• Title/Summary/Keyword: Toxic gases

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NO Gas Sensing Properties of ZnO-SWCNT Composites (산화아연-단일벽탄소나노튜브복합체의 일산화질소 감지 특성)

  • Jang, Dong-Mi;Ahn, Se-Yong;Jung, Hyuck;Kim, Do-Jin
    • Korean Journal of Materials Research
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    • v.20 no.11
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    • pp.623-627
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    • 2010
  • Semiconducting metal oxides have been frequently used as gas sensing materials. While zinc oxide is a popular material for such applications, structures such as nanowires, nanorods and nanotubes, due to their large surface area, are natural candidates for use as gas sensors of higher sensitivity. The compound ZnO has been studied, due to its chemical and thermal stability, for use as an n-type semiconducting gas sensor. ZnO has a large exciton binding energy and a large bandgap energy at room temperature. Also, ZnO is sensitive to toxic and combustible gases. The NO gas properties of zinc oxide-single wall carbon nanotube (ZnO-SWCNT) composites were investigated. Fabrication includes the deposition of porous SWCNTs on thermally oxidized $SiO_2$ substrates followed by sputter deposition of Zn and thermal oxidation at $400^{\circ}C$ in oxygen. The Zn films were controlled to 50 nm thicknesses. The effects of microstructure and gas sensing properties were studied for process optimization through comparison of ZnO-SWCNT composites with ZnO film. The basic sensor response behavior to 10 ppm NO gas were checked at different operation temperatures in the range of $150-300^{\circ}C$. The highest sensor responses were observed at $300^{\circ}C$ in ZnO film and $250^{\circ}C$ in ZnO-SWCNT composites. The ZnO-SWCNT composite sensor showed a sensor response (~1300%) five times higher than that of pure ZnO thin film sensors at an operation temperature of $250^{\circ}C$.

Studies on Synthesis of N,N’-Bis(diphenyl phosphoro)diaminohexane and Flame Retardancy Effects of BDPDH on PET Fabrics. (N,N’-Bis(diphenyl phosphoro)diaminohexane의 합성과 PET 직물에 대한 방염성에 관한 연구)

  • Lee, Kwang-Woo;Heo, Man-Woo;Yoon, Jong-Ho;Lee, Chang-Sub;Cho, Yong-Seok;Kim, Sam-Soo;Cho, Hwan
    • Textile Coloration and Finishing
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    • v.6 no.2
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    • pp.55-62
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    • 1994
  • The mend for fabric products has been increased remarkably with increasing population, housings, mutistory buildings,...and etc. during the last two decades. However, since fabrics are highly combustible and can produce toxic gases during the combution, fabric products can result in serious human injury as well as financial damage. Acknowledged by this, a new phosphorus based flame retardant suitable for PET fabric has been synthesized by making use of the reaction of diphenyl chloro phosphate and hexamethylenediamine. Since the starting meterials are relatively cheap and the yield of this reaction is high (more than 90%), this reaction seems to be very effective as wall as very economic. By analyzing various spectrophotometric analysis data such as NMR, FT-IR, and Mass, this new flame retardant is identified to be N,N’-Bis(diphenyl chlorophosphoro)diamino hexane. In the mean time, DSC measurement has shown that the melting point and the boiling point of this material are around 115$^{\circ}C$ and around 40$0^{\circ}C$, respectively. The flame retardancy test done on the PET fabric processed by this flame retardant have shown excellent in times of flame contact, times of flame contact for washable. The most economical finishing condition estimated 10% in concentration of BDPDH, Moreover, it has been also found that the drape stiffness of the PET fiber processed by the flame retartant is changed very litter compared to the unprocessed original PET fabrics. Judging from this, the potential of this new phosphrdus based compond as a flame retardant for PET fabric seems to be high.

