• Title/Summary/Keyword: 1-Hexene

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Study on Inhalation Toxicity of 1-Hexene in SD Rats (SD Rats를 이용 1-hexene의 흡입독성 연구)

  • 김현영;임철홍;정용현;이권섭;이성배;이준연;한정희;전윤석;이용묵
    • Environmental Analysis Health and Toxicology
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    • v.16 no.4
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    • pp.211-221
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    • 2001
  • The purpose of this study was to investigate the acute (4 hours) and repeated-dose (6 hours a day, 5 days a week, 4 weeks) toxic effects of 1-hexene on Sprague-Dawley (SD) rats which were treated by inhalation. The results were as follows; 1. The median lethal concentration(LC$_{50}$) was estimated 52,694 ppm (confidence limit 95%; 49,494~55,447 ppm) in acute inhalation. Abnormal clinical signs related to the 1-Hexene were not observed with the acute inhalation dose. Cross findings of necropsy revealed on evidence of specific toxicity related to the 1-hexene. II. By repeated inhalation exposure the body weight of male were more or less reduced by the dose of 2,500 ppm and 5,000 ppm compared with control group. However there were no significant variation hematology and blood biochemistry for the exposed rats compared with the control rats. Abnormal clinical signs and gross findings of necropsy related to the 1-hexene were not shown. In conclusion when we exposed 1-hexene to SD rats for 4 weeks, 5 days per week, 6 hours per day, the Lowest observed effect level (LOEL) was over 2,500 ppm and Non observed effect level (NOEL) was below 500 ppm.

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Zeolite-catalyzed Isomerization of 1-Hexene to trans-2-Hexene: An ONIOM Study

  • Li, Yan-Feng;Zhu, Ji-Qin;Liu, Hui;He, Peng;Wang, Peng;Tian, Hui-Ping
    • Bulletin of the Korean Chemical Society
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    • v.32 no.6
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    • pp.1851-1858
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    • 2011
  • Details of the double-bond isomerization of 1-hexene over H-ZSM-5 were clarified using density functional theory. It is found that the reaction proceeds by a mechanism which involves the Br${\o}$nsted acid part of the zeolite solely. According to this mechanism, 1-hexene is first physically adsorbed on the acidic site, and then, the acidic proton transfers to one carbon atom of the double bond, while the other carbon atom of the double bond bonds with the Br${\o}$nsted host oxygen, yielding a stable alkoxy intermediate. Thereafter, the Br${\o}$nsted host oxygen abstracts a hydrogen atom from the $C_6H_{13}$ fragment and the C-O bond is broken, restoring the acidic site and yielding trans-2-hexene. The calculated activation barrier is 12.65 kcal/mol, which is in good agreement with the experimental value. These results well explain the energetic aspects during the course of double-bond isomerization and extend the understanding of the nature of the zeolite active sites.

A Study on Copolymerization of Propylene over Butene-1 and Hexene-1 Comonomer (부텐-1과 헥센-1 코모노머를 이용한 프로필렌의 공중합에 관한 연구)

  • Yang, Hyun S.;Lee, Seng C.
    • Applied Chemistry for Engineering
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    • v.7 no.4
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    • pp.623-632
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    • 1996
  • The reactivity ratios, melting temperature and polymer morphology in propylene/butene-1 and propylene/hexene-1 copolymerization reactions were studied by examining comonomer compositions of resulting polymers. The catalysts used here are different in their supports which are silica(catalyst I) and magnesium(catalyst II). As the content of comonomer(butene-1 and hexene-1) increased in the copolymer, the melting temperature of the copolymer decreased. The morphology of polymer was amorphous in the range of comonomer(butene-1) composition over 40% in the propylene/butene-1 copolymerization and comonomer(hexene-1) composition over 80% in the propylene/hexene-1 copolymerization. The reactivity ratios were obtained by the Fineman-Ross and Kelen-$T{\ddot{u}}d{\tilde{o}}s$ methods.

