• 제목/요약/키워드: Dust collection

검색결과 185건 처리시간 0.022초

집진기 미세먼지의 복합제진효율 평가방법 (How to Evaluate the Combined Dust Removal Efficiency of Fine Dust in the Dust Collector)

  • 강일서;이영수;김동현
    • 디지털융복합연구
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    • 제20권2호
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    • pp.339-344
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    • 2022
  • 본 연구에서는 공장 및 대형 시설에서 사용되고 있는 전기집진장치에 대하여 미세분진이 효율적으로 얼마나 제거 될 수 있는지에 대한 내용이다. 미세분진 제거 효율을 평가한 결과는 다음과 같다. 10,000 V 에서는 Efficiency method I은 68.1 % 를 보였고, Efficiency method I는 58.6 %로 Efficiency method I의 효율 보다 낮은 효율을 보였다. 5,000 V 에서는 Efficiency method I은 57.6 %를 보였고, Efficiency method II는 51.6 %로 Efficiency method I보다 낮은 효율을 보였다. 2,500 V 에서는 Efficiency method I은 50.3 %를 보였고, Efficiency method II는 24.4 %로 Efficiency method I보다 낮은 효율을 보였다. Efficiency method I의 경우 전 분진농도와 필터 통과 후 분진농도을 활용하여 계산한 효율이다. Efficiency method II는 필터 후의 공기와 오염된 공기가 혼합되는 환경에서 조금 더 정확한 효율을 측정하기 위해 Efficiency method II를 계산하였다. Efficiency method II는 Efficiency method I보다 낮은 효율을 나타내었다. 전기집진장치 실험 결과 10,000 V에서 집진 성능이 가장 높게 나타났으며, 그 다음 5,000 V, 2,500 V의 순을 보였다.

제조업체에서 발생하는 호흡성분진중 XRD와 FTIR를 이용한 결정형유리규산 농도의 분석 제2부 : 요업, 석재, 콘크리트, 유리, 연탄 및 기타사업장 (Analysis of Quartz Contents by XRD and FTIR in Respirable Dust from Various Manufacturing Industries Part 2 - Ceramics, Stone, Concrete, Glass and Briquets, etc.)

  • 김현욱;피영규;노영만;원정일
    • 한국산업보건학회지
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    • 제9권1호
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    • pp.99-111
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    • 1999
  • The purpose of this study was to evaluate crystalline silica contents in airborne respirable dusts from various manufacturing industries and to compare analytical ability of two different methods of quantifying crystalline silica, X-ray diffraction(XRD) and Fourie transform infrared spectroscopy(FTIR). Various manufacturing industries with a history of having pneumoconiosis cases and also known to generate dusts containing crystalline silica were investigated. These industries include: ceramics, brick, concrete, and abrasive material etc. The personal respirable dust samples were collected using l0mm, Dorr-Oliver nylon cyclone equipped with 37mm, $5{\mu}m$ pore size. polyvinylchloride (PVC) filters as collection media. All samples were weighed before and after sampling and were pretreated according to the NIOSH sampling and analytical methods 7500, and 7602 for dust collection and quartz analysis. A total of 48 samples were collected from these industries. Initial analyses of these samples showed log-normal distributions for dust and quartz concentrations. Some results from ceramics and stone exceeded current Korean Occupational Exposure Limits. The average concentrations of personal respirable dust by cyclone were 0.43, 0.24, 0.26, 0.42, 0.53 and $0.29mg/m^3$ in ceramics, stone, concrete, glass, briquets, and others, respectively. A comparison of performance of two analytical methods for quantifying crystalline silica was performed using data from ceramics. The results showed that no significant difference was found between two methods for ceramics. The mean crystalline silica contents determined by XRD were 3.41 % of samples from briquets and 7.18 % from ceramics and were 2.58 % from concrete and 10.33 % from ceramics by FTIR. For crystalline silica analysis, two analytical techniques were highly correlated with $r^2=0.81$ from ceramics. Both cristobalite and tridymite were not detected by XRD and FTIR.

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임팩션 효과에 편극전하 방식을 부가한 다층 다단 다공성 플레이트 시스템의 집진특성 (Dust Collection Characteristics of Multi-layer Multi-stage Porous Plate System with Polarization Charge to Impaction Effect)

  • 김보배;김일규;여석준
    • 대한환경공학회지
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    • 제33권8호
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    • pp.598-605
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    • 2011
  • 본 연구의 주 목적은 다층 다단 다공성 시스템에 편극전하 방식을 부가하여 본 시스템의 집진특성을 실험적으로 해석하는데 있다. 본 시스템의 압력손실 및 집진효율 특성 해석을 위해 실험은 인가전압, 시스템 유입유속, 유입농도 및 stage 수 등의 실험적 변수들에 의해 수행된다. 실험결과, 기류유입 시 유입유속 $v_{in}$ = 3.11 m/s에서 단(stage) 수 변화($1{\rightarrow}5$단)에 따라 압력손실은 $18{\sim}134mmH_2O$를 나타낸다. 인가전압 0 kV 및 기류유입이 없을 때, 시스템 유입유속 $v_{in}$ = 2.58 m/s인 경우 5 stage에서 집진효율은 92.5% 인 데 비해, 동일 유속에서 플레이트 별 편극전하(alternating polarization charge-applied voltage 2.5 kV) 및 기류유입 시스템인 경우 5 stage 효율은 98.5%로 전자에 비해 6% 정도 매우 높은 효율 상승을 보인다.

