• Title/Summary/Keyword: isocyanates

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Evaluation of Exposure to Isocyanates Used in Furniture Industry (가구산업에 사용되는 이소시안화물 폭로에 대한 평가)

  • Lee, Su-Gil;Lee, Nae-Woo;Pisaniello, Dino. L
    • Journal of the Korean Society of Safety
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    • v.21 no.2 s.74
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    • pp.138-142
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    • 2006
  • Occupational asthma is commonly known to be induced by isocyanate exposure. Spray painters generally use isocyanates for 2-pack spray painting to coat wooden panel surfaces in the furniture industry in South Australia. Due to a lack of actual exposure data, this study conducted environmental and dermal/ocular monitoring from a company in the furniture industry. According to this study, there was no significant airborne contamination, due to the use of high volume low pressure (HVLP) spray guns, low concentration of hardener in paint solutions and appropriate respirator like full face-air line respirator. There was no significant HDI detection in the general work area around the spray booths. Owing to the use of disposable nitrile gloves during the spray painting, no significant dermal exposure was found. According to color monitoring, there was a possible dermal exposure from surfaces in the workplace, unless either protective gloves were worn or appropriate working practices like clean-up process and storage in a secure places. No eye contamination was detected from the spray painters. No significant exposure levels from inhalational, dermal, ocular were found. The area of most concern was work practices.

A Study on Performance of Protective Gloves to Isocyanate Toxicity (이소시안화물 독성에 대한 보호장갑의 성능 연구)

  • Lee, Su-Gil;Pisaniello, Dino;Lee, Nae-Woo
    • Journal of the Korean Society of Safety
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    • v.23 no.6
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    • pp.62-69
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    • 2008
  • As the concerns of dermal exposure of spray painters to isocyanates in the automobile industry, glove performance was examined like permeation rate and breakthrough time including fatigue test. Methylene chloride was used as the solvent for derivatization of the isocyanates with a 97.5% recovery. Ghost wipe pads were used to wipe the surface of the glove material after chemical penetration through the glove material placed under a disposable test cell. Several solvents were tested, such as thinner(xylene, toluene) and cleaning agent(acetone) by using a standard permeation test cell(AS/NZS standard 2161. part 10.3). Solvents accelerate chemical permeation through the gloves more quickly than pure HDI hardener products. The longest breakthrough times were from Nitrosolve gloves, not detected in 8 hours, compared with others like Latex, Neoprene, TNT and Dermo Plus. Therefore Nitrosolve gloves could be recommended as personal protective equipment in crash repair shops. In addition, revised exposure limit of korean regulation should be suggested for employee to minimize the risk of health symptoms.

Synthesis of Sulfonylurea Derivatives by Oxalylchloride (Oxalylchloride를 이용한 Sulfonylurea계 유도체 합성에 관한 연구)

  • Kyung, Suk-Hun;Tak, Yoon-Heung
    • Korean Journal of Environmental Agriculture
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    • v.8 no.2
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    • pp.136-141
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    • 1989
  • An alternative method for the synthesis of sulfonylurea derivatives, some of which considered to be a new recommendable herbicides, with oxalylchloride was investigated. Sulfonamides read with oxalylchloride to sulfonyloxamoylchlorides, which convert easily under pyrolysis to sulfonylisocyanates. The isocyanates react further with amines to yield corresponding sulfonylurea derivative quantitatively.

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Synthesis of sulphonic acids and sultam derivatives

  • Ismail, Ibrahim-Imam
    • Archives of Pharmacal Research
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    • v.13 no.1
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    • pp.1-4
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    • 1990
  • Reaction of propane-1, 3-sultone with amines gave N-substituted aminosulphonnic acids 2a-i, Dehydration of 2a-c with $POCI_3$ gave the corresponding sultams 3a-c. Propane-1, 3-sultone 1 reacted with tertury amines to give the betaiene salts 4-11. 2-4-Dimethyl-1, 3-butadiene-1, 4-sultone 12 condensed with amines to give N-substituted-2, 4-dimethyl-1, 3-butadiene-1, 4-sultames 13a and 13b. The reaction of 3a, 13a with hydrazine hydrate gave acid hydrazides 3d or 13c. Compounds 3d, 13c reacted with isocyanates to yield urea derivatives 14a-c, 15a-c.

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Preparation ann their Characteristics of Microcapsules for Fragrant Fiber

  • Kijeong Hong;Park, Soomin
    • Proceedings of the Korean Fiber Society Conference
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    • 1998.10a
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    • pp.162-165
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    • 1998
  • Characteristics of microcapsule wall depend on chemical and physical condition in procedure such as type and concentration of constituent and microencapsulation methods, thus, if the other process conditions are same, they depend on mainly types of wall-forming materials. Isocyanates used in this study are very important constituent as hard segments preparing urethane or urea by reaction with alcohol or amine. (omitted)

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Chemical Composition of Painting Materials used in Some Korean Shipyards (조선업의 도장 작업시 취급하는 도료중 유해물질 성분에 관한 연구)

