• 제목/요약/키워드: pollutant removal efficiency

검색결과 207건 처리시간 0.023초

Assessment of environmental impacts of LID technologies on vegetation

  • Choi, Hyeseon;Hong, Jungsun;Geronimo, F.K.F.;Kim, Lee-Hyung
    • Membrane and Water Treatment
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    • 제10권1호
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    • pp.39-44
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    • 2019
  • LID facilities do not consider environmental factors, and due to inappropriate vegetation planting causing degradation in efficiency due to plant damage and difficulty in maintenance. Therefore, in this study, assessment of impact environmental factor by seasonal variation of chlorophyll and growth of vegetation planted in LID technologies and change of pollutant reduction were conducted. In the case of B-SJ and B-RI, growth rate decreased after summer (August), and B-MG showed steady growth until autumn (September). Chlorophyll was found to increase during spring season while it decreased during autumn season. The chlorophyll concentration was found to affect the plant growth pattern. TN reduction efficiency was highest with greater than 80% efficiency in summer, and it was analyzed that plants were identified as the main factor affecting the seasonal reduction efficiency of TN. Also, temperature and relative humidity were analyzed to affect plant growth, activity and pollutant removal efficiency. Plant type and growth pattern are considered as factors to be considered in selection of appropriate plant types in LID technologies.

건식세정기에서의 오염물 동시제거를 위한 고온3계평형 모델의 적용과 예비설계에의 응용 (Application of High-temperature 3-phase Equilibrium Distribution to Dry Scrubber for the Simultaneous Removal of $SO_2$ and Vinyl Chloride)

  • 구자공;백경렬
    • 한국대기환경학회지
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    • 제6권1호
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    • pp.85-96
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    • 1990
  • Simultaneous removal efficiencies of hydrophilic and hydrophobic gaseous pollutants are experimentally determined, and the macroscopic removal mechanism of pollutants in a dry scrubber is analyzed using the extended model of three phase equilibrium distribution of pollutant at high temperatures that can describe the different morphological conditions of adsorbent and water at varying relative humidities. For the simplicity, the inside of spray dryer is divided into three regions of ; (1) absorption, (2) three-phase equilibrium, and (3) adsorption, and the removal efficiencies of each pollutants at three regions are observed at different experimental conditions to estimate the effects of important parameters of dry scrubber. The laboratory experiments simulate the three regions of spray dryer with the temperature control and thus evaporation rate of water from the slurry particle. $SO_2$ as a hydrophilic gaseous pollutant and vinyl chloride as a hydrophobic toxic gas are selected for the future field application to soid waste incineration, and the two types of slurry are made of the two sorbents ; 10 wt.% $Ca(OH)_2$, and 10 wt.% NaOH. Result of temperature effect shows the height of absorption plus three-phase region is decreased as the operation temperature is increased, which results in the lower removal efficiency of $SO_2$ but higher removal for vinyl chloride in the adsorption region of dry scrubber. The removal efficiency of $SO_2$ is higher by NaOH slurry than by $Ca(OH)_2$ slurry due to the hygroscopic nature of NaOH, while the removal of vinyl chloride is higher in $Ca(OH)_2$ case. From the analysis of redults using three-phase equilibrium distribution model, the effective two-phase partition coefficients can be obtained, and the possible extention in the application of the three-phase equilibrium model in a dry scrubber design has been demonstrated.

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Multi-objective optimization of stormwater pipe networks and on-line stormwater treatment devices in an ultra-urban setting