직접필터법을 이용하여 호흡성 분진내 석영을 정량분석할 때 크리스토바라이트가 미치는 영향 (The effect of cristobalite on quantitative analysis of quartz in respirable dust by FTIR direct-on-filter method)

  • 피영규;노영만;김현욱
    • 한국산업보건학회지
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    • 제17권1호
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    • pp.21-30
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    • 2007
  • To establish the Fourier-transform infra-red spectrophotometry (FTIR) direct-on-filter(DOF) technique as a useful analytical method for quartz in respirable dust samples, influence of the interference should be corrected. This study was designed to compare three methods of correction for cristobalite when quantifying the content of quartz, including the least square, the optimum choice and the spectral subtraction methods. Respirable dust, created in a dust chamber containing the standard material of quartz, cristobalite was collected using a cyclone equipped with a 25 mm, $0.8{\mu}m$ pore size DM filter as a collection medium. The quartz weights overestimated about 100% when mixed of cristobalite by measure using 799 cm-1 absorption peak of quartz. The quartz weights appeared over estimated by optimum choice, spectral subtraction and least square method in mixtures of 33% cristobalite were 90.3%, 60.1% and about 4.3%, respectively. The least square method have been adopted to correction methods of cristobalite and satisfactory results have been obtained. The results of this study suggest that, when correcting for effect of cristobalite on quantitative analysis of quartz in respirable dust by FTIR direct-on-filter method, the least square method produce the most unbiased results compared with those of other correction methods.

지능형 AI기반의 미세먼지 저감 제어 시스템 (Intelligent AI-based Fine Dust Reduction Control System for Thermal Power Generation)

  • 임상택;백순창;송용준;백영태;최차봉;송승인
    • 한국컴퓨터정보학회:학술대회논문집
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    • 한국컴퓨터정보학회 2019년도 제59차 동계학술대회논문집 27권1호
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    • pp.53-56
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    • 2019
  • 본 논문에서는 화력을 이용하는 대형 파워 플랜트 설비의 미세먼지 발생량을 저감시키고 능동적으로 제어 할 수 있는 효율적인 시스템을 제안한다. 이 시스템은 기존의 고정형으로 설계된 집진기 방식의 고정부하량 한계점과 극복하고 초미세먼지 PM2.5, 미세먼지 PM10의 발생량에 따라 IoT센서 감지에 의해 지능형 알고리즘으로 효율적으로 저감 제어 처리량을 극대화하고, 미세먼지 발생량을 최소화한다. 또한 이 시스템의 차별성은 기존의 집진기에서 잡혀지지 않는 초미세먼지를 새로운 형태의 물질인 FAA(Fine-dust Adsorption Agent)를 통해 연료 연소 시 발생되는 초미세먼지 미세입자 자체를 크게 만들어 기존 설비 집진기 필터에 포집되게 하는 혁신적인 방식이다. 이번 연구를 통해 350도~1000도 열원에서 작용할 수 있는 화학물질 FAA 용액(Agent)을 개발 하였으며 지능형 AI 분사장치를 통해 연료에 첨가되어 연소 시 미세먼지를 20배~50배까지 볼륨을 확대시켜 기존 집진필터에 포집될 수 있게 동작된다. 이때, 기존 설계된 집진기의 한계(부하)용량에 상관없이 미세먼지 발생량을 상황인식 반응형 알고리즘(AI제어) 통해 분사량을 능동적으로 조절하여 미세먼지 발생량을 저감하는 진보적 혁신성을 지닌다.

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Characterization of depth filter media for gas turbine intake air cleaning

  • Park, Young Ok;Hasolli, Naim;Choi, Ho Kyung;Rhee, Young Woo
    • 한국입자에어로졸학회지
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    • 제5권4호
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    • pp.159-170
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    • 2009
  • A depth filter medium was newly designed in order to achieve high collection of dust and low pressure drop in this work. Multilayer depth filter media consist of an upstream layer of highly porous structure which allows particles to pass through and to follow by one or more downstream layers to hold the particles inside the media. For each filter media, flat sheet and pleated module were made of newly developed depth filter media and filter media of commercial products. Commercial depth filter cartridge for gas turbine air intake cleaning were used as reference for filtration area and pleat geometry of pleated modules. This work attempts to evaluate and compare the newly developed depth filter medium and two commercial filter media in terms of filtration parameters such as air permeability, initial pressure drop, particle retention and pressure drop variation with dust loading. According to the close examination the newly developed depth filter showed better performance compared to the commercial depth filter media.

