• 제목/요약/키워드: dyeing effluent

검색결과 29건 처리시간 0.026초

염색폐수 방류수 수질개선을 위한 고도산화처리에 관한 연구 (Study on characteristic of Advanced oxidation process for improvement of dyeing wastewater effluent quality)

  • 이상헌;박준형;신동훈;류승한
    • 한국염색가공학회:학술대회논문집
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    • 한국염색가공학회 2012년도 제46차 학술발표회
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    • pp.118-118
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    • 2012
  • 현재 정부는 친환경녹색성장을 모티브로 환경기준을 강화하고 있으며, 오염 발생원을 최소화 하고자 현재 가동중인 환경기초시설을 대상으로 고도산화공정을 추가하여 오염 배출량을 최소화 하도록 정부와 지자체가 독려하고 있는 중이다. 따라서 대표적인 환경오염 업종인 섬유/염색 관련업체는 강화되는 환경기준을 만족하기 위한 공정검토가 불가피한 현실이다. 특히 대구 OO염색공단은 염색업체가 집적되어 있어 난분해성 오염물질과 색도유발물질이 다량 발생되고 있으며, 폐수처리장에서 운영 중인 재래식 폐수처리공정으로는 강화되는 방류수 수질기준을 충족할 수 없다. 따라서 본 연구에서는 방류수 수질기준을 만족하기 위한 고도산화 공정을 검토하였으며, 그 공정의 최적인자를 도출하고자 하였다. 고도산화 공정에서 오존산화, Peroxone AOP, Fenton oxidation 공정을 검토하였으며, 강화되는 수질기준을 만족할 수 있는 최적인자 및 처리효율을 검토하였다. 그 결과 조건에 따라 COD, T-N, T-P, 색도 등에서 처리효율은 40 ~ 90% 범위로 경제성을 고려하여 최적의 운전조건을 도출 하였다.

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자화-생물처리 시스템에 의한 염색폐수의 처리 (Treatment of Dyeing Wastewater by Magnetic-Biological Treatment System)

  • 이선하
    • 한국환경과학회지
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    • 제19권3호
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    • pp.371-377
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    • 2010
  • The purpose of this study is to investigate treatment efficiency in dyeing wastewater treatment by the high rate aeration system(HRA) and a combination of the HRA with magnetized wastewater treatment system(MWS). At the hydraulic retention time of 16hr, 24hr, 30hr, BOD removal efficiencies of HRA system were 93%, 96% and 98%, combination of the HRA with MWS system were 94%, 96.8% and 98.2%, respectively. In ease of COD, at the hydraulic retention time of 16hr, 24hr, 30hr, COD removal efficiencies of HRA system were 66%, 77.1% and 83.1%, combination of the HRA with MWS system were 70.2%, 80.1% and 86.6%, respectively. The comparison of the HRA and combination of the HRA with MWS, effluent BOD of the former was 22.7mg/${\ell}$ and the latter was 19.4mg/${\ell}$, theretore biological treatment efficiency identified to increase by the MWS.

염색가공분야에서 청정생산활동 접금방법 (Cleaner Production System in Dyeing & Finishing Its Approaching Mehods)

  • 이혜정;남창우;박영환
    • 청정기술
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    • 제9권2호
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    • pp.87-100
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    • 2003
  • 본 연구는 청정생산기술의 개념을 염색가공분야에 도입시키기 위한 방법론을 제시한 것이다. 먼저 각 분야별 전문가로 이루어진 진단지도팀을 구성하여 대상업체에서 진행중인 제조공정 진행상태를 파악하고 사용하는 원부자재의 성능 및 환경적 분석과 폐수의 환경적 분석을 실시하였다. 원부자재(조제 및 염료)의 환경성은 TOC, CODMn, CODCr, $BOD_5$의 항목으로 평가하였고, 발생되는 폐수는 TOC, CODMn, CODCr, $BOD_5$, TDS, pH의 항목으로 평가하였다. 또 물질수지 분석과 LCA 평가 후 다음 단계로 공정, 에너지, 원부자재, 생산관리, 일반관리에서의 문제점을 도출한 후 그 중에서 개선 대상을 선정하고 마지막 단계에서 각 부분에 대해 지도하여 개선토록 한 후 최종 개선 효과를 분석하였다.