  • Kim, Jin Hwi;Lee, Dong Hoon;Kang, Joo-Hyon
    • Membrane and Water Treatment
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    • 제10권1호
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    • pp.75-82
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    • 2019
  • In a highly urbanized area, land availability is limited for the installation of space consuming stormwater systems for best management practices (BMPs), leading to the consideration of underground stormwater treatment devices connected to the stormwater pipe system. The configuration of a stormwater pipe network determines the hydrological and pollutant transport characteristics of the stormwater discharged through the pipe network, and thus should be an important design consideration for effective management of stormwater quantity and quality. This article presents a multi-objective optimization approach for designing a stormwater pipe network with on-line stormwater treatment devices to achieve an optimal trade-off between the total installation cost and the annual removal efficiency of total suspended solids (TSS). The Non-dominated Sorted Genetic Algorithm-II (NSGA-II) was adapted to solve the multi-objective optimization problem. The study site used to demonstrate the developed approach was a commercial area that has an existing pipe network with eight outfalls into an adjacent stream in Yongin City, South Korea. The stormwater management model (SWMM) was calibrated based on the data obtained from a subcatchment within the study area and was further used to simulate the flow rates and TSS discharge rates through a given pipe network for the entire study area. In the simulation, an underground stormwater treatment device was assumed to be installed at each outfall and sized proportional to the average flow rate at the outfall. The total installation cost for the pipes and underground devices was estimated based on empirical formulas using the flow rates and TSS discharge rates simulated by the SWMM. In the demonstration example, the installation cost could be reduced by up to 9% while the annual TSS removal efficiency could be increased by 4% compared to the original pipe network configuration. The annual TSS removal efficiency was relatively insensitive to the total installation cost in the Pareto-optimal solutions of the pipe network design. The results suggested that the installation cost of the pipes and stormwater treatment devices can be substantially reduced without significantly compromising the pollutant removal efficiency when the pipe network is optimally designed.

실내공기질 모델을 이용한 환기 시스템의 공기 정화 효율성 평가 (Evaluation of Ventilation System Performance Using Indoor Air Quality Model)

  • 최성우
    • 한국환경보건학회지
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    • 제23권4호
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    • pp.57-66
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    • 1997
  • Successful energy conservation and good indcfor air quality (IAQ) are highly dependent on ventilation system. Air filtration is a primary solution of indoor air control strategies in terms of reducing energy consumption and improving ihdoor air quality. A conventional system with bypass filter, as it is called variable-air-volume/bypass filtration system (VAV/BPFS), is a variation of the conventional variable air volume (VAV) systems, which is designed to eliminate indoor air pollutant and to save energy. Bypass filtration system equipped with a high-efficiency particulate filter and carbon absorbent provides additional cleaned air into indoor environments and maintain good IAQ for human health. The objectives of this research were to compare the relative total decay rate of indoor air pollutant concentrations, and to develop a mathematical model simulating the performance of VAV/BPFS. All experiments were performed in chamber under the controlled conditions. The specific conclusions of this research are: 1. The VAV/BPFS system is more efficient than the VAV system in removing indoor air pollutant concentration. The total decay rates of aerosol, and total volatile organic compound (TVOC) for the VAV/BPFS system were higher than those of the conventional VAV system. 2. IAQ model predictions of each pollutant agree closely with the measured values. 3. According to IAQ model evaluation, reduction of outdoor supply air results in decreased dilution removal rate and on increased bypass filtration removal rate with the VAV/BPFS. As a results, we recommends the VAV/BPFS as an alternative to conventional VAV systems.

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국내 10개 댐저수지 인공습지의 운영현황 및 개선방안 (Operating Status and Improvement Plans of Ten Wetlands Constructed in Dam Reservoirs in Korea)

  • 최광순;김세원;김동섭;이요상
    • 한국습지학회지
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    • 제16권3호
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    • pp.431-440
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    • 2014
  • 국내 10개 댐저수지 인공습지를 대상으로 수심분포, 유입량 및 유출량, 물흐름분포, 체류시간, 수처리효율, 종횡비, 개방수역/폐쇄수역 구성비 등 습지의 운영현황 및 구조적 형상에 대한 분석을 통해 인공습지의 수질정화기능을 회복시킬 수 있는 개선대책 및 운영방안을 제시하였다. 조사대상 인공습지의 처리수는 하수처리장 방류수 또는 하천수였으며, 처리수의 수질은 외국의 인공습지에 비해 전반적으로 낮은 것으로 나타났다. 특히 처리수의 BOD는 모든 습지에서 3 mg/L 이하로 매우 낮았는데, 이는 하수처리장의 고도처리 및 평수기 저농도 하천수 취입에 기인된 것으로 판단된다. 수처리효율은 TN이 7.6~67.6%(평균 24.9%), TP가 -4.9~74.5%(평균 23.7%)의 범위로 하수처리장 방류수를 처리수로 하는 인공습지에서 높은 값을 보였다. BOD는 -133.3~41.7% 범위로 습지에 따라 큰 차이를 보였으며, 대부분 습지에서 처리효율이 없거나 낮은 것으로 나타났다. 인공습지의 낮은 처리효율은 습지의 부적합한 종행비, 과도한 개방수역 면적 등의 구조적인 문제와 수위관리 미흡, 초기우수 취입시스템 및 운영관리 미흡, 강우시 모니터링 부재 등의 운영적인 문제에 의한 것으로 나타났다. 그러므로 댐저수지 인공습지가 비점오염 저감시설로서의 역할을 할 수 있기 위해서는 댐저수지 인공습지에 적합한 습지설계 및 운영방안이 필요하다. 또한 습지 운영매뉴얼에 비점오염물질이 유출되는 강우시 모니터링이 반드시 포함되어야 하며, 댐저수지 인공습지의 수처리효율도 강우시 모니터링 자료를 토대로 평가되어야 할 것이다.

