• Title/Summary/Keyword: polyoxyethylene

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Phase Behavior and Detergency of Methoxy Polyoxyethylene Dodecanoate (Methoxy Polyoxyethylene Dodecanoate의 상거동과 세정성)

  • Kang, Y.S.;Yun, Y.G.;Lee, J.H.;Nam, K.D.
    • Applied Chemistry for Engineering
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    • v.9 no.3
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    • pp.413-418
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    • 1998
  • Methoxy polyoxyethylene dodecanoates are a kind of nonionic surfactants obtainable from reaction of fatty acid methyl ester with ethylene oxide utilizing a solid catalyst. Methoxy polyoxyethylene dodecanoates have economical advantage compared with polyoxyethylene dodecyl ethers using fatty alcohol. In this work, the solubilizing capacity concerned with phase behavior of ternary systems composed of nonionic surfactant/water/oil, interfacial tension and detergency at the phase inversion temperature(PIT) were investigated and compared with those of polyoxyethylene dodecyl ethers in order to confirm the applicability of methoxy polyoxyethylene dodecanoates in the detergents. Methoxy polyoxyethylene dodecanoates showed the solubilizing capacity of 10~18% for hexadecane which were about 6% higher than polyoxyethylene dodecyl ethers. At the PIT condition, methoxy polyoxyethylene dodecanoates' interfacial tension were 0.0124~0.0176 dyne/cm while polyoxyethylene dodecyl ethers have the value of 0.013~0.0163 dyne/cm and methoxy polyoxyethylene dodecanoates showed higher detergency of 82.1~83.2% than polyoxyethylene dodecyl ethers of 76.5~77.3%. The good detergency performance of methoxy polyoxyethylene dodecanoates would be due to the higher oil solubilizing power and lower interfacial tension than polyoxyethylene dodecyl ethers at the PIT condition.

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Mode of Action of Several Surfactants on Paraquat Efficacy (Paraquat 활성에 미치는 계면활성제의 작용기구)

  • Choi, Jung-Sup;Hwang, In-Taek;Kim, Jin-Seok;Kim, Tae-Joon;Cho, Kwang-Yun
    • The Korean Journal of Pesticide Science
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    • v.6 no.3
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    • pp.193-201
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    • 2002
  • The effects of 24 ionic and nonionic surfactants on paraquat (1, 1' -dimethyl-4 4'-bipyridinium) efficacy were investigated with several annual plant species under greenhouse conditions. The paraquat efficacy was decreased or even lost when treated with the anionic surfactants tested. However, the efficacy of paraquat was significantly increased by 7 nonionic surfactants such as sorbitan palmitate, sorbitan stearate, polyoxyethylene sorbitan monopalmitate, polyoxyethylene sorbitan monostearate, polyoxyethylene stearyl ether, polyoxyethylene laurylamine ether, and polyoxyethylene stearylamine ether. Among these tested surfactants, 0.08% of polyoxyethylene laurylamine ether most significantly increased the paraquat activity, and the $GR_{50}$ value of paraquat with polyoxyethylene laurylamine ether was 1.6 times lower than the $GR_{50}$ value without polyoxyethylene laurylamine ether. In in vitro experiments, cellular leakage and chlorophyll contents between the application with and without polyoxyethylene laurylamine ether did not show significant changes. The absorption rate of $^{14}C$ paraquat in the treatment with polyoxyethylene laurylamine ether showed an absorption rate of 1.6 times higher than without surfactant. These results suggest that using compatible surfactants would increase the paraquat efficacy, and this increasing are due to improved absorption rate with the surfactant.

Scouring Effect of PAPE(Polyoxyethylene Alkyl Phosphoric Ester) on Cotton Fibres (면섬유에 대한 폴리옥시에틸렌 알킬 인산에스테르의 정련효과)

  • Ha, Youn-Shick;Kwak, Gyeong-Do;Chang, Yoon-Ho
    • Applied Chemistry for Engineering
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    • v.10 no.7
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    • pp.974-978
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    • 1999
  • This study was concerned with the scouring effect of anionic surfactants, PAPE(sodium polyoxyethylene alkyl phosphoric ester) for cotton fibres. Sodium polyoxyethylene(7) nonylphenyl phosphoric ester(CPB-1) and the sodium polyoxyethylene(7) tridecyl phosphoric ester(CPB-2) were synthesized by the phosphoric esterification reaction from NP-7(polyoxyethylene(7) nonylphenyl ether) and TDA-7(polyoxyethylene(7) tridecyl ether) as scouring agents. Defoaming ability, fibre wetting time and absorbency rate of scouring agents were investigated. Being compared with the conventional scouring agent(Ultravon GP; Ciba-guyge Co.), CPB-1 and CPB-2 showed a higher defoaming ability in the cotton scouring process at room temperature. And CPB-1 has a higher wetting effect than the agents, CPB-2 or GP in distilled water bath but CPB-2 showed more scouring effect in 1.2 wt % NaOH solution bath.

