• Title/Summary/Keyword: 역 세정

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역삼투법 해수담수화 시스템의 최적설계 (먹는물을 생산하기 위한 시설을 중심으로)

  • 김충환
    • Proceedings of the Membrane Society of Korea Conference
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    • 1997.04a
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    • pp.131-153
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    • 1997
  • 먹는물 생산용 역삼투법 해수담수화 시설의 도입에서 시설은 원수의 수질에 대하여 먹는물 수질기준을 충분히 달성할 수 있는 능력을 가져야 하고, 또한 시설의 배치, 유지관리 및 경제성을 고려한 최적공정이 선정되어야 한다. 역삼투법에 의한 먹는물 생산용 담수화시스템의 설비는 기본적으로 막의 성능을 안정적으로 유지하기 위한 전처리설비, 역삼투막모듈로 원수를 공급하기 위한 고압펌프 및 용존염의 제거하기 위한 역삼투막모듈 등의 세부분으로 구성되지만, 실용화 장치에서는 원수를 공급하기 위한 취수설비, 막으로 처리된 생산수를 먹는물로 급수하기 위한 후처리설비, 기타 세정설비 및 세정배수처리설비 등으로 구성된다.

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차세대 반도체 세정장비 기술동향

  • Jo, Jung-Geun
    • Proceedings of the Korean Society Of Semiconductor Equipment Technology
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    • 2007.09a
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    • pp.42-54
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    • 2007
  • ${\blacksquare}$ 매엽실 세정장비의 양산적용 확대 ${\centerdot}$ 역오염 감소로 수율개선, 짧은 TAT ${\centerdot}$ Throughput 개선필요 : Process Module + Wafer Transfer ${\blacksquare}$ 향후 $2{\sim}3$년 동안 세정기술의 패러다임 변화 예상 ${\centerdot}$ 초미세 패턴에서의 입자 제거 대책 (${\sim}22.5nm$), 신재료에 따른 케미컬 대응 (에칭, 부식, 물성변화). ${\blacksquare}$ 세정기술의 통합 솔루션 필요 ${\centerdot}$ 초임계 유체세정 : 극미세 패턴까지도 대응 가능 ${\centerdot}$ 장비와 공정 측면에서 많은 연구 필요

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Ions Removal of Contaminated Water with Radioactive Ions by Reverse Osmosis Membrane Process (방사성이온으로 오염된 물의 역삼투막공정을 이용한 이온제거)

  • Shin, Do Hyoung;Cheong, Seong Ihl;Rhim, Ji Won
    • Membrane Journal
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    • v.26 no.5
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    • pp.401-406
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    • 2016
  • In this study, we have investigated the removal of the low level radioactive ions of Cs and I in water by the reverse osmosis (RO) process. The two RO modules produced in domestic region and the waste RO module after the cleaning process were selected. Then we compared removal performance of both Cs and I. The experiments are conducted by varying the concentration of feed, the pressure. As a results, it was confirmed that all three modules are higher I decontamination factor than Cs. And particularly, for the cleaned RO module, its decontamination factor of I was 1140. Since the results at low pressure condition were better than that at high pressure conditions, the use of the direct installation of RO modules on the tap water might be possible. In addition, it was confirmed that the waste RO module after cleaning process using EDTA, SBS and NaOH, increased the decontamination performance better than before cleaning, in particular, the recovery ratio after cleaning was 6.3% higher.

Cleaning of the Waste Reverse Osmosis Membrane Filters for the Household Water Purifier and Their Performance Enhancement Study (정수기용 역삼투 폐분리막 필터의 세정 및 성능 향상 연구)

  • Cho, Young Ju;Rhim, Ji Won
    • Membrane Journal
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    • v.27 no.3
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    • pp.232-239
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    • 2017
  • In this study, the regeneration investigation for waste reverse osmosis membrane filters which were discarded after use for the household water purifiers has been carried out. Sodium hydroxide, sodium bisulfate, and ethylenediamine tetra acetic acid(EDTA). as the chemical cleaning agents were used. And they were in-situ cleaned with the micro-bubble generator as well. The best result was obtained when both 0.1% EDTA and micro-bubbles were used for 30 min cleaning. Thus, when the performance of the brand new RO membrane and restorated RO membrane were compared, the flux, 19.9%, the recovery ratio 45% were enhanced while the salt rejection was reduced for NaCl 100 mg/L solution, in other words, it has been recovered to the original brand new RO membrane filter. Also the removal of pollutants on membrane surface was confirmed in a naked eye through the scanning electron microscopy. Finally, this research has provided the possibility of the re-use of the waste RO membrane filters of household water purifier which were reclaimed or incinerated after use.