산성 및 유기성 가스의 동시제거를 위한 준건식 세정시스템의 적정 운전 조건 (Optimal Operation Condition of Spray Drying Sorber for Simultaneous Removal of Acidic and Organic Gaseous Pollutants)

  • 백경렬;구자공
    • 한국환경과학회지
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    • 제10권1호
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    • pp.59-64
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    • 2001
  • The effect of major operating parameters in spray drying sorber(=SDS) for automatic control for the simultaneous removal of acidic and organic gaseous pollutants from solid waste incinerator was performed. The field experiment was carried out in pilot scale test for the quantification of major operating parameters of hydrophilic and the hydrophobic pollutants. The removal efficiencies of $SO_2$and HCI in the 5wt% slurry condition were being increased with the increase of the stoichiometric ration which is the molecular ratio of lime to the pollutant concentration, and with the decrease of inflow flue gas temperature in the pilot SDS reactor. The removal efficiency along the height of spray drying sorber was closely related to the temperature profile, and more than 90% of total removal efficiency was achieved in an absorption region. For the removal of acidic gas the optimum operating condition considering the economics and a stable operation is the 5wt% of slurry concentration, 1.2 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. For the organic gases of benzene and toluene the removal efficiencies were 20-60% which is much lower than that of acidic gas. The best removal efficiency was obtained at 1.5 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. The organic\`s removal efficiency along the height of spray drying sorber was quite different from that of acidic gas, that is, more than 60% of the total removal efficiency for benzene and 90% of the total removal for toluene were achieved in the dried adsorption region, which was formed at the lower or exit part of the reactor.

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식생습지와 개방수역의 배열에 따른 인공습지의 수처리 특성 (Water Treatment Characteristics by Const ucted Wetland with Different Vegetation - Open Water Arrangements)

  • 장정렬;최선화;권순국
    • 한국물환경학회지
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    • 제23권1호
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    • pp.122-130
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    • 2007
  • This study was conducted to evaluate water treatment characteristics according to vegetated wetland(V) and open water(O) arrangements in free water surface constructed wetland. Three pilot-scale wetlands, V-V, O-V and V-O, were built and operated. $BOD_5$ was a slightly reduced at all the arrangements because the influent concentration was so low as background concentration of constructed wetlands. While T-N and T-P removal efficiency showed higher than 50% for all cases. The O-V arrangement showed the highest removal efficiency: 20% for $BOD_5$, 56% for SS, 59% for T-N and 72% for T-P. Effluent concentration of the O-V were significantly low compared with those from the V-O. O-V arrangement would be beneficial in the light of pollutant removal efficiency as well as construction cost.