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제지폐수 재이용을 위한 침지형 생물막 여과와 오존산화공정(SMBR-Ozone Oxidation Process)에 의한 형광증백제 제거에 관한 연구 (Study on the Removal of Fluorescent Whitening Agent for Paper-mill Wastewater Reuse using the Submerged Membrane Bioreactor(SMBR) with Ozone Oxidation Process)

  • 최장승;신동훈;류승한;이재훈;류재용;신원식;이슬기;박민수;이상오
    • 한국염색가공학회지
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    • 제30권1호
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    • pp.51-61
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    • 2018
  • In this study, effluent water was produced through Submerged Membrane Bio-Reactor(SMBR) process, which is a simple system and decomposes organic matter contained in wastewater with biological treatment process and performs solid-liquid separation, Especially, ozone oxidation treatment process is applied to effluent water containing fluorescent whitening agent, which is a trace pollutant which is not removed by biological treatment, and influences the quality of reused water. The concentration of $COD_{Cr}$ in the SMBR was $449.3mg/{\ell}-COD_{Cr}$, and the concentration of permeate water was $100.3mg/{\ell}-COD_{Cr}$. The removal efficiency was about 70.1%. The amount of ozone required for the removal of the fluorescent whitening agent in the permeated water in SMBR was $6.67g-O_3/min$, and the amount of ozone required to remove $COD_{Mn}$ relative to the permeate water was calculated to remove $0.997mg-COD_{Mn}$ for 1mg of $O_3$.

오존접촉산화 공정과 Peroxone AOP 공정을 이용한 염색폐수방류수 고도산화 처리특성 연구 (Study on Treatment Characteristic of Advanced Oxidation Process using Ozone Oxidation and Peroxone AOP Process for Waste Dyeing Water Effluent Treatment)

  • 박준형;신동훈;류승한;조석진;이상헌
    • 한국염색가공학회지
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    • 제23권4호
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    • pp.274-283
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    • 2011
  • Effect of pH on ozone oxidation and peroxone AOP(Advanced Oxidation Process) process was analyzed and the optimal efficiency for both processes was obtained at pH 7.5. In case of ozone oxidation process, the efficiencies of color, $COD_{Mn}$ and $BOD_5$ removal were measured to 93%, 70% and 89% at a reaction time of 50 min(ozone dosage of 111.67mg/$\ell$). When reaction time increased to 90 min(ozone dosage of 201mg/$\ell$), the efficiencies of color, $COD_{Mn}$ and $BOD_5$ removal were increased by 3~5 %, indicating that the increment of removal efficiency was insignificant considering longer reaction time. Similarly, the ozone/$H_2O_2$ ratio was optimized to 0.5 for peroxone AOP process. Removal efficiencies of color, $COD_{Mn}$ and $BOD_5$ were measured 95%, 81% and 94% at a reaction time of 50 min(ozone dosage of 111.67mg/$\ell$). When reaction time increased to 90min(ozone dosage of 201mg/$\ell$), the removal efficiency of color, CODMn, and BOD5 increased slightly by 1~5%.

pH Control for Dyebath Reuse in Dyeing of Nylon with Binary Mixtures of Acid Dyes

  • Joonseok Koh;Park, Sang-Hyuck;Shim, Goo-Hwan;Kim, Jae-Pil
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 가을 학술발표회 논문집
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    • pp.233-234
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    • 2003
  • There are many advantages of dyebath-reuse, including less water to heat, less effluent to treat, and a reduced consumption of energy, dyes, and chemical auxiliaries. Because of the potential economic and environmental advantages involved in this process, clearly it is deserving of further investigation. Dyebath-reuse using pH-sliding system has been investigated in the dyeing of polyamide with a single acid dye in a previous study. (omitted)

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염색폐수의 생물학적 전처리 조건변화에 의한 최적 펜톤시약 투입량 결정에 관한 연구 (Optimum Dosage of Fenton's Reagent for the Dyeing Wastewater by the Different Conditions of Biological Treatment as the Pre-treatment Process)

  • 배준삼;이상호
    • 한국환경과학회지
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    • 제14권7호
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    • pp.683-689
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    • 2005
  • The consecutive combination process of a biological process as the pre-treatment and a chemical process as the post-treatment is applied for the dyeing wastewater. The poor efficiency of biological treatment using pure oxygen makes the chemical treatment cost high. It is necessary to improve the efficiency of biological treatment in order to reduce the cost of chemical treatment. The purpose of this paper is to find the minimum dose of chemical reagent to fit the Discharged Water Quality Standards for the different biological treatment effluents. Results revealed that the minimum dosage of Fenton's reagent lead to save the cost of chemical treatment based on the guideline dose in the treatment plant. The possible maximum saving reagents was up to $70\%$ for the effluent of the pilot plant packed with the carrier imbedded microorganisms which were selected from the present treatment plant.