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Air Shot Blast 작업실 내부 환기 시스템 개선에 관한 수치해석 (Numerical Analysis on the Ventilation System Improvement in Air Shot Blast Room)

  • 진도훈
    • 한국산업융합학회 논문집
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    • 제25권5호
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    • pp.861-868
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    • 2022
  • The purpose of this study is to design an effective atmospheric environment system through the design of the dust collection in the air shot room being operated in a domestic shipyard. The ventilation system in the current air shot room mostly uses a dust collecting filter to filter internal particles and releases them in the atmosphere. A conventional design was made too much. In order to prevent an error and draw an optimal design, Computational fluid dynamics (CFD) tried to be applied only to air shot room. In the advanced design technique, computer simulation was conducted to secure basic design data. In order to find the basic design of the ventilation system and the flow field in the air shot room at propeller mold workplace of a shipyard, the CFD was conducted. In the case of Model-1 as a conventional workplace, where air flows in the inlet due to the subatmospheric pressure generated by inhalation of an air blower and flows out to the outlet, a discharge flow rate was somewhat low, and there was the holdup zone in the room. In the case of Model-2 as an improved model, the ventilation system was improved in the Push-Pull type, and the holdup of the internal flow field was improved.

Mud handling system 내 cyclone separator의 집진효율 추정을 위한 공기-분체의 CFD 시뮬레이션 (CFD Simulation of Air-particle Flow for Predicting the Collection Efficiency of a Cyclone Separator in Mud Handling System)

  • 전규목;박종천
    • 한국해양공학회지
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    • 제33권1호
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    • pp.42-49
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    • 2019
  • Drilling mud was used once in the step of separating the gas and powder they were transported to a surge tank. At that time, the fine powder, such as dust that is not separated from the gas, is included in the gas that was separated from the mud. The fine particles of the powder are collected to increase the density of the powder and prevent air pollution. To remove particles from air or another gas, a cyclone-type separator generally can be used with the principles of vortex separation without using a filter system. In this study, we conducted numerical simulations of air-particle flow consisting of two components in a cyclone separator in a mud handling system to investigate the characteristics of turbulent vortical flow and to evaluate the collection efficiency using the commercial software, STAR-CCM+. First, the single-phase air flow was simulated and validated through the comparison with experiments (Boysan et al., 1983) and other CFD simulation results (Slack et al., 2000). Then, based on one-way coupling simulation for air and powder particles, the multi-phase flow was simulated, and the collection efficiency for various sizes of particles was compared with the experimental and theoretical results.

미세먼지 집진을 위한 직접 하전 방식 정전분무의 최적 동작 조건에 관한 연구 (The Study on the Optimal Operating Conditions of Direct Charging Type Electrospray for Particulate Matter Collection)

  • 최수기;김성환;정해영
    • 한국전기전자재료학회논문지
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    • 제36권5호
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    • pp.474-481
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    • 2023
  • This paper is an experimental study on the optimal operating conditions of direct charging type electrospray for particulate matter collection. To perform the research, a direct charging type electrospray visualization system was configured to photograph the spray shape of microdroplets, and experiments were performed with varying electrode distance, flow rate, and applied voltage, which are the main factors affecting the particulate matter collection efficacy. Through image processing, the total number of microdroplets according to each condition was analyzed, and the number of microdroplets with a diameter of 1.5 mm or less was confirmed. In addition, by calculating the number of microdroplets per power consumption according to the applied voltage, the optimal operating conditions were derived in terms of energy consumption efficacy, and the microdroplet size distribution was analyzed under the optimal operating conditions. As a result of the experiment, it was confirmed that the optimal operating condition was at a flow rate of 10 mL/min and a voltage of -20 kV in case of 5 mm electrode distance, and at a flow rate of 15 mL/min and a voltage of -30 kV in case of 100 mm electrode distance.

오일미스트용 축상 유입식 사이클론의 집진효율에 관한 연구 (A Study on Dust Collection Efficiency of Axial-vane Type Cyclone for Oil Mist)

  • 이중섭;신해중;이치우
    • 한국생산제조학회지
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    • 제21권3호
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    • pp.415-420
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    • 2012
  • Dust collecting performance of axial-vane type cyclone for oil mist was analyzed in this study. For predicting cut diameter size of cyclone, the number and angle of vane (${\beta}_2{^{\prime}}$) was calculated by CFD. As the result, ${\beta}_2{^{\prime}}$ was decreased as the number of vane was increased and the angle of inclination (${\beta}_2{^{\prime}}$) decreased, and it cause strong swirl flow. Therefore, it could be confirmed that as the number of vane was increased and the angle of inclination was decreased, cut diameter size was decreased. Also, by verifying the results of CFD through experiment, the cut diameter size could be 2 ${\mu}m$ at 4 $m^3/min$ of flow rate.