• Title/Summary/Keyword: Combustibility

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Burn-up Characteristics of Polymer-Modified Cement Mortar Used for Building Repair (고온시에서의 폴리머 시멘트 모르타르의 연소특성에 관한 연구)

  • Kim, Hyung-Jun;Noguchi, Takahumi
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2012.05a
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    • pp.295-298
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    • 2012
  • Repair and strengthening is necessary to extend the service life of existing buildings. Polymer-modified cement mortar (PCM) has been extensively used as a high performance material particularly for finishing and repairing works in concrete building because of itsexcellent adhesion, waterproofing, resistance to chemical attack, and workability. As PCM contains organic polymer, it is necessary to clarify its properties at high temperature under fire, on which sufficient data are not available. This paper evaluated the burn-up characteristics of polymer-modified cement mortar with cone calorimeter test, non-combustibility test and flammability test with experimental parameters such as the types of polymer, unit-polymer content, polymer-cement ratio and thickness of the specimen.

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Smouldering Combustibility of Cellulose Insulation Treated with Boric acid-Borax-Alum. Formulation (Boric acid-Borax-Alum. 계 셀룰로오스 단열재의 훈소특성 연구)

  • Kim, Hong
    • Journal of the Korean Society of Safety
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    • v.6 no.1
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    • pp.14-25
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    • 1991
  • The smouldering combustibility of cellulose insulation treated with boric acid-borax-alum as combustion retardants are examined by cigarette ignition method and electrical cardrige heater method. The alum to be required at an add on level of at least 12% by weight of cellulose treated with boric acid-borax-alum=2 : 1 : 2 fomulatlon if resistance to smouldering combustion by cigarette ignition is to be achived. The optimum electrical ignition source employed by electrical cartidge heater method was 23.2 watts(80V) power level The effectiveness of Alum as a third combstion retardant are acceptable both smouldering resistance and flame resistance at 18% level of all examined formulation.

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Comparative Smoke Analysis of CORESTA Monitoring Cigarettes (CORESTA 모니터링 담배의 비교 분석)

  • Lee, Seung-Yong;Ji, Sang-Un;Shin, Hea-Geun
    • Journal of the Korean Society of Tobacco Science
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    • v.33 no.1
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    • pp.28-38
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    • 2011
  • This experiment was conducted as a part of Asia collaborative study on purpose of verifying the difference between CM6 and CM7 including 3R4F for reference. It carried out using various analytical categories for example, main stream, sidestream and Av. smoke. Additional analysis such as physical properties, blending ratio, combustibility and general leaf component analysis also implemented in order to investigate the difference. We complied with ISO standard and CORESTA recommended method during analytical operating procedures. In this study, we described that comparative analytical result for CM6 and CM7 known as reference or monitoring cigarettes including 3R4F for reference. All sample cigarettes were conditioned at $22^{\circ}C$, 60% relative humidity for 48 hours. Av. Smoke, MS and SS smoke analysis were performed over five times with two smoking condition, ISO and Health Canada with the exception of Av. smoke analysis. We complied with ISO standard method during analytical operating procedures. And, we conducted additional analysis, such as physical properties, blending ratio, combustibility and leaf component analysis also in order to investigate the difference. In conclusion, we found out some differences between CORESTA monitoring cigarette No. 6 and No 7. The smoke components such as total particulate matters, NFDPM, nicotine and carbon monoxide contents of CM7 were a little lower than CM6. And, these phenomena were the same as not only main stream smoke but also side stream smoke and Av. smoke. This tendency was consistent with ISO and Health Canada smoking condition. Besides, leaf constituents' color of CM7 was darker than CM6. In case of combustibility, it showed short combustion time approximately 30 seconds.