강 염기성 음이온 교환수지의 셀룰로우스 섬유용 반응성 염료에 대한 흡착 특성 (Adsorption Characteristics of Strong Basic Anion Exchanger to Cellulose Reactive Dye)

  • 임경은;정팔진;권지영
    • 한국물환경학회지
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    • 제23권1호
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    • pp.27-32
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    • 2007
  • This study focused on estimating the feasibility of a strong basic anion exchanger (PA312OH) as a sorbent for the removal of residual reactive dye and saving chemicals and water. Cellulose reactive dye C.I.RB49 was tested because reactive dye is the largest single group of dyes and that dye needs larger amount of inorganic salts as dyeing agent but nearly 50% of reactive dyes may be lost to the effluent. The adsorption characteristics of PA312OH for C.I.RB49 were as follows. Ion-selectivity among the dye and inorganic salts was Dye > ${SO_4}^{2-}$ > ${CO_3}^{2-}$ > $Cl^-$. C.I.RB49 was exchanged more than 3 times ${SO_4}^{2-}$ and ${CO_3}^{2-}$ and $Cl^-$ was not exchanged absolutely. The exchanging velocity was increased exponentially with increasing temperature. This result is positive effect on treating the high temperature dyeing process wastewater. The exchanged dye percents to initial were 96.8% and 99% at flow rate 20.5 mL/min. and 3.7 mL/min.. The exchanging capacity of PA312OH for C.I.RB49 was 215.2 mg/g at conc.=369.2 mg/L, Temp.=$25^{\circ}C$. 74% inorganic salts were recrystallized from real dark reactive color dyeing wastewater treated with PA312OH.

분해탈기법에 의한 염색폐수 중의 고농도 질소 제거에 관한 연구 (Removal of High Strength Nitrogen in Dyeing Wastewater by Decomposition-Air Stripping Process)

  • 조병락
    • 한국산업융합학회 논문집
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    • 제5권3호
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    • pp.213-218
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    • 2002
  • Total nitrogen is a major pollutant which mostly causes eutrophication and red tide. Wastewater effluent from printing of cotton-viscose rayon containing high concentrations of total nitrogen can not be effectively treated with a typical biological treatment process. This paper provides a new treatment process and experimental results for the removal of high strength nitrogen from dyeing wastewater. The optimum conditions of air stripping for the removal of total nitrogen include around pH 12, temperature $60^{\circ}C$ with 60 minutes of stripping time. In case of a filtration-air stripping process, an initial level ($500mg/{\ell}$) of total nitrogen was significantly reduced to below $60mg/{\ell}$. Deconite was synthesised for further decomposition of organic nitrogen. Thus, a filtration-decomposition-air stripping process was possibly achieved, by which a high level ($900mg/{\ell}$) of total nitrogen was effectively removed to below $60mg/{\ell}$ P. Finally, a continuous new process for the removal of total nitrogen is proposed and confirmed, based on batch experimental results, and its process validity is further discussed throughout.

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낙동강수계에서 섬유염색 및 가공 업체에 대한 공정별 원단위산정 및 분석 (Unit Mass Estimation and Analysis from Fiber Dyeing and Finishing Facility Nearby Nakdong River Basin)

  • 구정은;나동훈;이승환
    • 대한환경공학회지
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    • 제31권9호
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    • pp.765-774
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    • 2009
  • 섬유염색 및 가공산업은 용수요구량이 매우 높은 편이며 다양한 난분해성 염료의 사용으로 인해 폐수발생량의 기여도가 높은 전형적인 오염 유발 산업이다. 본 연구는 낙동강 수계에서 산업폐수 발생업체 중 섬유염색 및 가공 산업시설을 중심으로 SS, $BOD_5,\;COD_{Mn},\;COD_{Cr}$, TN 그리고 TP와 같은 수질 항목에 대해서 발생원 단위 오염물질 배출 특성을 파악하고 발생원단위 부하량을 산출하기 위해 수행되었다. 각 산업을 대표하는 오염원 발생원단위의 산정을 위해 낙동강 수계에 산재한 섬유염색 및 가공업체 중 세 개 업체를 선정하였다. BOD 기준 유입수와 유출수에서의 원단위 값은 90%이상 감소하였지만 원수에서의 높은 유기물 부하량으로 인해 원단위값 자체는 섬유제조시설에서 얻어진 값과 유사하였다. 유수의 생분해도는 유출수에 비해 세배 가량 높게 나타났다. 건평, 제품생산량 및 원료사용량을 기준으로 한 주요 수질 항목 (SS, $BOD_5$, COD, TN and TP)에서 단위공정(본 연구에서 산정한 값)의 오염원 발생원단위 결과값이 통합공정(국립환 경과학원에서 산정한 값)의 오염원 발생원단위 결과 값과 유사하였지만 다른 인자를 기준으로 한 경우에는 커다란 차이를 보여주었다. 섬유염색 및 가공업체에서 도출된 오염원 발생원단위 인자는 낙동강 수질 오염총량제 도입과 함께 수질오염 부하량 처리비용을 산정 할 때 유용한 자료로 활용될 수 있으리라 기대된다. 이러한 오염원 발생부하량 도출과 함께 낙동강 수계에서의 효과적인 수질오염제어와 관리를 위해서는 각 산업별 폐수처리시설의 유출수로부터 다양한 형태의 수질오염항목을 특성화시킬 필요가 있다.