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A Study on the Toxic Gases Released from Fire Retardant Finishing Materials (가스검지관법에 의한 방염시료의 연소가스 독성평가)

  • Lee, Hae Pyeong;Park, Young Ju;Lim, Suk Hwan;Kim, Jung In
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.195-195
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    • 2011
  • 본 연구는 방염성능시험에 의한 필름 및 도료처리 시료를 대상으로 화재 시 발생하는 연소가스 중의 독성에 대하여 NES 713 방법에 의해 분석하고, 독성지수를 확인함으로써 연소 시 인체에 미치는 영향을 간접적으로 확인해 보고자 하였다. 기존 방염제품 중 필름과 도료처리 그리고 도료처리 후 기간이 경과한 시료의 3가지로 실험군을 구분하였으며, NES 713 방법으로 연소가스를 분석하고 독성지수를 평가하였으며, 추가로 기존의 국내 노출기준과의 비교를 수행하였으며, 국내 NES 713 방법을 활용한 선행연구들을 참조하였다. 발암가능 추정물질인 아크릴로니트릴은 총 18개의 시료에서 검출되었으며, 포름알데히드는 9개의 시료에서 검출되었다. 염화수소와 브롬화수소는 각각 5개의 시료들에서 검출된 반면에 도료처리된 시료에서는 각각 1개만이 검출되었다. 그 외 일산화탄소와 이산화탄소 그리고 질소산화물은 모든 시료에서 공통적으로 검출되었다. 독성지수는 최소 3.5에서 최고 9.4의 값을 갖는 것으로 나타났다. 본 연구에서 수행한 NES 713 분석결과와 독성지수 산출 및 기존 국내 노출기준과의 비교를 수행해 본 결과는 다음과 같았다. 첫째, 현행 국내 기준 상 방염제품의 독성시험 등에 관한 기준이 없고, 둘째, 방염제품에 대한 연소가스 독성 등을 평가한 선행연구가 제한적이라는 점에서 의미가 있을 것으로 사료된다. 하지만 독성지수의 적용이 국내에서 이루어지고 있지 않은 현실에서 산출도나 독성지수의 위해정도를 평가하기 어렵고, 시료의 수량이 총 18개로서 많지 않았다는 점에서 전체 방염제품의 연소가스 독성의 잠재적인 위험성을 추정할 수는 있지만 대표성을 갖기에는 문제점이 있다는 한계성을 벗어날 수 없었다. 따라서 향후 후속 연구에서는 보다 많은 방염제품들을 대상으로 무작위 선정을 통한 연구 설계 및 실험 연구가 수행된다면 보다 객관적이고 대표성을 지닌 연구결과를 도출할 수 있을 것으로 기대한다.

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A Study on the Thermal Decomposition Characteristics of Waste PVC Wire Added with CaO (CaO를 첨가한 폐PVC전선의 열적분해 특성에 관한 연구)

  • Shah, Malesh;Park, Ho;Kwon, Woo-Teck;Lee, Hae-Pyeong;Oh, Sea-Cheon
    • Journal of the Korean Applied Science and Technology
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    • v.29 no.2
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    • pp.268-277
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    • 2012
  • The thermal decomposition characteristic of waste PVC wires has been studied by using TGA and fixed-bed reactor. The experimental conditions of decomposition temperatures, air flow rates and weight ratio of CaO/PVC were considered in this work. To verify the effectiveness of CaO addition to remove HCl and toxic gases generated from thermal decomposition of PVC wire, the gaseous products obtained from the thermal decomposition of PVC were analyzed by GC/MS(Gas Chromatograph and Mass Spectrometry). To investigate the effect of CaO in thermal decomposition of PVC, liquid products were also analyzed by GC/MS. And the effect of decomposition temperature, air flow rate and CaO/ PVC weight ratio on the yield of liquid, gas and residue fraction have been also studied. From this work, it was found that the removal amount of HCl generated from thermal decomposition of PVC increased with increase of CaO addition.

