• 제목/요약/키워드: flammable material

검색결과 98건 처리시간 0.029초

접촉연소식 가스 센서의 검지특성 (Detecting Characteristics of Catalytic Combustible Gas Sensor)

  • 박찬원;원창섭;유영한;안형근;한득영
    • 한국전기전자재료학회논문지
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    • 제13권10호
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    • pp.865-870
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    • 2000
  • In this paper, catalytic combustible gas sensor was fabricated and tested under flammable gases such as CH$_4$and $C_4$H$_{10}$by using Pt coil as a heater and/or temperature sensing element. Fine $Al_2$O$_3$powder was used for a bead and Pt, Pd noble metal powder for a catalyst. Resistance variation of Pt wire was traced by the changes of the gas concentrations in a chamber. Output voltage was then monitored to obtain the gas concentration from the resistance variation. In this experiment, MgO was used to protect cracks in the based and TiO$_2$to increase the sensitivity of the sensors. Water glass was also added to enhance the selectivity to the combustible gases.s.

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동물성 기포제의 희석농도에 따른 기포콘크리트의 특성 (Properties of Foamed Concrete according to Dilution Concentrations of Animality Protein Foaming Agent)

  • 임정준;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 추계 학술논문 발표대회
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    • pp.77-78
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    • 2019
  • Organic insulating materials can cause fatal toxic gases when burned, which can lead to human injury. As a combustible material, the risk of fire spreading is great. Therefore, there is a need for a study on the lightweight cured body for the non-combustible inorganic insulation to replace the flammable organic insulation. This study aims to examine the properties of lightweight foamed concrete according to the dilution concentration of animal foaming agent which forms a closed void when foaming as a part of the experiment to examine the utility of the lightweight foamed concrete as an insulating material. Bubbles occupy a large volume of lightweight foam concrete and have a great influence on the properties. Therefore, the stability of the bubble is very important, and as a result of the experiment, it is determined that 3% of the smallest vesicles are prepared at the proper dilution concentration.

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Improvement Plan for Prevention Regulations to Improve Hazardous Material Safety Management

  • Seongju Oh;Jaewook Lee;Hasung Kong
    • International Journal of Advanced Culture Technology
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    • 제11권3호
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    • pp.346-357
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    • 2023
  • The purpose of this study is to suggest improvement plans for prevention regulations by reflecting the toxicity, fire and explosion effects of hazardous materials factories and surrounding areas using an off-site consequence assessment program. Regarding the effects of the hydrogen cyanide leak accident, which is the 1st petroleum of the 4th class flammable liquid, Areal Locations of Hazardous Atmospheres (ALOHA) program was used to compare and analyze the extent of damage effects for toxicity, overpressure, and radiation. As a result, the toxicity was analyzed to exceed 5km in the area with Acute exposure guideline level (AEGL)-2 concentration or higher, the overpressure was 103m in the range of 1 psi or more, and the radiant heat was analyzed to be 724m in the range of 2kw/m2 or more. Toxicity and radiation affected the area outside the hazardous material storage area, but the overpressure was limited to the inside of the hazardous material storage area. Therefore, we propose to improve the safety management of hazardous materials by conducting a risk assessment for hazardous materials and reflecting the results in internal and external emergency response plans to prepare prevention regulations.

산화물 반도체 가스 센서의 습도 의존성 제거 기술 (Humidity Dependence Removal Technology in Oxide Semiconductor Gas Sensors)

  • 박지호;윤지욱
    • 한국전기전자재료학회논문지
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    • 제37권4호
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    • pp.347-357
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    • 2024
  • Oxide semiconductor gas sensors are widely used for detecting toxic, explosive, and flammable gases due to their simple structure, cost-effectiveness, and potential integration into compact devices. However, their reliable gas detection is hindered by a longstanding issue known as humidity dependence, wherein the sensor resistance and gas response change significantly in the presence of moisture. This problem has persisted since the inception of oxide semiconductor gas sensors in the 1960s. This paper explores the root causes of humidity dependence in oxide semiconductor gas sensors and presents strategies to address this challenge. Mitigation strategies include functionalizing the gas-sensing material with noble metal/transition metal oxides and rare-earth/rare-earth oxides, as well as implementing a moisture barrier layer to prevent moisture diffusion into the gas-sensing film. Developing oxide semiconductor gas sensors immune to humidity dependence is expected to yield substantial socioeconomic benefits by enabling medical diagnosis, food quality assessment, environmental monitoring, and sensor network establishment.

