• Title/Summary/Keyword: 담수화 장치

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Design and Evaluation of Portable Forward Osmosis Desalination Device (휴대용 정삼투 담수화 장치의 설계 및 평가에 관한 연구)

  • Park, Chul-Woo;Kang, Ho;Jung, Dongho;Cha, Jaechul;Kim, Daejoong
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.3
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    • pp.301-305
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    • 2013
  • This study aims to design a portable desalination device and discusses the feasibility of the device for overcoming a shortage of safe drinking water. A low-energy, self-supporting, and portable desalination device is designed based on forward osmosis (FO) using an ammonium bicarbonate solution. Experiments with various concentrations of ammonium bicarbonate solution and sodium chloride solution showed that the portable desalination device's performance such as volume and flow rate of desalting water and time required satisfied drinking water standards. The device performance is controlled by varying the concentration and temperature of the solution.

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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환경관련 특허동향 - 해수의 담수화 장치(경남대학교 산학협력단)

  • 한국환경기술인연합회
    • Environmental engineer
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    • s.323
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    • pp.86-95
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    • 2013
  • 본 발명은 해수의 담수화 장치에 관한 것으로, 해수를 증기와 온수로 변환하도록 태양열을 이용하여 상기 해수를 가열하는 가열기와, 상기 가열기에 의해 변환된 상기 증기와 상기 온수를 분리하는 분리기를 포함하며, 상기 가열기는, 오목한 곡면을 갖는 반원통 형상으로 마련되고, 상기 반원통 형상의 길이방향을 따라 위치하는 다수의 초점을 향하여 내면으로 조사된 태양광을 반사하는 반사렌즈 및 상기 반사렌즈에 의해 반사된 상기 태양광의 열 에너지에 의해 상기 해수를 가열하도록, 상기 반사렌즈의 초점이 위치하는 길이방향의 지점을 따라 상기 해수가 흐를 수 있도록 형성되는 유로관을 포함하는 것을 특징으로 한다.

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Desalination technology for a barge mounted plant (해상 플랜트용 담수화장치 기술개발)

  • 김재윤;박상진;송치성
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2001.05a
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    • pp.112-116
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    • 2001
  • In the paper, desalination technology for a barge mounted plant is presented. Desalination system on a barge needs high efficiency, smaller space, and stability. Therfore 4-effect distillation system (capacity of 50ton/day) is designed and constructed. During operation, detailed investigation of different opereation parameters is carried. This paper discusses about product water flowrate and recover ratio with different steam flow rate and feed water rate.

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Numerical Simulation of Steam Jet Vacuum System in Multi-effect Desalination Plant (다중효용 담수 설비의 증기이젝터 진공장치에 관한 수치해석)

  • Ko, Sang-Cheol;Kim, Yong-Sun;Choi, Du-Youl;Kim, Pil-Hwan
    • Journal of Advanced Marine Engineering and Technology
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    • v.39 no.3
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    • pp.238-242
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    • 2015
  • A steam jet vacuum system that will be implemented in a multi-effect desalination plant is numerically investigated. The objective of this study is to numerically investigate the performance characteristic of the steam jet vacuum system for the sea water distillation process. The effects of design parameter such as nozzle size and converging duct angle are discussed in order to get a better understanding of flow characteristics inside the steam ejector and subsequently pave the way for more optimum designs. The simulation results have been in good agreement with experimental data and have well reproduced the shock train phenomena of the throat region.

Novel Apparatus for Seawater Desalination and Its Application (신개념 해수담수 플랜트 적용을 위한 장치개발 및 적용기술)

  • Lee, Ju Dong;Kang, Kyung Chan
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.38 no.5
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    • pp.407-412
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    • 2014
  • A new apparatus for seawater desalination, based on the principle of gas hydrates, is suggested. The equipment continuously produces and pelletizes gas hydrates by a squeezing operation in a dual cylinder unit, which is able to extract pure hydrate pellets from the seawater-containing reactor. Desalination efficiency for each dissolved ion from seawater samples was tested by inductively coupled plasma atomic emission spectroscopy (ICP-AES) and ion chromatography (IC) analysis. This study demonstrates that the suggested method and the stated apparatus may solve the difficulty of separating hydrate crystals from concentrated brine solutions, and therefore may be applied to improve the efficiency of existing desalination processes.

Study on the Necessity of Energy Recovery Device in Small Scale Reverse Osmosis Desalination Plant (소규모 역삼투 담수화 시설에서 에너지 회수장치의 필요성에 대한 연구)

  • Jeon, Jongmin;Kwak, Kyungsup;Kim, Noori;Jung, Jaehak;Son, Dong-Min;Kim, Suhan
    • Korean Chemical Engineering Research
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    • v.55 no.6
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    • pp.762-766
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    • 2017
  • Energy recovery device (ERD) is used to save energy consumption in seawater reverse osmosis processes. However, small-scale ERDs (<$100m^3/d$) are hardly observed in seawater desalination market. In South Korea, most of seawater desalination plants for drinking water production are small-scaled and have been operated in island areas or on ships. Thus, the effect of ERDs for these small-scale SWRO processes should not be neglected. In this work, the small-scale SWRO processes are designed and analyzed in terms of energy consumption with/without ERD. The realistic efficiencies of high pressure pumps are considered for the energy analyses. The unit cost of electricity depending on the application place (e.g., inland and island areas, on ships) is investigated to calculate the energy cost for unit water production in various SWRO applications classified by plant capacity, application place, and the installation of ERD. As a result, the energy cost can be saved up to $1,640.4KRW/m^3$ when ERD is applied, and the saving effect increases at smaller plants on ships. In conclusion, the development of small-scale ERDs are necessary because small-scale SWRO processes are dominant in Korean seawater desalination market, and the electricity saving effect becomes higher at smaller-scaled system.