  • Shin, Yong Chul;Yi, Gwang Yong
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.9 no.1
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    • pp.156-172
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    • 1999
  • Potential chemical hazards encountered in painting operation of four shipyards and a ship-repair shop were investigated through the material safety data sheets (MSDS). Material safety data sheets (MSDS) for 307 paints, 50 thinners and 34 binders were collected and reviewed. It was shown that various organic solvents such as aromatic hydrocarbons, aliphatic hydrocarbons, ketones, alcohols, glycols, glycol ether acetates and esters were contained in painting materials. Of these solvents, xylene was found in the largest number of painting materials. sixty percent of the thinners contained xylene in the contents of 20-100%. Other most frequently found solvents were 1-methoxypropanol, 1-methoxypropyl acetate, n-butanol, methyl isobutyl ketone, toluene, isopropanol, and n-butyl acetate, etc. Glycol ethers such as 2-methoxyethanol (2-ME), 2-methoxyethyl acetate (2-MEA), 2-ethoxyethanol (2-EE), 2-ethoxyethyl acetate (2-EEA) and 2-butoxyethanol (2-BA) were regarded as having the potential to cause adverse reproductive effects, embryotoxic effect and hematotoxic effects, and were found in some epoxy panting materials. Coal tar pitch was included in some paints(13%) where polynuclear aromatic hydrocarbons (PAHs) could be contaminated. Inorganic pigments such as lead chromate and zinc potassium chromate were found in some paints (8%). The epoxy resin based paints, which may contain isocyanates such as toluene diisocyanates and hexamethylene diisocyanates causing potential sensitization and asthma to upper respiratory organ, were mostly used in the shipyards. The constituents in the MSDS were significantly different from the results analyzed using gas chromatography/mass detector: minor constituents or impurities were omitted in many MSDS. In conclusion, xylene was the most frequent organic solvent in painting materials, and glycol ethers, including 2-ME, 2-MEA, 2-EE, 2-EEA and 2-BA, were found some products. Also, painting workers may be exposed to PAHs, lead, chromate, isocyanates, organic tin and other various chemicals. The compositions of chemicals in painting materials were variable significantly, and the hazards were changed. These facts should be considered in environmental monitoring and control of the hazards.

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Development of a New Method for Total Isocyanate Determination Using the Reagent 9-Anthracenylmethyl 1-Piperazinecarboxylate(PAC):Part 1 - The reaction condition and stability (9-Anthracenylmethyl 1-Piperazinecarboxylate(PAC)을 이용한 공기중 총이소시아네이트 분석방법 개발:제1부 반응조건 및 안전성)

  • Roh, Young-Man;Streicher, Robert P.
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.9 no.2
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    • pp.167-176
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    • 1999
  • A new analytical procedure for the measurement of monomeric isocyanates and total isocyanate group in workplaces has been investigated. The method described herd involves derivatization of the isocyanate sample upon collection with the reagent 9-anthracenylmethyl 1-piperazinecarboxylate (PAC). Laboratory investigations have demonstrated that excess PAC reagent can be satisfactorily removed from PAC-derivatized monomeric isocyanates-a requirement for the success f the analytical procedure. After removal of excess PAC reagent, the PAC derivatives of butyl isocyanate, phenyl isocyanate, HDI, MDI, and TDI were reacted with sodium thiomethoxide to convert them all to 9-anthracenylmethyl methyl sulfide (AMMS). Total isocyanate group was determined by HPLC analysis and quantification of the single AMMS peak. This circumvents many of the disadvantages associated with current HPLC methods. There were no longer problems associated with quantifying late-eluting peaks and analysis times were very short. A single detector was used for quantification because a standard of the analyte existed and the retention time could be determined. Because all species were converted to a single analyte, the problem of variability of response factors among different species was averted. Finally, there were no complex chromatograms to interpret. Monomers of other individual species were measured by analysis of the sample before the individual species were converted to AMMS. The favorable performance of PAC warrants its further study as a reagent for the determination of total isocyanate group in air.

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Production of Biopolyols, Bioisocyanates and Biopolyurethanes from Renewable Biomass (바이오매스 자원을 활용한 바이오폴리올, 바이오이소시아네이트 및 바이오폴리우레탄 제조)

  • Jo, Yoon Ju;Choi, Sung Hee;Lee, Eun Yeol
    • Applied Chemistry for Engineering
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    • v.24 no.6
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    • pp.579-586
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    • 2013
  • The shortage of fossil fuel and problem of greenhouse gas exhaustion drive the production of biopolymer in a environment-friendly manner. Polyurethane is a polymer formed by reacting an isocyanate (-NCO) with a polyol (-OH) to form urethane link (-NHCOO-). Polyurethane is one of the most widely used polymers in automobile, construction and chemical industries. Two monomers for the polymerization of polyurethane, polyols and isocyanates, can be produced from renewable biomass such as plant oil, cellulose, lignin and etc. Biopolyol production from plant oil has already been implemented in commercial-scale production. In this paper, recent progresses on bio-based approaches on the production of biopolyols, bio-isocyanates and bio-substituent or isocyanate from bio-feedstock are reviewed alongside polymerization and characterization of biopolyurethane for industrial applications.