Optimal Flow Rate Evaluation for Low Energy, High Efficiency Cleaning of Forward Osmosis (FO) (정삼투 공정의 저에너지 고효율 세정을 위한 최적 유속 평가)

  • Kim, Yihyang;Kim, Jungbin;Zhan, Min;Min, Dahae;Hong, Seungkwan
    • Membrane Journal
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    • v.29 no.6
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    • pp.339-347
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    • 2019
  • Forward osmosis (FO) is operated at a lower pressure than reverse osmosis (RO), which has great advantages in terms of fouling control, maintenance, membrane cleaning, and potential energy reduction. In particular, since the membrane fouling layer of the forward osmosis process has a relatively loose and dispersed property, it is possible to control the membrane fouling by physical cleaning, unlike the reverse osmosis process. However, existing studies do not apply the proper cleaning flow rate for forward osmosis physical cleaning, and thus there is a limit that the optimal operation can not be performed. Therefore, this study aims to evaluate the justification of proper flow rate that can show high efficiency cleaning with economical energy amount. The membrane fouling experiments of the forward osmosis process were maintained at a circulating flow rate of 8.54 cm/s and the recovery rates were compared with the three cleaning flow rates. As a result of this experiment, it was confirmed that the 2 × speed cleaning showed the same efficiency as the water permeability recovery rate of the 3 × speed cleaning, and it was confirmed that the 2 × speed cleaning was an appropriate flow rate with high cleaning efficiency and economical SEC.

신쥬꾸 스테이션 빌딩의 배수 재이용 설비

  • 대한설비건설협회
    • 월간 기계설비
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    • s.32
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    • pp.109-114
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    • 1993
  • 이 빌딩은 JR신쥬꾸역에 인접한 상가빌딩으로 화장실 세정수는 우물물을 사용하고 있었으나 1972년부터 법규제에 의해 시수로 바꾸었다. 근년에 상하수도 요금이 올라서 배수 재이용 설비의 설치를 검토하면서 (1)경제효과를 얻을 수 있다. (2)2중배관$\cdot$지하수조 등 기존설비를 이용할 수 있다. (3)원배수는 주방폐수를 이용할 수 있는 것에 착안하여 산키공업(주)의 MSR시스템을 채용하였다. 1985년부터 실제 운전에 들어갔으며 유분이 많은 배수를 이용함에도 불구하고 중수는 고도의 수질을 얻을 수 있어서 화장실 세정수로 이용하였다. 또한 상하수도 요금 지불이 대폭적으로 내려가고 경제효과가 크다는 것이 확인 되었다. 이와같이 기존빌딩도 조건만 조정하면 배수 재이용 설비의 설치가 가능한 예로서 아래에 기술한다.

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Evaluation on Chemical Cleaning Efficiency of Organic-fouled SWRO Membrane in Seawater Desalination Process (해수담수화 공정에서 역삼투막의 유기 막오염에 대한 SWRO 막의 화학세정 효율 평가)

  • Park, Jun-Young;Hong, Sung-Ho;Kim, Ji-Hoon;Jeong, Woo-Won;Nam, Jong-Woo;Kim, Young-Hoon;Jeon, Min-Jung;Kim, Hyung-Soo
    • Journal of Korean Society of Water and Wastewater
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    • v.25 no.2
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    • pp.177-184
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    • 2011
  • Membrane fouling is an unavoidable phenomenon in operation of seawater reverse osmosis (SWRO) and major obstacle for economic and efficient operation. When fouling occurs on the membrane surface, the permeate flux is decreased, on the contrary, the trans-membrane pressure (TMP) is increased, therefore operation and maintaining costs and potential damage of membranes are able to the pivotal risks of the process. Chemical cleaning process is essential to prevent interruptions for effective RO membrane filtration process. This study focused on proper chemical cleaning condition for polyamide RO membranes of 4 companies. Several chemical agents were applied for chemical cleaning under numbers of operating conditions. Additionally, a monitoring tool of FEEM as autopsy analysis method is adapted for the prediction of organic bio-fouling.

