유기물을 보다 효과적으로 제거하기 위해 산화철 주입, TiO$_2$ 표면처리, 분리막 표면코팅을 시도하여 제거특성 및 운전에 따른 막여과 특성을 평가하였다. 산화철 주입은 초기에 흡착작용으로 인해 제거율 증가를 보였으나 반응이 진행됨에 따라 산화철 입자에 의한 광산란으로 광분해 효율이 오히려 감소되었다. 산화철 입자에 의한 광산란을 제어하고자 TiO$_2$ 표면을 광처리와 열처리 방법을 이용해 철을 직접 부착시킨 경우 긍정적인 효과를 얻지 못했다. 그러나 산화철로 막표면을 코팅하여 광산란 효과를 배제시킨 경우에는 향상된 결과를 보였다 막투과 플럭스 15 L/$m^2$-h에서 정밀여과를 수행하였을 때 TiO$_2$나 산화철에 의한 막오염은 거의 일어나지 않았고 안정된 막투과도를 나타내었다.

산화철 나노입자 표면개질 분말활성탄 유동층에 의한 MF 막 분리 공정의 운전 및 NOM 제거 효율 향상 (Effect of Fluidized Bed Powdered Activated Carbon Impregnated by Iron Oxide Nano-particles on Enhanced Operation and NOM Removal of MF Membrane System)

  • 김성수;서규태
    • 대한환경공학회지
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    • 제33권5호
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    • pp.332-339
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    • 2011
  • 본 연구는 자력분리와 중력분리의 특징을 가진 산화철 나노입자 표면개질 분말활성탄에 의한 MF막 분리 공정의 운전 및 NOM 제거 효율에 미치는 영향을 알아보았다. MF막의 전처리로 표면개질 PAC 유동층 칼럼을 구성하였으며, 표면개질 PAC층은 63 m/d의 유속에서 표면개질 PAC 입자가 유출되지 않은 최대의 유속을 유지하였고, 이 때 접촉시간은 29분이었다. 유동상칼럼 상단에는 경자성체(magnet)를 설치하여 부유하는 미세한 입자의 유출을 방지하였다. 직렬로 구성한 표면개질 PACMF 결합공정에서 표면개질 PAC 칼럼을 통하여 MF막의 파울링 저감과 NOM 제거효율의 상당한 향상을 보였다. MF막만을 이용하였을 때에 막 차압은 98시간 만에 적정운전범위인 40 kPa이 초과되었으나, 표면개질 PAC 칼럼을 함께 구성하였을 때 막 차압은 여전히 12 kPa의 안정적으로 유지되었다. NOM의 제거효율 또한 표면개질 PAC의 전처리를 통해서 DOC와 $UV_{254}$가 각각 46%와 51%에서 75%와 84%로 상승하였다. 시스템 내 NOM의 제거현상을 알아보기 위한 HPLC-SEC 분석을 통해서 표면개질 PAC는 광범위한 분자량을 가진 유기물의 효과적인 제거가 가능한 것을 알 수 있었다.

고효율 오존장치를 이용한 NOM 제거 및 Bromate 생성 특성 (Investigation on Bromate Formation and Removal of NOM during Ozonation in Super Ozone Mass Transfer Reactor)

  • 송기주;최일환;백경희;이상태
    • 한국물환경학회지
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    • 제22권6호
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    • pp.1137-1143
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    • 2006
  • In this study we investigated the removal characteristics of NOM and bromate formation characteristics in SOMT reactor. The system was recently developed as a novel ozone reactor and installed in SJ pilot plant. DOC values were decreased within 3% after treatment of 0.5~2.0 mg/L ozone dosage in SOMT reactor while the $UV_{254}$ value was 69% decreased at 2.0 mg/L ozone dosage. The composition of NOM was analysed by LC-OCD (Organic Cabon Detector) after ozone treatment in SOMT reactor to elucidate the variation of NOM character. Polysaccharide (more than 20,000 g/mol) fraction of NOM was decomposed while building blocks (350~500 g/mol) and neutral (less than 350 g/mol) fraction increased. Spiked bromide reacted with 0.5~2.0 mg/L ozone dosage in the SOMT reactor. The bromate formation was proportional to the ozone dosage ($R^2=0.978$) but not proportional to reaction time. The maximum concentration of formated bromate was not exceeded to 10% of spiked bromide concentration.