• 제목/요약/키워드: desalination efficiency

검색결과 95건 처리시간 0.029초

Fates of water and salts in non-aqueous solvents for directional solvent extraction desalination: Effects of chemical structures of the solvents

  • Choi, Ohkyung;Kim, Minsup;Cho, Art E.;Choi, Young Chul;Kim, Gyu Dong;Kim, Dooil;Lee, Jae Woo
    • Membrane and Water Treatment
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    • 제10권3호
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    • pp.207-212
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    • 2019
  • Non-aqueous solvents (NASs) are generally known to be barely miscible, and reactive with polar compounds, such as water. However, water can interact with some NASs, which can be used as a new means for water recovery from saline water. This study explored the fate of water and salt in NAS, when saline water is mixed with NAS. Three amine solvents were selected as NAS. They had the same molecular formula, but were differentiated by their molecular structures, as follows: 1) NAS 'A' having the hydrophilic group ($NH_2$) at the end of the straight carbon chain, 2) NAS 'B' with symmetrical structure and having the hydrophilic group (NH) at the middle of the straight carbon chain, 3) NAS 'C' having the hydrophilic group ($NH_2$) at the end of the straight carbon chain but possessing a hydrophobic ethyl branch in the middle of the structure. In batch experiments, 0.5 M NaCl water was blended with NASs, and then water and salt content in the NAS were individually measured. Water absorption efficiencies by NAS 'B' and 'C' were 3.8 and 10.7%, respectively. However, salt rejection efficiency was 98.9% and 58.2%, respectively. NAS 'A' exhibited a higher water absorption efficiency of 35.6%, despite a worse salt rejection efficiency of 24.7%. Molecular dynamic (MD) simulation showed the different interactions of water and salts with each NAS. NAS 'A' formed lattice structured clusters, with the hydrophilic group located outside, and captured a large numbers of water molecules, together with salt ions, inside the cluster pockets. NAS 'B' formed a planar-shaped cluster, where only some water molecules, but no salt ions, migrated to the NAS cluster. NAS 'C', with an ethyl group branch, formed a cluster shaped similarly to that of 'B'; however, the boundary surface of the cluster looked higher than that of 'C', due to the branch structure in solvent. The MD simulation was helpful for understanding the experimental results for water absorption and salt rejection, by demonstrating the various interactions between water molecules and the salts, with the different NAS types.

Arsenic Removal from Water Using Various Adsorbents: Magnetic Ion Exchange Resins, Hydrous Ion Oxide Particles, Granular Ferric Hydroxide, Activated Alumina, Sulfur Modified Iron, and Iron Oxide-Coated Microsand

  • Sinha, Shahnawaz;Amy, Gary;Yoon, Yeo-Min;Her, Nam-Guk
    • Environmental Engineering Research
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    • 제16권3호
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    • pp.165-173
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    • 2011
  • The equilibrium and kinetic adsorption of arsenic on six different adsorbents were investigated with one synthetic and four natural types (two surface and two ground) of water. The adsorbents tested included magnetic ion exchange resins (MIEX), hydrous ion oxide particles (HIOPs), granular ferric hydroxide (GFH), activated alumina (AA), sulfur modified iron (SMI), and iron oxide-coated microsand (IOC-M), which have different physicochemical properties (shape, charge, surface area, size, and metal content). The results showed that adsorption equilibriums were achieved within a contact period of 20 min. The optimal doses of adsorbents determined for a given equilibrium concentration of $C_{eq}=10\;{\mu}g/L$ were 500 mg/L for AA and GFH, 520-1,300 mg/L for MIEX, 1,200 mg/L for HIOPs, 2,500 mg/L for SMI, and 7,500 mg/L for IOC-M at a contact time of 60 min. At these optimal doses, the rate constants of the adsorbents were 3.9, 2.6, 2.5, 1.9, 1.8, and 1.6 1/hr for HIOPs, AA, GFH, MIEX, SMI, and IOC-M, respectively. The presence of silicate significantly reduced the arsenic removal efficiency of HIOPs, AA, and GFH, presumably due to the decrease in chemical binding affinity of arsenic in the presence of silicate. Additional experiments with natural types of water showed that, with the exception of IOC-M, the adsorbents had lower adsorption capacities in ground water than with surface and deionized water, in which the adsorption capacities decreased by approximately 60-95%.

저탁도 해수원수 특성에 적합한 응집 - 여과 공정의 최적화 (Optimization of Coagulation and Media Filtration Process for Low Turbidity Seawater)

  • 손동민;조명흠;김정숙;강임석
    • 대한환경공학회지
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    • 제36권4호
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    • pp.251-257
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    • 2014
  • 본 연구는 RO 해수담수화 전처리 공정으로써 응집 및 여과공정에 대하여 수행되었다. RO 시스템은 충분하고 안정적인 전처리를 통하여 RO 막오염을 완화 할 수 있는 우수한 수질을 공급할 수 있어야 한다. 본 실험은 RO 막 공정의 전처리로서 다양한 응집제 주입량, 응집 교반 강도 및 시간, 탁도, 여과속도 실험 조건을 사용하여 응집과 여과공정의 효과를 조사하기 위하여 수행되었다. 본 연구 결과 적합한 RO 공급수로 적절한 SDI 값을 나타내기 위한 최적 전처리 조건은 응집 pH 6.5, 탁도 4 NTU 이상 그리고 여재 충진 높이가 550 mm 이상인 것으로 나타났다. 그러나 응집교반 강도, 응집제 주입농도와 여과속도는 여과효율에 비교적 큰 영향을 미치지 않은 것으로 나타났다.

