• Title/Summary/Keyword: 고도정수처리공정

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서울시 막 여과 고도정수처리 기술개발 연구

  • 이규성
    • Proceedings of the Membrane Society of Korea Conference
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    • 2004.05b
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    • pp.33-45
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    • 2004
  • 목적 : 21세기형 환경 친화적인 고도정수처리기술, 제균, 제탁, 소득부산물 저감 위한 최적기술로 각광받는 기술, 기존 정수처리공정과의 경제성 비교 및 막 운영관리 기술축적. 참여 5개 대표업체 : 데그레몽(프랑스 : Aquasouce 막), 대우건설(일본 : Asahikasei 막), 태영(미국 : US Filter 침지막), 비룡(일본 : Toray 막), 한화(캐나다 : Zeeweed 침지막)(중략)

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부식질 존재하에서 PAC-UF 시스템을 이용한 미량유기물의 제거

  • 이승진;이정학
    • Proceedings of the Membrane Society of Korea Conference
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    • 1996.10a
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    • pp.64-66
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    • 1996
  • 원수 중의 오염물의 양과 종류가 급격히 증가함에 따라 기존의 정수방법은 점차 그 한계를 노출하고 있다. 이러한 문제점의 대안으로 최근 막분리기술을 도입한 고도정수처리공정이 주목되고 있다. 역삼투(reverse osmosis)와 나노여과(nanofiltration)등의 분리막을 이용한 정수처리 공정에 대한 연구가 활발히 진행되어 왔으나, 경제성이 보다 큰 한외여과(ultrafiltration, UF)와 부날활성탄(powdered activated carbon, PAC)의 결합 시스템의 도입이 연구되고 있다. 따라서 본 연구에서는 PAC-UF 시스템의 유입수에 배경물질(background organic matters, BOM)을 포함한 이성분계에서 미량유기물의 경쟁적 흡착 거동을 고찰하였다.

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Taeyoung Submerged-type Membrane Filtration for Advanced Drinking Water Treatment (태영 침지식 막여과 고도정수처리)

  • Yeon, Kyeongho;Cho, Jaebeom;Lee, Yunkyu;Kang, Hojung;Kim, Woogu
    • Journal of the Korean GEO-environmental Society
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    • v.14 no.4
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    • pp.15-27
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    • 2013
  • In order to plan out the Daegu G membrane filtration water treatment plant, water quantity, water quality and process stability were evaluated using the field pilot-scale tests, during the six months of continuous operation, including low water temperature period. The field model experiments, which were carried out according to the Installation Criteria of Ministry of Environment, consisted of two series : series 1 - water quality verification, and series 2 - membrane process evaluation. The process water quality met all drinking water standards with less than 0.03 NTU. Moreover, process operation showed a stable membrane pressure with 99% of recovery ratio. This shows that the tests were properly designed in terms of the influence of water loading and temperature. In conclusion, the purpose of this study is to establish core technology for advanced drinking water treatment, through on-going accumulation of engineering and construction know-how.

Investigation of Treatment Efficiency for Advanced Processes of Water Treatment Plants in Korea (국내 정수장 고도정수처리 공정에서 공정별 처리효율 조사)

  • Mun, Sung-Min;Choi, Suing-Il;Sohn, Jin-Sik;Yoon, Je-Yong
    • Journal of Korean Society of Water and Wastewater
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    • v.19 no.3
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    • pp.323-329
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    • 2005
  • Advanced processes such as ozonation or activated carbon filtration (ACF) in water treatment plants have been used in Korea since 1994. At present, seventeen drinking water treatment plants are currently operating. This survey compares the treatment performance of advanced processes in eight plants which have comparable water quality data. The three parameters (DOC, $UV_{254}$, and $KMnO_4$ consumption) of water quality were selected as an indicator of treatment efficiency. The treatment efficiency of ozonation and ACF processes was found to vary with large deviations in each plant. Treatment efficiency of DOC, $UV_{254}$, and $KMnO_4$ consumption by post ozonation ranged from 3 to 11%, 6 to 33%, and 12 to 28% respectively. On the other hand, for ACF, treatment efficiency of DOC, $UV_{254}$, and $KMnO_4$ consumption ranged from 7 to 38%, 8 to 48%, and 16 to 66% respectively. These large deviations indicate the advanced processes of water treatment plants to be further optimized.

Variation of Pollutant Removal Efficiency and Backwashing Effect of BAC Basin in Advanced Water Treatment Processes (고도정수공정에서 오염물질 제거효율 변화특성과 BAC조의 역세척에 따른 영향)

  • Park, Soo-Yee;Lee, Sang-Bong;Sin, Sang-Min;Jun, Chang-Jea;Kim, Chang-Won
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.1
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    • pp.45-53
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    • 2008
  • In this paper, the property of influent water and variations of removal efficiencies in each unit processes were studied based on the experiment data from the advanced water treatment plant in a city of Korea. The microbial species in the biological activated carbon(BAC) after backwashing of activated carbon filtration tank(ACFT) were also identified. The property and the removal efficiencies were evaluated by considering 8-9 items. The variations of 4 items were investigated from the influent and effluent of ACFT. SEM recording were conducted on BAC samples before and after backwashing. And the existence of attached microorganisms were identified through HPC(Heterotrophic Plate Counter) investigation. For the property of influent water, the concentrations of most items were maintained in the constant ranges, some items had seasonal properties. For the removal efficiencies, there were some items showing similar monthly-pattern and increasing with time, other items decreasing at the ozone contactor. Through these investigations, it was possible to distinguish the target items, which were removed by the advanced processes. The existence of microorganisms in ACFT could be predicted based on the variation curve of NH$_3$-N, and this fact were proved by SEM and HPC.