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The Additive Effect of Polyoxyethylene Compounds on the Photographic Characters of Photographic Emulsion

  • Youn, Min-Young;Ahn, Hong-Chan;Kang, Tai-Sung
    • Journal of Photoscience
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    • v.7 no.2
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    • pp.45-46
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    • 2000
  • The polyoxyethylene compounds were added into the photographic emulsion during the physical ripening of photo sensitive silver halide crystal in this emulsion. The polyoxyethylene compounds improved the photographic properties of the film to a great extent increasing the photo sensitivity and decreasing the fog density.

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Preparation of Oil dispersants using polyoxyethylene Monooleate and Oleyether and its Effect on dispersing efficiency to Bunker B Oil (Polyoxyethylene monooleate 및 oleyther계 유분산제의 제조와 Bunker B유의 분산효율에 미치는 영향)

  • Yeom, Guy-Seol;Kang, Doo-Whan
    • Journal of the Korean Applied Science and Technology
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    • v.12 no.1
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    • pp.59-67
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    • 1995
  • Oil dispersants using polyoxyethylene monooleate, polyoxyethylene oleylether, and poly(oxypropylene-oxyethylene)glycol block copolymer were prepared, and oil dispersant efficiency was measured using vertical shaking flask method to 4 kinds of Bunker B oil with different physical properties by appling the prepared dispersants. Although the dispersant efficiency was differed according to the differences of physical properties of Bunker B oil, the dispersant prepared using polyoxyethylene oleylether was the most effective to disperse the oil into water. The impurities like surfur contained in sample oil have to be removed by filteration to obtain the correct degree of absorption using UV spectrophotometer.

Preparation of Polyoxyethylene glycol fatty acid ester oil dispersant and dispersion efficiency on Weathering crude oil (Polyoxyethylene glycol fatty acid ester계 유분산제의 제조와 Weathering Crude Oil에 대한 분산효율 특성)

  • Yeom, Kuy-Seol;Kang, Doo-Whan;Kim, Won-Ki;Chung, Nak-Jin;Whang, Jae-Wook
    • Journal of the Korean Applied Science and Technology
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    • v.15 no.3
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    • pp.67-75
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    • 1998
  • Polyoxyethylene monooleate was prepared by addition of ethylene oxide to oleic acid. And also, polyoxyethylene monooleate type oil dispersant was prepared by blending polyoxyethylene monooleate, n-paraffine, sorbitan monooleate, sorbitan monopalmitate, and palm oil. Dispersion efficiency test was carried out by vertical shaking flask and swirling flask methods. Low toxic oil dispersant was prepared with polyoxyethylene monooleate, which has high biodegradability and excellent dispersion efficiency on crude oils and weathered W/O emulsions with high viscosity, and its dispersion efficiency was measured to various crude oils and weathered oils.

Solution Properties of Polyglycerol Alkyl Ether Nonionic Surfactant (폴리글리세롤을 친수성기로한 비이온성 계면활성제의 용액성)

  • Yun, Y.K.;Nam, K.D.;Kang, T.J.
    • Journal of the Korean Applied Science and Technology
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    • v.9 no.2
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    • pp.107-117
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    • 1992
  • The synthesis and solution properties of polyglycerol alkyl ether($R_{12}Gn$) are described. The phase behavior, surface tension, cloud point and HLB value of polyglycerol dodecyl ether in aqueous solution and in mixed solution of surfactant /water /oil have been investigated and compared with values of polyoxyethylene dodecyl ether. The surface tension showed that $R_{12}Gn$ have sufficiently low values of surface tension and cmc to serve as useful polyoxyethylene alkyl ether. The mesophases appearing in the $R_{12}Gn$ systems were more stable in a high temperature range than the mesophases of polyoxyethylene alkyl ether systems. The cloud point and HLB data indicated that addition of one glycerol group was equivalent to the addition of three oxyethylene group units, as far as the hydrophilic property was concerned. The phase diagrams of the polyglycerol alkyl ether /dodecane /water systems showed that the solubilizing and emulsifying powers of $R_{12}Gn$ were greater than those of polyoxyethylene alkyl ether. It is concluded that the polyglycerol chain can be even more useful as hydrophilic group of nonionic surfactants than the polyoxyethylene chain.