A Study on the Refractory Performance Verification of the Thermal Insulators for AES Ducts and Piping (AES 계열 덕트·배관 단열재의 내화성능 검증에 관한 연구)

  • Kwang-Ho Ham;Jea-Chun Sa;Joo-Hwan Lee;Se-Hong Min
    • Journal of the Society of Disaster Information
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    • v.20 no.2
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    • pp.419-429
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    • 2024
  • Purpose: To enhance the non-combustibility of fire protection piping insulation and improve the heat resistance of smoke extraction duct insulation, I plan to verify the suitability of AES insulation materials for these applications through performance testing. Method: The non-combustibility, heat resistance, and thermal insulation performance of AES insulation materials will be verified through various tests. Result: According to the 'Standards for Flame Retardancy and Fire Spread Prevention of Building Finishing Materials,' the results of non-combustibility and gas toxicity tests confirmed the non-combustible properties. The standard fire resistance tests verified the fire resistance performance. Additionally, the thermal insulation performance was confirmed through building insulation tests. Conclusion: As the performance tests on AES inorganic insulation materials have proven their noncombustibility, fire resistance, and thermal insulation performance, these materials are considered a viable alternative for improving fire spread prevention in buildings.

Studies on Reduction of Harmful Compound and Combustibility of $Na_3$ Citrate-treated Cigarette (시트르산나트륨첨가(添加)에 의(依)한 담배의 연소성(燃燒性) 및 유해물감소(有害物減少)에 관한 연구(硏究))

  • Kim, Ki-Hwan;Bae, Hyo-Won;Lee, Yong-Chong;Kim, Man-Uk;Park, Taek-Kyu
    • Applied Biological Chemistry
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    • v.20 no.1
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    • pp.117-122
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    • 1977
  • Development of new burning additives against nitrate salts used in past tobacco industry examined to reduce harmful nitrogenous compounds in smoke. Among several additives treated, the best effect by means of elevation of combustibility and reduction of tar and nicotin contents in smoke was observed by adding sodium citrate from 0.6 to 1% in tabacco. The following results were obtained through investigating combustibility, chemical composition, and differential thermal analysis of the tabacco treated with the buring additives. 1) The close relation was observed between the levels of the smoke components and combustibility of the treated tabacco. 2) Differential thermal analysis (D.T.A.) of citrate-treated tobacco shows an increase in H. Value and a decrease in L. Value as compared with other tobacco sample. 3) The D.T.A. of sodium-nitrate and sodium-citrate shows that sodium-nitrate gives endothermal reaction at $270^{\circ}$ and $310^{\circ}$ and sodium citrate gives exothermal reaction at $290^{\circ}$ with endothermal reaction at $170^{\circ}\;and\;310^{\circ}$. 4) $Na_3-citrate-treated$ tobacco shows an increase in smoke generation between room temperature and $350^{\circ}$ (Zone A) and a decrease in smoke generation between $350^{\circ}$ and $900^{\circ}$ (Zone B) compared with untreated tobacco. The smoke from these tobacco also contains lower levels of Tar, Nicotine, Phenols, Nitrogen oxides and Benzpyrene, and elevation of static Burning rate.

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Fire Safety Administration Way of Tradition Buddhist Temple Cultural Heritage (전통사찰 문화재의 화재안전 관리방안에 관한 고찰)

  • Shin, Min-Seob;Kong, Ha-Sung
    • Journal of Conservation Science
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    • v.23
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    • pp.119-124
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    • 2008
  • Have difficult controversial point to suppress fire effectively by geographical special quality that fire is transmitted and is during the mountain with the fast speed if our country's tradition Buddhist temple makes of most wood and most of construction structure of country importance tradition Buddhist temple are ignited once because combustibility is high as wood. By fire safety supervision improvement way of tradition Buddhist temple cultural heritage in this treatise law and systematic side, Side that is construction room robbers, disaster and prevention of disasters basis system construction and stream tube engine combination check, training courtesy call activity reinforcement present.