Ca(OH)2촉매를 이용한 플라즈마 반응에 의한 황산화물의 제거에 관한 연구 (A study of decomposition of sulfur oxides using Calcium hydroxide catalyst by plasma reactions)

  • 김다영;우인성;이선희;김도현;김병철
    • 대한안전경영과학회:학술대회논문집
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    • 대한안전경영과학회 2013년 추계학술대회
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    • pp.547-560
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    • 2013
  • In this study, the air pollutant removal such as sulfur oxides was studied. A combination of the plasma discharge in the reactor by the reaction surface discharge reactor Calcium hydroxides catalytic reactor and air pollutants, hazardous gas SOx, changes in gas concentration, change in frequency, the thickness of the electrode, kinds of electrodes and the addition of simulated composite catalyst composed of a variety of gases, including decomposition experiments were performed by varying the process parameters. The experimental results showed the removal efficiency of 98% in the decomposition of sulfur oxides removal experiment when Calcium hydroxides catalysts and the tungsten(W) electrodes were used. It was increased 3% more than if you do not have the catalytic. If added to methane gas was added the removal efficiency increased decomposition.

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고열을 이용한 잔류 오존($O_3$) 처리에 관한 연구 (The study on the treatment of the remaining Ozone($O_3$) by the high heater)

  • 김재우
    • 환경위생공학
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    • 제16권2호
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    • pp.9-16
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    • 2001
  • If a pollutant invade at liguid and gas, it will be use ozone in order to remove or sterilize. Ozone excessively supply in order to receive satisfactory efficiency. If excessive ozone leave like that, second-problem will be occur. This study used high heater in order to treat occurred ozone. ; the results were as follow : 1. As initial ozone os supplied with $1.789{\;}g/m^3$ : For the 40, 50, 60, 70(V) of electric potential $O_3$ removal efficiency was treated 34.41, 73.78, 98.60, 98.97%(time of operation ; after 5min.). 2. As initial ozone is supplied with $3.645{\;}g/m^3$ : For the 40, 50, 60, 70(V) of electric potential, $O_3$ removal efficiency was treated 1.78, 69.27, 99.18, 98.68%(time of operation ; after 5min.). 3. As initial ozone is supplied with $4.759{\;}g/m^3$ : For the 50, 60, 70(V) of electric potential, $O_3$ removal efficiency was treated 61.29, 99.29, 99.18%(Time of operation ; after 5min.). 4. Used electric power is 15.38, 24.00, 35.29, 46.15(w/hr) at the 40, 50, 60, 70(V) of the electric potential. 5. Regarding electric power and $O_3$ removal efficiency, Used electric pote-ntial economized at 60(V).

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식생이 조성된 LID 시설의 효율 평가 (Assessment of Performances of Low Impact Development (LID) Facilities with Vegetation)

  • 홍정선;김이형
    • Ecology and Resilient Infrastructure
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    • 제3권2호
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    • pp.100-109
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    • 2016
  • 도시 지역의 물순환 구축과 비점오염물질 저감을 위해 구축되는 LID 시설의 지속적 효율은 주요 내부 구성요소(식물, 토양, 여재, 미생물 등)의 최적화된 상호작용에 의하여 나타난다. 본 연구는 식생이 조성된 4가지 LID 기술 (식생체류지, 소규모 인공습지, 빗물정원 및 나무여과상자)의 실제 도시 강우유출수의 유입으로 인한 식물의 성장상태 변화와 물순환 효과 및 비점오염물질 저감능력을 평가하기 위하여 수행되었다. 도시지역의 강우유출수의 약 40% 이상의 유출저감을 위한 적정 SA/CA (facility surface area / catchment area) 비는 시설마다 차이는 있지만 1~5% 범위가 적당한 것으로 평가되었다. 강우시 LID 시설에서의 유출저감은 비점오염물질 저감효율 향상에 중요한 영향을 끼치는 기작으로 나타났으며, SA/CA는 LID 시설의 중요한 설계인자로 도출되었다. 유출저감에 효과적인 시설은 빗물정원 > 나무여과상자 > 식생체류지 > 소규모 인공습지 순으로 나타났으며 입자상 물질 (TSS)의 제거능력은 빗물정원 > 나무여과상자 > 소규모 인공습지 > 식생체류지 순으로 분석되었다. 유기물 (COD, TOC), 영양물질 (TN, TP) 및 중금속 (Cu, Pb, Cd, Zn) 제거에는 빗물정원 > 나무여과상자 > 식생체류지 > 소규모 인공습지 순으로 조사되었으며 이러한 결과들은 향후 도시지역의 물순환 구축 및 비점오염물 제거에 적용되는 LID 시설의 설계에 중요한 자료로 활용 가능할 것으로 판단된다.