A Study on the Ventilation Schemes for Gas Leakage and Dispersion Controlling at the Backfilled Working Face in Large-Opening Underground Mine (대단면 지하광산 갱도내 뒷채움 작업장 가스유출 및 확산제어 통기방안 연구)

  • Nguyen, Vanduc;Lee, Changwoo
    • Tunnel and Underground Space
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    • v.28 no.4
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    • pp.372-386
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    • 2018
  • The air quality near the backfilled site area is significantly deteriorated during and even after the curing period of the backfill materials. Hazardous gases such as NH3 and CO2 may leak out prolongedly from the mined-out sites backfilled with the composite carbonate-based material; leakage can be observed at the underground working sites as well as on the surface. At operating mines, underground gas leakage will severely aggravate the workplace environment. The ventilation schemes should supply sufficient air to dilute the contaminated air, and control the toxic gas leakage and dispersion. This study shows the applicability of pressurization ventilation system to control gas leakage and dispersion at the backfilled underground mine site.

Application of Fuzzy Logic for Predicting of Mine Fire in Underground Coal Mine

  • Danish, Esmatullah;Onder, Mustafa
    • Safety and Health at Work
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    • v.11 no.3
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    • pp.322-334
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    • 2020
  • Background: Spontaneous combustion of coal is one of the factors which causes direct or indirect gas and dust explosion, mine fire, the release of toxic gases, loss of reserve, and loss of miners' life. To avoid these incidents, the prediction of spontaneous combustion is essential. The safety of miner's in the mining field can be assured if the prediction of a coal fire is carried out at an early stage. Method: Adularya Underground Coal Mine which is fully mechanized with longwall mining method was selected as a case study area. The data collected for 2017, by sensors from ten gas monitoring stations were used for the simulation and prediction of a coal fire. In this study, the fuzzy logic model is used because of the uncertainties, nonlinearity, and imprecise variables in the data. For coal fire prediction, CO, O2, N2, and temperature were used as input variables whereas fire intensity was considered as the output variable.The simulation of the model is carried out using the Mamdani inference system and run by the Fuzzy Logic Toolbox in MATLAB. Results: The results showed that the fuzzy logic system is more reliable in predicting fire intensity with respect to uncertainties and nonlinearities of the data. It also indicates that the 1409 and 610/2B gas station points have a greater chance of causing spontaneous combustion and therefore require a precautional measure. Conclusion: The fuzzy logic model shows higher probability in predicting fire intensity with the simultaneous application of many variables compared with Graham's index.

A Case of Non-cardiogenic Pulmonary Edema caused by Nitrogen Dioxide Poisoning after Cutting Copper Pipe with an Oxyethylene Torch (산소 에틸렌 토치로 동파이프 절단작업 후 발생한 이산화질소 중독에 의한 비심인성 폐부종 1례)

  • JeGal, Yang-Jin;Ahn, Jong-Joon;Seo, Kwang-Won;Cha, Hee-Jeong;Kwon, Woon-Jung;Kim, Yang-Ho
    • Journal of The Korean Society of Clinical Toxicology
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    • v.4 no.2
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    • pp.175-179
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    • 2006
  • Welders are exposed to a number of hazards including metal fumes, toxic gases, electricity, heat, noise, and radiation such as ultraviolet and infrared light. We encountered a patient who developed non-cardiogenic pulmonary edema within a day after cutting copper pipe with an oxyethylene torch. The patient was a 26-year-old welder. He complained of dyspnea, generalized myalgia, and febrile sensation the following morning. The patient's chest X-ray and chest CT scan showed extensively distributed and ill-defined centrilobular nodules. Both his symptoms and chest X-ray abnormalities improved spontaneously. We attributed the patient's symptoms to non-cardiogenic pulmonary edema due to nitrogen dioxide, reasoning that: 1) the pipe consisted only of copper, according to material safety data sheet (MSDS); 2) a previous report in the literature demonstrated increased nitrogen dioxide levels under similar conditions; 3) the patient's clinical course and radiologic findings were very reminiscent of non-cardiogenic pulmonary edema following accidental exposure to nitrogen dioxide.