입상 코르크 첨가율에 따른 친환경 단열마감재의 성능평가 (Performance Evaluation of Eco-friendly Insulating Finish According to the Addition Ratio of Granular Cork)

  • 김용구;김연호;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 봄 학술논문 발표대회
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    • pp.148-149
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    • 2020
  • Currently, the most commonly used EPS insulation material has been mainly used because its ease of adhesion with concrete. However, due to poor adhesion with wallpaper, separate adhesion needs to be strengthened and there are cases of breakage or grooves in the process of dismantling the mold. The biggest problem is that when a fire breaks out, various harmful substances are present and highly flammable. Cork used in this study is a truly eco-friendly building material that is taken from between the outer and inner bark of cork trees and does not damage the wood. Also, it is a porous material that is made up of countless cells and contains an air gap between the cells. It is very light in weight between 0.06 and 0.07 and has excellent insulation with a heat conductivity of 0.04W/mK. In addition, it has high stability in the topic of conversation because it does not produce harmful gas when burned and has self-sustaining properties. However, research on cork, an eco-friendly building material with excellent performance to date, is scarce Therefore, we encourage existing scholars to raise interest in new eco-friendly building materials through this study. It also aims to manufacture insulation boards with new inorganic properties using the low weight and heat conductivity held by the cork.

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3D Terrain Model Application for Explosion Assessment

  • Kim, Hyung-Seok;Chang, Eun-Mi;Kim, In-Won
    • 한국지역지리학회:학술대회
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    • 한국지역지리학회 2009년도 하계학술대회 발표집
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    • pp.108-115
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    • 2009
  • An increase in oil and gas plants caused by development of process industry have brought into the increase in use of flammable and toxic materials in the complex process under high temperature and pressure. There is always possibility of fire and explosion of dangerous chemicals, which exist as raw materials, intermediates, and finished goods whether used or stored in the industrial plants. Since there is the need of efforts on disaster damage reduction or mitigation process, we have been conducting a research to relate explosion model on the background of real 3D terrain model. By predicting the extent of damage caused by recent disasters, we will be able to improve efficiency of recovery and, sure, to take preventive measure and emergency counterplan in response to unprepared disaster. For disaster damage prediction, it is general to conduct quantitative risk assessment, using engineering model for environmentaldescription of the target area. There are different engineering models, according to type of disaster, to be used for industry disaster such as UVCE (Unconfined Vapor Cloud Explosion), BLEVE (Boiling Liquid Evaporation Vapor Explosion), Fireball and so on, among them.we estimate explosion damage through UVCE model which is used in the event of explosion of high frequency and severe damage. When flammable gas in a tank is released to the air, firing it brings about explosion, then we can assess the effect of explosion. As 3D terrain information data is utilized to predict and estimate the extent of damage for each human and material. 3D terrain data with synthetic environment (SEDRIS) gives us more accurate damage prediction for industrial disaster and this research will show appropriate prediction results.

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APPLICATION OF 3D TERRAIN MODEL FOR INDUSTRY DISASTER ASSESSMENT

  • Kim, Hyung-Seok;Cho, Hyoung-Ki;Chang, Eun-Mi;Kim, In-Hyun;Kim, In-Won
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2008년도 International Symposium on Remote Sensing
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    • pp.3-5
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    • 2008
  • An increase in oil and gas plants caused by development of process industry have brought into the increase in use of flammable and toxic materials in the complex process under high temperature and pressure. There is always possibility of fire and explosion of dangerous chemicals, which exist as raw materials, intermediates, and finished goods whether used or stored in the industrial plants. Since there is the need of efforts on disaster damage reduction or mitigation process, we have been conducting a research to relate explosion model on the background of real 3D terrain model. By predicting the extent of damage caused by recent disasters, we will be able to improve efficiency of recovery and, sure, to take preventive measure and emergency counterplan in response to unprepared disaster. For disaster damage prediction, it is general to conduct quantitative risk assessment, using engineering model for environmental description of the target area. There are different engineering models, according to type of disaster, to be used for industry disaster such as UVCE (Unconfined Vapour Cloud Explosion), BLEVE (Boiling Liquid Evaporation Vapour Explosion), Fireball and so on, among them, we estimate explosion damage through UVCE model which is used in the event of explosion of high frequency and severe damage. When flammable gas in a tank is released to the air, firing it brings about explosion, then we can assess the effect of explosion. As 3D terrain information data is utilized to predict and estimate the extent of damage for each human and material. 3D terrain data with synthetic environment (SEDRIS) gives us more accurate damage prediction for industrial disaster and this research will show appropriate prediction results.