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난연성 셀룰로오스 복합성형체 제조 및 특성

  • 김동국;강영구
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 2002.05a
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    • pp.49-52
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    • 2002
  • 경량 건축소재는 건축자재의 경량화, 고급화 및 다양화 등의 기능성 건축소재로서 역할을 요구하고 있으며 그 중 대표적인 것으로서는 polyurethane foamd, Cellulose, 무기 fiber 등이 건축소재로 이용되고 있다. Cellulose계의 wood material의 경우 건축폐재, 가로수의 전지나무 및 제재공장에서 발생하는 나무쓰레기, 대패밥 등과 폐신문지 등의 가공 후 폐기물이 발생하고 있으며 이러한 Cellulose계의 물질들은 고유한 습기의 조절능력, 단열특성을 가지고 있으나 Combustibility, rotting, warping 등의 단점을 가지고 있다 이러한 단점을 극복하기 위해 현대생활환경에 접근할 수 있는 새로운 cellulose계의 modification 및 기술적으로 많이 연구되어지고 있다.(중략)

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Ash Drop Measuring on Tobacco Leaf Grades and Brand Cigarettes (잎담배 및 제품담배의 재떨어짐에 관한 연구)

  • Yang Burm-Ho;Ahn Dae-Jin;Jo Si-Hyung;Jeh Byong-Kwon;Kim Si-Mong;Kim Byeoung-Ku
    • Journal of the Korean Society of Tobacco Science
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    • v.26 no.2 s.52
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    • pp.117-125
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    • 2004
  • In this study, we have investigated the natural and puffing combustibility of cigarette brands and the compulsory ash-drop, and analysed factors related to the materials. Cigarette combustibility was greatly affected by the tobacco weight in cigarettes rod. Combustion rate of 4AOR cigarette made by flue-cured tobacco was 5.02 $^{mm}/_{min}\;and\;10\%$ faster than 1BO cigarette. Combustion pattern has interrelation with sugars, chlorine and ash contents among tobacco components. Combustion rate of 4DL, flue-cured tobacco was 55 seconds faster than 1CL tobacco extremely much in sugars contents, and ash drop was maintained at $21\%$ longer. Combustion time and burning rate were fast in cigarette made by expanded tobacco slice and tobacco stem and the formation of ash was poor. The length of puffed ash drop of expanded tobacco slice and tobacco stem were 18.6 mm and 25.2 mm and these forced ash drop length were 3.8 mm and 4.9 mm respectively. Puffed burning rate of general cigarette was $14.3\%$ faster than static burning rate and super slim type cigarettes was $21.3\%$ faster. Combustion rate and ash drop of domestic and foreign cigarette brands were quite different depending on tar level and cigarette types. The lower tar level, the faster combustion rate and the shorter ash drop.

The physicochemical characteristics of manufactured RPF by industrial combustibility waste (사업장 가연성폐기물로 제조된 RPF의 물리화학적 특성)

  • Ryu, Young-Bok;Kim, Yang-Do;Kang, Min-Su;Lee, Gang-Woo;Shon, Byung-Hyun;Lee, Man-Sig
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.1
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    • pp.234-241
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    • 2010
  • Industrial combustible waste is very valuable source for refuse derived solid fuel since its heating value is usually over 3,000kcal/kg. Especially, synthetic high molecular compound which is high of productivity and heating value is used as raw material in many cases. Film type plastic has been widely used for producing RPF because their shaping is easy and they has high heating value. On the other hand, the possibility of various type of waste as a source for RPF in this study. It has been found that resin compound drived and tire derived solid fuel showed more than 6,000kcal/kg of heating value. But the heating value decreased by adding paper and wood waste.

A Study on the Development of the Charcoal with Low Carbon Monoxide Emission using Biomass Combustion Improver (바이오매스 조연제를 이용한 CO저감형 착화탄 개발에 대한 연구)

  • Kim, Seunghee;Lee, Yeonkyung;Lee, Junseok;Jeon, Chunghwan
    • Journal of Energy Engineering
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    • v.25 no.3
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    • pp.9-17
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    • 2016
  • In this study, a method for CO reduction using char-coal combustions was developed with lignin and glycerin as combustion improvers. The relationship between CO emission and the combustion improvers was confirmed by measuring the CO concentration. The experiment to determine the combustion characteristics was conducted using glycerin, which shows high combustibility at low temperatures, impregnated with lignin, which has a specific surface area. The combustibility, volatility, and CO concentration were measured using thermo-gravimetric analysis(TGA), and gas chromatography-mass spectrometry(GC-MS). This study presents the optimal CO reduction ratio, which occurred when the combustible material contained a 20% blend of combustion improvers. This resulted in a 20-30% CO reduction rate compared to that achieved with normal char-coal.