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A Study on the Improvement of Methodologies for Establishing a Vulnerability Classification of Chemical Terrorism in Public Facilities (다중이용시설 화학테러 취약등급설정 방법론 개선에 대한 연구)

  • Joo, Sun Ho;Kim, Si-Kuk;Hong, Sungchul
    • Fire Science and Engineering
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    • v.34 no.1
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    • pp.89-102
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    • 2020
  • Chemical terrorism using toxic and flammable gases, which could be fatal to the health of the human body, poses a serious threat to the security of most advanced countries, as well as those that are suffering from local disputes, due to the asymmetric information that exists between terrorist actors and victims. The countermeasures against chemical terrorism can be roughly divided into three stages: prevention, response, and probation. The critical factors for each professional response agency, and the personnel that determine the degree and range of chemical terrorism damage, are performing missions successfully in the process of the prevention and the response stage against chemical terrorism. To do this, conducting objective and systematical assessments on facilities that could potentially be the subject of chemical terrorism is more important than anything. In this study, we compared the existing domestic and foreign vulnerable classification systems for chemical terrorism, reviewed the current direction of improvement in domestic classification systems, and suggested more scientific and systematic methodologies through the vulnerability assessment on an actual public facility sample.

Photonic-Crystal-Based Thin Film Sensor for Detecting Volatile Organic Compounds (광결정 기반의 휘발성 유기 화합물 검지 박막 센서)

  • Chang, Hyung-Kwan;Park, Jungyul
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.40 no.3
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    • pp.149-155
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    • 2016
  • Early detection of toxic gases, such as volatile organic compounds (VOCs), is important for safety and environmental protection. However, the conventional detection methods require long-term measurement times and expensive equipment. In this study, we propose a thin-film-type chemical sensor for VOCs, which consists of self-assembled monosize nanoparticles for 3-D photonic crystal structures and polydimthylsiloxane (PDMS) film. It is operated without any external power source, is truly portable, and has a fast response time. The structure color of the sensor changes when it is exposed to VOCs, because VOCs induce a swelling of the PDMS. Therefore, using this principle of color change, we can create a thin-film sensor for immediate detection of various types of VOCs. The proposed device evidences that a fast response time of just seconds, along with a clear color change, are successfully observed when the sensor is exposed to gas-phase VOCs.

Immunological Assessment of Respiratory Allergy Status for the Swine Farm Workers in Gyeonggi Province of Korea (경기 일부지역 양돈 축산인들의 호흡기 알레르기 관련 면역학적 지표 분석)

  • Kim, Ji Youn;Kim, Kwang Ho;Hwang, So Ryeon;Yeo, Kyeong Uk;Kim, Hyoung Ah;Heo, Yong
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.22 no.4
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    • pp.309-315
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    • 2012
  • Objectives: Animal husbandry workers could be exposed to various work hazards including toxic gases, chemicals such as pesticides or organic dust. Immunological evaluation focusing on respiratory allergic hypersensitivity occurrence was under-taken for swine farm workers as a part of the study on immunologic status of dairy barn, swine confinement, and poultry farm workers. Materials and Methods: Peripheral bloods were collected from 25 workers at the year of 2001 and 12 workers at the year of 2012 from swine farms located at Gyeonggi province, Korea. Seven adults not involved with animal husbandry were recruited at the year of 2001 from the same residential area as the swine farm workers'. Level of plasma IgE and 20 respiratory allergen-specific IgE were evaluated using commercially available ELISA kit. Results: Plasma IgE level was approximately five-fold higher in the swine farm workers regardless of the sampling year than the control subjects. Plant allergens from outdoor environments such as golden rod, pigweed, Russian thistle, or ragweed were the major allergens with positive reaction(allergen specific IgE${\geq}$0.7 IU/mL) for the swine farm workers at 2001 year. Meanwhile, house dust mite(Dermatophagoides farinae, D. pteronyssinus) and cockroach, typical indoor allergens in Korea, were the major respiratory allergens for the swine farm workers at 2012 year. Conclusions: Overall, even though our results are primitive, the results suggest that immunological function of swine farm workers could be modulated toward type-2 reactivity.