Development of the Biological Oxidation Filter System for Water Treatment (수처리용 생물산화 여과장치 개발)

  • 염병호;정충혁;문정석;최승일
    • Environmental engineer
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    • s.181
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    • pp.70-75
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    • 2001
  • 본 연구는 '99년 7월에 벤처형 중소기업 기술개발 지원사업으로 신규 계약된 과제로서 상수원수의 전처리 및 하수 2차 침전수의 재처리 공정에 활용될 생물 산화 여과지를 개발하는 것이다. 생물 산화 여과 system은 상수 원수의 전처리, 상수도의 고도정수 처리, 하수 및 폐수처리에 이용될 수 있는 것으로, 특히 물리적 여과기능과 포기 과정을 통한 산화 기능을 포함하는 생물학적 분해 및 자연정화처리환경을 유지하여 수질이 악화된 상수도의 전·후처리나 하.폐수의 3차 처리에 적용하기 위한 것이다. 생물 산화 여과 시스템은 여과지의 하부 장치에 균등한 공기(산소)공급시설을 하여 여과층에 연속적으로 공기를 공급하면서 여과를 함으로서 생물막 여과 및 산화 기능으로 유기물질, 철, 망간 등을 제거하고 공기의 부상력에 의하여 조류, 부유물질, 냄새 등을 동시에 제거하는 System이다. 현재 상수처리 공정으로서의 생물 산화 여과지 개발을 위해 Bench-scale과 semi-pilot plant를 거쳐 Y시 M취수장애 pilot plant를 설치하여 연구를 진행중에 있으며, 또한, G시 G하수처리장에 하수처리 공정에 관한 연구를 위해 pilot plant를 설치하고 하수 3차 처리와 저농도 하·폐수 처리를 중심으로 연구중에 있다. 아래의 연구 결과는 정수처리 공정 연구를 위한 Bench-scale plant실험을 통해 얻은 결과치이며 현재까지 진행된 연구는 주로 정수처리 공정 중심으로 이루어 졌으나 pilot plant에서는 정수 및 하수처리에서의 생물산화여과공정의 연구가 진행중이다. 현재 연구가 진행중이므로 각 인자별 최적운전조건 등은 계속적인 실험과 연구를 통해 찾아지겠으나 현재까지 수행된 연구자료를 기반으로 볼 때 생물산화 여과장치는 탁도, SS, VSS 등의 제거에 탁월한 효능을 보이고 있다. 수처리용 장치로서의 이러한 기본적인 기능 이외에 NPOC, DOC 제거에도 뛰어난 효능을 보이고 있으며 특히 정수처리 공정에서 문제시 되고 있는 동절기 암모니아성 질소제거 또한 큰 가능성을 보여주고 있다. 그 동안 외국기술에 전면 의존해 오던 생물 산화 여과방식의 국내개발은 비용 절감뿐만 아니라 국내 실정에 맞는 기술개발이라는 점에서 향후 그 적용 범위를 넓혀 갈 수 있을 것이다.

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Development of a New Advanced Water Treatment Process (PMR) and Assessment of Its Treatment Efficiency (고도정수처리 신(新) 공정(PMR)개발 및 처리효율 평가)

  • Ahn, Hyo-Won;Noh, Soo-Hong;Kwon, Oh-Sung;Park, Yong-Hyo;Wang, Chang-Keun
    • Membrane Journal
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    • v.18 no.2
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    • pp.157-167
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    • 2008
  • Removal of organic substances and taste/odor control are ones of the main issues in water supply, resulting in introduction of advanced processes such as ozon/GAC, or PAC. However, raw water quality deteriorates, new pollutants advent, so water quality is not acceptable enough even with those existing advanced processes. In this paper, a new advanced water treatment process using PAC slurry blanket, where PAC particles stay in the basin as slurry blanket, coupled with submerged membranes is introduced. A pilot plant $(80m^3/day)$ was installed to assess the performance of this new process using actual raw water, and DOC was removed higher than 90% in the beginning and $70{\sim}80%$ afterwards, while 2-MIB and geosmin were removed completely. This new process still requires future study on process optimization and long-term assessment, however it seems highly possible to countermeasure as a new advanced process with high removal efficiency.

Peroxone ($O_3/H_2O_2$) Process in Drinking Water Treatment (정수처리에서의 Peroxone ($O_3/H_2O_2$) 공정)

  • Son, Hee-Jong;Yoom, Hoon-Sik;Bin, Jae-Hoon
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.3
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    • pp.296-308
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    • 2010
  • The peroxone process overcomes many of the limitations associated with conventional and advanced water treatment systems using chlorine disinfection and ozone oxidation processes. Ozone and hydrogen peroxide generate highly reactive hydroxyl free radical which oxidize various organic compounds and has highly removal efficiency. The key issue to operate peroxone process is developing the method to achieve high process effectiveness when scavengers that inhibit generation of OH radicals or consume OH radicals are co-existing in the process. Also many studies, to minimize inorganic oxidative by-products such as bromate and to reduce disinfection by-products after chlorination behind peroxone process, are needed. And we should consider the excess residual hydrogen peroxide in the water. On-line instruments and control strategies need to be developed to ensure effective and robust operation under conditions of varying load. If problems above mentioned are solved, peroxone process will be applied diversely for water treatment.