Synthesis and Properties of Polyoxyethylene Reactive Surfactant (폴리옥시에틸렌계 반응성 계면활성제의 합성 및 물성)

  • Cho, Jung-Eun;Lee, Sang-Chul;Park, Jong-Kwon;Kim, Kyung-Sil;Shin, Hye-Lin;Kim, Yu-Ri;Shin, Seung-Hoon;Jeong, Noh-Hee
    • Applied Chemistry for Engineering
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    • v.30 no.2
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    • pp.241-246
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    • 2019
  • In this paper, reactive surfactants were synthesized by using acrylic acid or 3-butenoic acid as nonionic surfactants, polyoxyethylene(23) lauryl ether (Brij 35) and polyoxyethylene(20) stearyl ether (Brij S20). The synthesis of surfactants was confirmed by FT-IR and $^1H$-NMR. The surface tension, emulsifying property, and foam power and stability were also measured. The surface tension value was 35~41 dyne/cm at an critical micelle concentration (cmc) which was measured as $1.0{\times}10^{-4}{\sim}9.7{\times}10^{-5}mol/L$ using a surface tension method. The emulsifying power of synthesized surfactant was measured with benzene, soybean oil and monomer. Also, the initial height of the bubbles and the height after 5 minutes were measured and the values were compared with each other.

Stability and in Vivo UV-Protecting Efficacy of Emulsions Stabilized with Cinnamoyl Surfactants

  • Park, Seok Ho;Kwon, Kyeongnan;Kim, Jin-Chul
    • Korean Chemical Engineering Research
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    • v.56 no.2
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    • pp.143-150
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    • 2018
  • Oil-in-water emulsion was prepared using cinnamoyl surfactants as emulsifiers. Cinnamoyl surfactants used in the present study were polyoxyethylene (20) sorbitan monolaurate-cinnamic acid conjugate (TW20CA), polyoxyethylene (20) cetyl ether-cinnamic acid conjugate (CE20CA), and polyoxyethylene(20) oleyl ether-cinnamic acid conjugate (OE20CA). The emulsion stabilized with TW20CA was the most stable, possibly because the polyoxyethylene segment of TW20CA would sterically stabilize the oil droplets effectively. In vivo UV protecting efficacy of surfactant and emulsion was investigated by determining the minimum amount of UV light (MAUL) to induce a black point on the back of hairless mice (HRM2). The mean MAUL of PARSOL, OE20CA, and emulsion stabilized with TW20CA was $1046.5mJ/cm^2$, $1163mJ/cm^2$, and $1308.5mJ/cm^2$, respectively. The high UV-protecting efficacy of the emulsion could be ascribed to not only the UV-absorbing property of cinnamoyl group but also the UV-scattering property of the oil droplets.

Protections of the Green Colors from Gardenia jasminoides with Polyoxyethylene Dimethicone (Polyoxyethylene Dimethicone을 이용한 천연색소 치자그린의 변색방지)

  • Lee, Dong-Ryul;Kang, Tae-Jun;Kim, Ki-Sun;Lee, Cheon-Koo
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.32 no.2 s.57
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    • pp.89-91
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    • 2006
  • The objectives of this study were to find for suitable chemical reagents to use as a green-color protector for Gardenia jasminoldes Green pigment and to compare the effectiveness of these reagents for discoloration prevention. Gardenia jasminoldes Green treated with polyoxyethylene (POE) (12) dimethicone shouted a greener color than those treated with methoxycinnamidopropyl hydroxysultaine ultraviolet stabilizers after ultraviolet radiation (UVR). The experimental results exhibited that the concentration of the POE (12) dimethicone affected the effectiveness of green-color conservation. The greenest rotor was obtained by treating 0.10 wt% aquous solution of Gardenia jasminoldes Green with 1.0 wt% POE (12) dimethicone aqueous solution and the absorbances of the solutions after UVR were increased from 78% to 95% in comparison with the untreated. In addition, the Gardenia jasminoldes Green aqueous solution mixed with POE (12) dimethicone showed great green-color fastness in outdoor weathering exposure. The mechanism of the green color protection under UVR is unclear, however the dimethicone group of POE (12) dimethicone may play and important role in the stabilization.