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Mornitoring of 1-hexene and 1-octene in Hygienic Polyethylene-based Packaging (폴리에틸렌계 위생용 용기포장재중의 1-hexen과 1-octene 조사)

  • Cho, Sung-Ja;Kim, Ae-Kyung;Kwak, Jae-Eun;Kim, Ji-Young;Kim, Si-Jung;Kum, Jin-Young;Kim, Il-Young;Kim, Jung-Hun;Chae, Young-Zoo
    • Journal of Food Hygiene and Safety
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    • v.26 no.4
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    • pp.383-387
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    • 2011
  • The levels of migration of 1-hexene and 1-octene residues in PE (polyethylene) products were analyzed by Headspace gaschromatography (HSGC). A total of 21 samples were including lap, polyglove, zipper bag and ect. The samples were eluted with distilled water, 4% acetic acid, 20% ethanol and n-heptan. The limit of detection (LOD) was 0.06 mg/L ~ 0.30 mg/L and limit of quantitation (LOQ) was 0.21 mg/L ~ 1.01 mg/L, respectively. But because of the high volatile, n-heptan elution was not detected 1-hexene and 1-octene standard. 1-hexene and 1-octene were not detected in the sample which eluted with simulant at $60^{\circ}C$, 30min. Microwave for 1 minute also treated sample and direct heated at $100^{\circ}C$ without simulant were not detected.

Copolymerizations of Ethylene with 1-Hexene over ansa-Metallocene Diamide Complexes

  • Kim, Il;Kwak, Chang-Hun;Son, Gi-Wan;Kim, Jae-Sung;Sinoj Abraham;Bijal K. B.;Ha, Chang-Sik;Kim, Bu-Ung;Jo, Nam-Ju
    • Macromolecular Research
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    • v.12 no.3
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    • pp.316-321
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    • 2004
  • We have performed copolymerizations of ethylene with 1-hexene using various ansa-metallocene compounds in the presence of the non-coordinative [CPh$_3$][B(C$\_$6/F$\_$5/)$_4$ion pair as a cocatalyst. The metallocenes chosen for this study are isospecific metallocene diamide compounds, rac-(EBI)Zr(NMe$_2$)$_2$ [1, EBI = ethylene-l ,2-bis(1-indenyl)], rac-(EBI)Hf(NMe$_2$)$_2$ (2), rac-(EBI)Zr(NC$_4$H$\_$8/)$_2$ (3), and rac-(CH$_3$)$_3$Si(1-C$\_$5/H$_2$-2-CH$_3$-4-$\^$t/C$_4$H$\_$9/)2 Zr(NMe$_2$)$_2$ (4), and syndiospecific metallocene dimethyl compounds, ethylidene(cyclopentadienyl)(9-fluorenyl) ZrMe$_2$ [5, Et(Flu)(Cp )ZrMe$_2$] and isopropylidence (cyclopentadienyl)(9-fluorenyl)ZrMe$_2$ [6, iPr(Flu)(Cp)ZrMe$_2$]. The copolymerization rate decreased in the order 4 >1-3>2 >5>6. The reactivity of I -hexene decreased in the order 2 >6>1- 3-5> 4. We characterized the microstructure of the resulting poly(ethylene-co-l-hexene) by $\^$l3/C NMR spectroscopy and investigated various other properties of the copolymers in detail.

Effects of Comonomer and Various Polymerization Conditions on Terpolymerization (삼원공중합에 있어서 공단량체 및 여러 가지 중합조건이 미치는 영향)

  • Kim, Jung Soo;Jeon, Dong-Gyu;Kim, Tae-Wan;Kim, Hyun Ki;Kim, Dong Hyun
    • Elastomers and Composites
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    • v.48 no.4
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    • pp.263-268
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    • 2013
  • In this study, we prepared poly(ethylene-ter-1-hexene-ter-divinylbenzene) using bridged rac-$Et[Ind]_2ZrCl_2$ metallocene catalysts. The effect of 1-hexene on the terpolymerization rate was evaluated. When cocatalyst/catalyst molar ratio was 3,000, catalytic activity indicated more than 8,000 which was very remarkable value. As polymerization time increased, the weight-average molecular weight of the terpolymer gradually increased to some degree. In case of a polymerization time of 50 minutes, the terpolymer became amorphous state. The molecular weight distribution and densities of the terpolymer were 110,000-200,000 and $0.85-0.89g/cm^3$, respectively. Thermal properties and structure of the terpolymer were also identified.

