• Title/Summary/Keyword: 파일럿 플랜트

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Pilot plant plan for the waste plasma gasification - hydrogen recovery (폐기물의 플라즈마 가스화 - 고순도 수소회수 파일럿 플랜트 계획)

  • Kim, Young-Suk;Lee, Jin-Ho;Cha, Jae-Joon;Hwang, Soon-Mo;Jeong, Seong-Jae
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.802-805
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    • 2009
  • 생활폐기물을 플라즈마 가스화하고 얻어지는 합성가스로부터 수소를 생산하는 파일럿플랜트 건설 계획을 소개한다. 이 파일럿플랜트는 현재 가동 중인 청송군의 10톤/일급 플라즈마 가스화 시설을 고농도 합성가스를 생산하는 시설로 변경하고 수소전환반응기와 수소 PSA 장치를 부착하여 99.999% 순도의 수소 $200Nm^3/h$을 생산하여 연료전지 발전하는 것으로 계획되어 있다. 이 파일럿플랜트는 $20Nm^3/h$ 급의 폐기물 플라즈마 가스화 - 고순도 수소 생산 기술개발 완료에 이은 상용화 실증 시설이다.

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Ecotoxicity Assessment for Livestock Waste Water Treated by a Low Impact Development(LID) Pilot Plant (파일럿 규모의 LID공법을 적용한 축산폐수 처리수에 대한 생태독성 평가)

  • Park, Da Kyung;Chang, Soon-Woong;Choi, Hanna
    • Korean Journal of Environmental Biology
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    • v.35 no.4
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    • pp.662-669
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    • 2017
  • This study evaluated the ecotoxicological properties of livestock waste water treated by a LID (Low Impact Development) system, using a mixture of bio-reeds and bio-ceramics as suitable bed media for a subsequent treatment process of a livestock wastewater treatment plant. The relationship between the pollutant reduction rate and the ecotoxicity was analyzed with the effluents from the inlet pilot plant, with vegetated swale and wetlands and the batch type of an infiltration trench. Each pilot plant consisted of a bio process using bio-reeds and bio-ceramics as bed media, as well as a general process using general reeds and a bed as a control group. The results indicated that, after applying the HRT 24 hour LID method, the ecotoxicity was considerably lowered and the batch type pilot plant was shown to be effective for toxicity reduction. The LID method is expected to be effective for water quality management, considering ecotoxicity by not only as a nonpoint source pollution abatement facility but also, as a subsequent treatment process linked with a livestock manure purification facility. It is necessary to take the LID technic optimization study further to apply it as a subsequent process for livestock wastewater treatment.

Synthesis of Water-soluble Fiber using Carboxymethylcellulose(CMC) and Development of Pilot Plant (카르복시메틸셀룰로오스 제조공정을 이용한 수용성 섬유 제조 및 파일럿 플랜트 개발)

  • Song, Ho-Jun;Lee, Seungmoon;Choi, Youngmin;Chung, Eui-Hyun;Maken, Sanjeev;Park, Jin-Won
    • Clean Technology
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    • v.11 no.4
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    • pp.189-194
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    • 2005
  • Carboxymethylcellulose(CMC) which is water-soluble fiber was manufactured by mercerization and etherification in the earlier study. Experimental parameters were conversion time for each step, concentration of reagent and temperature. To know the presence of functional group, CMC was analyzed by FT-IR(Fourier Transform Infrared) spectroscopy. Ethanol was recovered using evaporator and purity of ethanol analyzed by GC-MASS was 97% and 83% after mercerization and etherification respectively. For the pilot plant, if CMC is folded by 40 times it showed maximum efficiency. Maximum solubility was obtained when the ratio of NaOH and MCA is 3 : 4.5.

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Development of Pilot Injection Plant for CO2 Underground Storage (이산화탄소 지중저장용 파일럿 주입플랜트 개발)

  • Yoon, Seok-Ho;Kim, Young;Lee, Jun-Ho;Lee, Kong-Hoon
    • Plant Journal
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    • v.9 no.2
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    • pp.42-45
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    • 2013
  • The worldwide issue of greenhouse gas reduction has recently drawn great attention to carbon capture and storage(CCS). In this study, we developed a 10,000 ton/year pilot injection plant for geological storage of carbon dioxide. Major components of the pilot plant include a pressure pump, a booster pump, and an inline heater to bring liquid carbon dioxide into its supercritical state. The test results show that the pilot plant readily achieves the injection pressure and temperature, showing satisfactory control performance. The overall power consumption is 2,000 ~ 2,500 W, more than 75% of which consumed by the pressure pump. This study will facilitate varied research on greenhouse gas reduction as the only domestically developed system for geological injection.

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Leakage experiments and applications of leakage detection algorithm in the pilot plant of water distribution system (상수관망 파일럿플랜트에서의 누수실험 및 누수탐지 알고리즘의 적용)

  • Kwon, Hyuk Jae
    • Journal of Korea Water Resources Association
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    • v.50 no.9
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    • pp.609-616
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    • 2017
  • In this study, algorithm for the selecting the optimum monitoring location and leakage detection algorithm based on back tracing calculation method were developed and verified by the experiments in pilot plant of water distribution system. First of all, optimum monitoring locations were selected and pressure changes were measured due to artificial leakage by pressure gauges in pilot plant. Simulations of leakage detection was performed for the verification of back tracing calculation method as a leakage detection method. From the results, it was found that leakage locations and leakage amount were exactly estimated. Various leakage amount from $0.0005m^3/s$ to $0.0018m^3/s$ were reproduced and leakage location was detected by back tracing calculation method. It was verified that back tracing calculation method as a leakage detection method is effective.

A Study on the Removal of Dissolved Matter in Groundwater and Characteristics of Fouling using NF and RO (NF와 RO를 이용한 지하수중 용존성 물질의 제거와 막 오염의 특성에 관한 연구)

  • Gwon, Eun-Mi;Yu, Myong-Jin
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.12
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    • pp.2205-2213
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    • 2000
  • To investigate removal efficiency of dissolved matter by NF and RO, a pilot plant was operated for six months using groundwater treated by UF membrane. After the pilot plant operation, we performed autopsy test to identify characteristics of foulant attached on the membrane surface applying the used NF and RO in the pilot plant test. In autopsy test, we measured permeate flux and recovery rate of flux by chemical cleaning in each membrane. We also analyzed chemical cleaning disposal to examine component of foulant. Permeate flux of NF and RO1 showed rapid decline after 100 days of operation. Especially, reduction of specific flux in RO1 was more serious than in NF. Specific flux of RO2 with a low recovery rate resulted in gradual flux decline. Removal efficiencies of dissolved inorganic matters as a conductivity were 76.3%, 88.2% and 95.3% respectively for NF, RO1 and RO2, and RO2 presented the highest removal efficiency. And those of dissolved organic matters as TOC were about 80% for both NF and RO. The specific flux of membranes declined gradually from the feed water inlet to outlet of the membrane module and it showed that membrane fouling increased along the feed flow direction. Namely, concentration of pollutants became higher and volume of feed water was less as the feed flow approached to the outlet. It seemed that major foul ants were Ca consolidated into inorganic material and Si consolidated into organic material on the membrane surface. Fe was a great contribution to irreversible fouling. The SEM results indicated that the organic matter was attached to the first layer, closer to the membrane, and then inorganic matter with tetragonal shape layered over them. We could not observe biofouling because microorganism, which was cause of biofouling, was almost pretreated in UF membrane.

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