수치해석을 이용한 담수장치용 이젝터의 노즐위치 변화에 따른 이젝터 유동특성 연구 (CFD Analysis on the Flow Characteristics of Ejector According to the Position Changes of Driving Nozzle for F.W.G)

  • 주홍진;정일영;윤상국;곽희열
    • 한국태양에너지학회 논문집
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    • 제31권3호
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    • pp.23-28
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    • 2011
  • In this study, the ejector design was modeled using Fluent 6.3 of FVM(Finite Volume Method) CFD(Computational Fluid Dynamics) techniques to resolve the flow dynamics in the ejector. A vacuum system with the ejector has been widely used because of its simple construction and easy maintenance. Ejector is the main part of the desalination system, of which designs determine the efficiency of system. The effects of the ejector was investigated geometry and the operating conditions in the hydraulic characteristics. The ejector consists mainly of a nozzle, suction chamber, mixing tube (throat), diffuser and draft tube. Liquid is supplied to the ejector nozzle, the fast liquid jet produced by the nozzle entrains and the non condensable gas was sucked into the mixing tube. The multiphase CFD modeling was carried out to determine the hydrodynamic characteristics of seawater-air ejector. Condition of the simulation was varied in entrance mass flow rate (1kg/s, 1.5kg/s, 2kg/s, 2.5kg/s, 3kg/s), and position of driving nozzle was located from the central axis of the suction at -10mm, 0mm, 10mm, 20mm, 30mm.. Asaresult, suction flow velocity has the highest value in central axis of the suction.

발전 및 해수담수화를 위한 태양열-해양온도차 복합 시스템에 대한 연구 (A Study on the Solar-OTEC Convergence System for Power Generation and Seawater Desalination)

  • 박성식;김우중;김용환;전용한;현창해;김남진
    • 한국태양에너지학회 논문집
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    • 제34권2호
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    • pp.73-81
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    • 2014
  • Ocean thermal energy conversion(OTEC) is a power generation method that utilizes temperature difference between the warm surface seawater and cold deep sea water of ocean. As potential sources of clean-energy supply, Ocean thermal energy conversion(OTEC) power plants' viability has been investigated. Therefore, this paper evaluated the thermodynamic performance of solar-OTEC convergence system for the production with electric power and desalinated water. The comparison analysis of solar-OTEC convergence system performance was carried out as the fluid temperature, saturated temperature difference and pressure of flash evaporator under equivalent conditions. As a results, maximum system efficiency, electric power and fresh water output show at 40, 10, 2.5 kPa of the flash evaporator pressure, respectively. And their respective enhancement ratios were approximately 6.1, 18, 8.6 times higher than that of the base open OTEC system. Also, performance of solar-OTEC system is the highest in the flash evaporator pressure of 10 kPa.

Development of the Pilot System for Radioactive Laundry Waste Treatment Using UV Photo-Oxidation Process and Reverse Osmosis Membrane

  • Park, Se-Moon;Park, Jong-Kil;Kim, Jong-Bin;Shin, Sang-Woon;Lee, Myung-Chan
    • Nuclear Engineering and Technology
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    • 제31권5호
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    • pp.506-511
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    • 1999
  • The pilot system for radioactive liquid laundry waste was developed with treatment capacity, 1ton/hr and set up in the Yong Kwang unit #4. The system is composed of tank module, RO systems and a UV/$H_2O$$_2$photo-oxidation unit. The RO system consists of the BW unit (low-pressure RO for brackish water desalination) and the SW unit (high-pressure RO for seawater desalination). The BW unit possesses 4 RO membranes and it can reduce the feed water volume down to 1/10. This concentrated feed water can be reduced again up to 1/10 in its volume in the SW unit composed of 4 RO membranes. The UV/$H_2O$$_2$ photo-oxidation process unit was used for the detergent degradation. The operation of the pilot system was carried out and verified in its capability through the continuous operation and concentration operation using the actual liquid waste from the power plant. The design criteria and data for industrialization were yielded. The efficiency of the UV/$H_2O$$_2$ photo-oxidation process and the optimum operational procedure were evaluated. The decontamination factors for radioactive cobalt and cesium were measured. This on-site test showed the experimental result in the DF$\geq$300 and volume reduction factor$\geq$100.