Evaluation on Chemical Cleaning Efficiency of Fouled in $1,000,000m^3/day$ Sea Water Reverse Osmosis Membrane Plant (해수용 역삼투막을 이용한 $1,000,000m^3/day$ 규모의 플랜트에서 오염된 막의 화학세정 효율 평가)

  • Park, Jun-Young;Kim, Ji-Hoon;Jeong, Woo-Won;Nam, Jong-Woo;Kim, Young-Hoon;Lee, Eui-Jong;Lee, Yong-Soo;Jeon, Min-Jung;Kim, Hyung-Soo
    • Journal of Korean Society of Water and Wastewater
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    • v.25 no.3
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    • pp.285-291
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    • 2011
  • Membrane fouling is an unavoidable phenomenon and major obstacle in the economic and efficient operation under sea water reverse osmosis (SWRO). When fouling occurs on the membrane surface, the permeate quantity and quality decrease, the trans-membrane pressure (TMP) and operation costs increase, and the membrane may be damaged. Therefore, chemical cleaning process is important to prevent permeate flow from decreasing in RO membrane filtration process. This study focused on proper chemical cleaning condition for Shuaibah RO plant in Saudi Arabia. Several chemical agents were used for chemical cleaning at different contact time and concentrations of chemicals. Also autopsy analysis was performed using LOI, FT-IR, FEEM, SEM and EDX for assessment of fouling. Specially, FEEM analysis method was thought as analyzing and evaluating tool available for selection of the first applied chemical cleaning dose to predict potential organic fouling. Also, cleaning time should be considered by the condition of RO membrane process since the cleaning time depends on the membrane fouling rate. If the fouling exceeds chemical cleaning guideline, to perfectly remove the fouling, certainly, the chemical cleaning is increased with membrane fouling rate influenced by raw water properties, pre-treatment condition and the point of the chemical cleaning operation time. Also choice of cleaning chemicals applied firstly is important.

Evaluation of Cleaning Efficiency of Reverse Osmosis Module Using Micro-bubble (미세기포를 이용한 역삼투 모듈 세정 효율 평가)

  • Kim, Dongjin;Kang, Shingyung;Cho, Hayoung;Lee, Jeawoo;Moon, Ilshik
    • Membrane Journal
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    • v.27 no.1
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    • pp.104-107
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    • 2017
  • Among many methods in solving the organic contamination in the reverse osmosis operation, caustic soda (NaOH) wash method is efficient and commercially affordable. In continuation of our many organic pollution removal works, this study focused mainly on caustic soda wash with micro-bubble to removal the organic contamination of the spent membrane from reverse osmosis process. First, the membrane was forced the pollute using known organic pollutants such as Humic acid, Bovine serum albumin, Sodium alginate drug. The organic contamination on the membrane was monitored flux. The decontamination of organic contaminants was derived flux variation at individual caustic soda was injected micro-bubble methods and combined method as well. the found results explain removal of organic contaminants effective only by combined caustic soda wash with micro-bubble methods.

Comparison of physical cleaning applied to chemical backwashing of wastewater reuse membrane system (하수재이용 막여과 공정에서 약품 역세에서의 물리세정 영향 비교 평가)

  • Lee, Chang-Ha;Kim, Young-Hoon;Jeon, Min-Jung;Lee, Yong-Soo;Jang, Am;Kim Hyung-Soo
    • Journal of Korean Society of Water and Wastewater
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    • v.25 no.6
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    • pp.981-987
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    • 2011
  • Biologically treated water contains a large quantity of organic matters and microorganisms which can cause various problems to membrane. The membrane fouling occurred by these reasons is hard to control by single physical cleaning. This study analyzes the efficiency of aeration with chemical backwashing and foulants removal during chemical backwashing. The cleaning efficiency improves when the chemical concentration is high and the contact time of chemical is long. Chemical backwashing with aeration shows exceptional cleaning efficiency which leads the physical cleaning is required during chemical backwashing since it forms flow inside the membrane submerged tank. From the foulants removal analysis, the particles such as turbidity and TOC removal rate increase when the aeration is applied. Dissolved matter of DOC and UV254 removal is dependent on higher chemical concentration. According to FTIR analysis, one of major foulants, the polysaccharide is controlled by the chemical backwashing with aeration condition.