Effect of Additives on Gamma Radiolysis of Methanol (메탄올의 감마선 분해에 대한 첨가물의 영향)

  • Choi, Sang-Up
    • Journal of the Korean Chemical Society
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    • v.14 no.3
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    • pp.237-242
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    • 1970
  • Effect of Added 1-hexene on the yield of hydrogen produced from Co-60 gamma radiolysis of methanol was investigated at room temperature. The results indicated that the yield of hydrogen decreased rapidly with increasing 1-hexene concentrations. Effect of added methyl borate on the radiolysis of methanol was also studied in the presence of oxygen. The results revealved that methyl borate acted as a less effective scavenger than oxygen towards the precursors of the radiolysis products. Experimental data previously obtained on the systems with oxygen added were treated more quantitatively to re-examine mechanism of the radiolysis of methanol in detail.

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Preparation of Reactive Poly(ethylene-ter-1-hexene-ter-divinylbenzene) using Metallocene Catalysts (메탈로센 촉매를 이용한 관능성 Poly(ethylene-ter-1-hexene-ter-divinylbenzene)의 제조)

  • Kim, Dong-Hyun
    • Elastomers and Composites
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    • v.46 no.4
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    • pp.304-310
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    • 2011
  • In this study, we prepared poly(ethylene-ter-1-hexene-ter-divinylbenzene) using briged rac-$Et[Ind]_2ZrCl_2$ or unbriged $Cp_2ZrCl_2$ metallocene catalysts. Bridged rac-$Et[Ind]_2ZrCl_2$ catalyst showed relatively good results compared with unbridged one. When cocatalyst/catalyst molar ratio was 3000, catalytic activity indicated more than 8000(kg of polymer/$mol{\cdot}h$) which was very remarkable value. As a polymerization time increased, the weight-average molecular weight of the terpolymer gradually increased to some degree. In the case of a polymerization time of 50 minutes, the state of the terpolymer became amorphous. The range of the weight-average molecular weight and the densities of the terpolymer was 110,000~200,000 and $0.85{\sim}0.89g/cm^3$, respectively. The thermal properties and the structure of the terpolymer were also identified.

Reaction Properties of Dinuclear Metallocenes

  • Noh Seok-Kyun;Jeong Eung-Yeong;Qei Duang Huang Dan;Lyoo Won-Seok
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.224-225
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    • 2006
  • The Ethylene polymerization behavior of a series of polymethylene bridged dinuclear CGC $[Zr({\eta}^{5}:{\eta}^{1}-C_{9}H_{5}SiMe_{2}NCMe_{3})Me_{2}]_{2}[(CH_{2})_{n}]\;[_{n}=6(1),\;9(2),\;12(3)]$ in the cocatalytic activation with $Ph_{3}C^{+}B^{-}(C_{6}F_{5})_{4}\;(B_{1})\;or\;Ph_{3}C^{+}(C_{6}F_{5})_{3}B^{-}C_{6}F_{4}B^{-}(C_{6}F_{5})_{3}Ph_{3}C^{+}\;(B_{2})\;or\;B(C_{6}F_{5})_{3}\;(B_{3})$ were investigated to study the nuclearity effects as well as the counteranion effects. The ethylene polymerization and ethylene/1-hexene copolymerization were conducted at $30^{\circ}C$ It was found that both in ethylene polymerization and ethylene/1-hexene copolymerization, activities increased in the order of 1 < 2 < 3, which indicates the presence of longer bridge between two active sites contributes more efficiently to facilitate the polymerization activity.

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Novel Method for Polystyrene Reactions at Low Temperature

  • Katsuhiko Saido;Hiroyuki Taguchi;Yoichi Kodera;Yumiko Ishihara;Ryu, In-Jae;Chung, Seon-yong
    • Macromolecular Research
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    • v.11 no.2
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    • pp.87-91
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    • 2003
  • Thermal decomposition reactions of polystyrene using a new heating medium were carried out by a batch system at 190-280 $^{\circ}C$ to clarify the manner in which decomposition is initiated. Polystyrene obtained from a commercial source and low molecular weight compounds obtained from the thermal decomposition were analyzed by GC, GPC, IR, $^{13}$ C-NMR and GC-MS. The main chain underwent virtually no change by heat application. Polystyrene underwent decomposition below its molding temperature and the major decomposition products were 2,4,6-triphenyl-1-hexene (trimer), 2,4-diphenyl-1-butene(dimer) and styrene (monomer). Ethylbenzene, propylbenzene, naphthalene, benzaldehyde, biphenyl and 1,3-diphenylpropane were detected as minor products. This paper presents a new method for examining the decomposition of polystyrene at low temperature into volatile low molecular weight compounds.