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이온교환막을 통한 이온분리에 대한 총설 (A Review Based on Ion Separation by Ion Exchange Membrane)

  • 살센벡 아샐;라즈쿠마 파텔
    • 멤브레인
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    • 제32권4호
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    • pp.209-217
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    • 2022
  • 이온교환막(IEM)은 다양한 종류의 단가이온과 다가이온을 분리하기 위해 사용되는 막의 한 종류로, 배터리, 연료전지, 염화물-알칼리 공정 등에 사용된다. 이온교환막을 통한 막분리는 전기 구동력을 기반으로 한 녹색 분리 방식이며, 해수 담수화와 수처리 분야에서 떠오르는 방식이다. 전기투석(ED)은 양이온과 음이온이 이온교환막을 따라 선택적으로 이동하는 기술이다. 음이온 교환막(AEM)은 전기투석의 중요한 구성 요소 중 하나이며, 공정 효율을 향상시키는 데 상당한 역할을 한다. 이온교환막에 가교결합을 도입하면 자유 부피의 감소로 인해 이온 선택 분리 성능이 향상된다. 역삼투(RO) 공정을 통한 해수 담수화 시 RO 농축수에 용해된 염이 다량 존재한다. 따라서 1가 양이온 선택막으로 구성된 전기투석 공정은 오염을 줄이고 막 플럭스를 개선한다. 이 검토는 전기투석, 음이온 교환막, 그리고 양이온 교환막의 세 부분으로 나뉜다.

해수담수화 전처리로서 가압식 MF 공정의 최적 운전조건 도출 (Optimum Operating Condition for Micro-Filtration Process as a Seawater Desalination Pretreatment)

  • 김영민;장정우;김진호;최준석;이상호;김수귀
    • 대한환경공학회지
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    • 제35권9호
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    • pp.624-629
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    • 2013
  • 본 연구는 해수담수화 전처리 기술로서 개발된 가압식 정밀여과(microfiltration: MF) 중공사막 모듈(막 면적 $35m^2$)의 성능평가를 목적으로 $1,000m^3/day$ 규모 해수담수화 파일럿플랜트를 대상으로 하였다. 약 3개월 동안 용존공기부상법으로 처리한 원수를 공급하여 $1.5m^3/m^2{\cdot}day$ 정유량 조건에서 여과주기, 유지 세정(chemically enhanced backwash: CEB) 농도와 세정 주기 변화 등에 따른 여과성능과 비용을 분석하였다. MF 막 성능 유지를 위한 유지 세정 시 약품 농도에 의한 영향보다는 반복 세정(4회/일)이 효과적이었으나, 경제적 측면에서는 회수율 제고를 위한 단일 세정 방식이 적절한 것으로 나타났다. 막간차압 및 비용분석을 통해 4가지 운전방식 중 1일 1회 NaOCl 100 mg/L 세정 방식을 최적 운전조건으로 도출하였다. MF 전처리 공정의 유지관리 조건 도출 시에는 성능 평가와 함께, 운전방식에 따른 경제성을 함께 고려하는 것이 적절할 것으로 판단된다.

역삼투압막 해수담수화 장치의 미네럴 분리 성능평가 (Efficiency Estimation for Desalination System of Seawater Using Reverse Osmosis Membrane)

  • 문덕수;정동호;김현주;신필권
    • 한국해양환경ㆍ에너지학회지
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    • 제8권2호
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    • pp.60-66
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    • 2005
  • 삼투압보다 높은 외부압력을 역으로 걸어주면 용매는 용질 농도가 낮은 용액쪽으로 이동하게 되는데 이 현상을 역삼투라고 한다. 역삼투 원리를 이용하여 40-70 기압의 압력구배를 구동력으로 해서 해양심층수의 담수화 적용성을 검토 조사하였다. 역삼투막의 성능에 영향을 미치는 유량과 염제거율에 관한 온도와 압력등 여러 인자들에 관하여 고찰하였다. 온도는 역삼투압 분리막의 유량에 비례하는 반면, 염제거율에 반비례하는 관계를 보이고 있다. 압력은 분리막의 유량과 염제거율에 비례하는 관계를 보였다. $Mg^{2+},\;Ca^{+2},\;Na^+,\;K^+$ 등과 같은 해수의 주성분 미네랄에 대한 역삼투 분리막의 분리특성은 해수와 같은 강전해질 용액에서 전하량이 큰 $Mg^{2+}$$Ca^{2+}$의 염제거율은 99% 이상으로 온도에 비례하는 관계를 보였다. 전하량이 적은 $Na^+$의 염제거율은 98%-99.5%로 2가 이온의 염제거율보다는 낮고, 전하량이 작은 $K^+$ 이온보다는 크게 나타났다. 약산이나 상온에서 기체상태나 유리상태로 존재하는 보론의 배제율은 역삼투 분리 막에서 상당히 낮게 나타나고 대부분 우리나라 먹는물의 수질 기준치를 상회한다. 그러나 보론의 배제율은 온도에 반비례하고 압력에 비례하는 관계를 이용하여 수온 $5^{\circ}C$, 압력 $70kgf/cm^2$의 운전조건에서 생산된 생산수의 보론 농도는 우리나라의 먹는물 수질 기준을 만족한다.

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