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유성페인트의 화재 위험성평가에 관한 연구 (A Study on the Fire Risk Assesment of Solvent-based Paints)

  • 이봉우;권성필
    • 한국화재소방학회논문지
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    • 제31권6호
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    • pp.1-7
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    • 2017
  • 현재 국내에서 유통되고 있는 위험물질 가운데 인화성액체가 차지하는 비중은 87 wt% 이상이며 그 중 사용량이, 가장 많은 혼합위험물은 페인트 제품인 것으로 나타났다. 따라서 페인트 제품의 제조, 저장 및 운송에 대한 안전성 확보는 가장 시급하고 중요한 문제라고 할 수 있다. 본 연구에서는 국내 위험물안전관리법과 국제 GHS 시험방법 등을 조사 분석하였고 다양한 유성페인트에 대한 위험성 시험을 실시하여, 그 결과들 간의 연관성을 찾아냈으며, 더 나아가 국내 실정에 맞는 위험성 시험방법 및 판정기준을 제시하였다. 페인트는 인화점 시험, 가연성 액체량과 UN-연소지속성 시험 결과의 판정에 따라 위험물 또는 비위험물로 판정한다. 각각의 다른 수지가 사용되는 6종 유성페인트에 대하여 시험결과 그들은 고위험성을 갖는 제 류 위험물 및 제 류 위험물인 것으로 밝혀졌다.

정전기 방전 평가를 위한 간이형 도구 개발에 관한 연구 (A Study on the Development of Simulating Tool for Evaluation of Electrostatic Discharge)

  • 최상원
    • 한국안전학회지
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    • 제26권3호
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    • pp.15-22
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    • 2011
  • Explosion and fire cause about 30 reported industrial major accidents a year by ignition source which discharge of electrostatic generated to flammable gas, vapor, dust and mixtures. It brings economically and humanly very large loss that accident was caused by fire and explosion from electrostatic discharge. Thus, it is very important that electrostatic discharge energy is to be control below not to be igniting flammable mixtures. There are two kinds of analysis model for electrostatic discharge, human body model and machine model. Human body model is available the parameter of human's electrical equivalent that capacitance is 100 pF, resistance is $1.5k{\Omega}$. To simulate and visualize the electrostatic discharge from human body need a very expensive and high voltage simulator. In this paper, we measured the value of capacitance and resistance concerned with test materials and sizing of specimen and the value of charged voltage concerned with test specimen and distance to develop an electrostatic charge/discharge simulating tool for teaching with which concerned industrial employee and students. The result of experiments, we conformed that the minimum ignition energy of methane-oxygen mixtures meets well the equation $W=1/2CV^2$, and found out that the insulating material and sizing of equivalent value having human body mode are the poly ethylene of 200 mm and 300 mm of diameter. Developed electrostatic charge/discharge simulating tool has many merits; simple mechanism, low cost, no need of electric power and so on.

노말에틸아닐린의 화재 및 폭발 특성치의 측정 및 예측 (Measurement and Prediction of Fire and Explosion Properties of n-Ethylanilne)

  • 하동명
    • Korean Chemical Engineering Research
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    • 제56권4호
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    • pp.474-478
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    • 2018
  • 공정안전을 위해서는 산업현장에서 취급하는 가연성물질의 화재 및 폭발 특성치가 있어야 한다. 사업장에서 사고를 예방하기 위한 연소특성치로 인화점, 연소점, 전폭발한계, 최소자연발화온도 등을 들 수 있다. 그러나 물질보건안전자료(MSDS)에서 제시하고 있는 특성치는 문헌들에 따라 달리 제시되고 있는데, 가연성물질을 안전하게 처리, 수송, 취급하기 위해서는 정확한 연소특성치가 필요하다. 화학산업에서 중간제품, 고무약품 등의 원료로 다양하게 사용되고 있는 노말에틸아닐린을 선정하였다. 그리고 노말에틸아닐린 안전한 취급을 위해서 인화점, 연소점 그리고 최소자연발화온도를 측정하였다. 노말에틸아닐린의 폭발하한계는 실험에서 얻어진 하부인화점을 이용하여 계산하였다. 노말에틸아닐린의 Setaflash 밀폐식은 $77^{\circ}C$, Pensky-Martens 밀폐식에서는 $82^{\circ}C$ 그리고 Tag 개방식에서는 $85^{\circ}C$, Cleveland 개방식에서는 $92^{\circ}C$로 측정되었다. ASTM E659 장치에 의한 측정된 노말에틸아닐린의 최소자연발화온도는 $396^{\circ}C$로 측정되었다. Setaflash 밀폐식에 의해 측정된 노말에틸아닐린의 하부인화점 $77^{\circ}C$에 의한 폭발하한계는 1.02 vol%로 계산되었다. 본 연구에서는 밀폐식에 의해 측정된 노말에틸아닐린의 하부인화점을 이용하여 폭발하한계의 예측이 가능하였다. 본 연구에서 제시된 노말에틸아닐린의 발화온도와 발화지연시간의 관계식은 노말에틸아닐린의 다른 발화온도에서도 발화지연시간의 예측이 가능해졌다.