• Title/Summary/Keyword: 음이온 계면활성제

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Adsorption Characteristics of Cu(II) in the Presence of Surfactants on Natural Zeolites Treated Chemically and Thermally (가열 및 화학처리된 천연 제올라이트의 계면활성제 수용액 내에서 Cu(II)흡착특성)

  • Sun, Y.S.;Kim, P.K.
    • Applied Chemistry for Engineering
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    • v.7 no.5
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    • pp.849-860
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    • 1996
  • Natural zeolites which were known to occur in sedimentary clinoptilolite, were treated by thermal and chemical methods, and their adsorption characteristics of Cu(II) were studied. Analyses by FT-IR, S. E. M, TGA/DSC, and XRD showed that the adsorption capacity of Cu(II) on the zeolite decreased gradually at the temperatures of above $400^{\circ}C$. The zeolites, which treated with NaOH and NaCl, show higher absorbility in acid solution. The adsorption rate of Cu(II) in the presence of surfactants(LAS, POE AE) on the thermally or chemically treated zeolites varied depending on pH, anion or nonion surfactants.

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In Vivo Antifungal Activities of Surfactants against Tomato Late Blight, Red Pepper Blight, and Cucumber Downy Mildew (계면활성제를 이용한 역병과 오이 노균병 방제)

  • Yu, Ju-Hyun;Jang, Kyoung-Soo;Kim, Heung-Tae;Kim, Jin-Cheol;Cho, Kwang-Yun;Choi, Gyung-Ja
    • Applied Biological Chemistry
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    • v.47 no.3
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    • pp.339-343
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    • 2004
  • Anionic surfactants such as sodium dioctyl sulfosuccinate (SDSS) and sodium dodecylbenzene sulfonate (NaDBS) and a nonionic surfactant, polyoxyethylene oleyl ether (OE-7) were tested for their protective, curative, and persistent activities on tomato late blight (TLB, Phytophthora infestans), red pepper blight (RPB, P. capsici), and cucumber downy mildew (CDM, Pseudoperonospora cubensis). They exhibited a strong protective activity on TLB, RPB, and CDM. Among them, $NaDBS\;(500\;{\mu}g/ml)$ showed the most in vivo antifungal activities(1-day protective activity) with control values of 99%, 100%, and 85% against TLB, RPB, and CDM, respectively. However, the three surfactants represented a weak disease controlling efficacy on TLB, RPD, and CDM in a 1-day curative application. SDSS and NaDBS exhibited a good persistent activities on TLB and RPB. Especially, NaDBS, at $500\;{\mu}g/ml$, showed control values of more than 88% on TLB and RPB in a 7-day protective application. The results indicate SDSS and NaDBS have a potential for the control of TLB, RPB, and CDM in the fields.

Electronegativity and CMC Characteristics of Hydrophilic and Hydrophobic Group for Surfactants (계면활성제의 친수·소수성 그룹의 전기음성도와 CMC 특성)

  • Ha, Youn-Shick;Paek, U-Hyon;Chang, Yoon-Ho
    • Applied Chemistry for Engineering
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    • v.8 no.6
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    • pp.914-919
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    • 1997
  • On the basis of theory of Bratsch's electronegativity equalization, the electronegativity equalization, the group electronegativities and the group partial charges for anionic and nonionic surfactants could be calculated by using Pauling's electronegativity parameters. From calculated results, we have investigated how CMC, hydrophilic and hydrophobic groups, group partial charge, electronegativity of hydrophilic and hydrophobic groups, structural stability of micelle for anionic and nonionic surfactants are related. It was fround that CMC depends upon group partial charge and group electronegativity of hydrophilic and hydrophobic groups of surfactants. For the anionic surfactants, negative partial charge in hydrophobic group is delocalized as the carbon number in hydrophobic group increase. So negative partial charge of hydrophilic group has very large electronegativity that is decreased. And CMC decreases as hydration ability of hydrophilic groups which decreases relatively. For the nonionic surfactant, partial charge and electronegativity in hydrophobic group increases with the increment of carbon number in hydrophobic group. And CMC decreases because electronegativity of hydrophilic group is decreased with the increment of electronegativity of hydrophilic group. However, with the increase of repeating units in hydrophilic group, the negative partial charge of hydrophilic group increases. So CMC increases because surfactants hydrate rather than form micelles in aqueous solution by the increase of hydration ability.

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The Cleaning of Costumes of Yeosan Song's Family Excavated at Mokdal-dong in Daejeon (대전 목달동 출토 여산송씨 출토복식의 세척)

  • Baek, Young-Mee;Kwon, Young-Suk
    • Journal of Conservation Science
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    • v.25 no.2
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    • pp.219-231
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    • 2009
  • The purpose of this study is to provide basic information necessary for the cleaning of excavated costumes. For the purpose, these researchers reviewed previous records of the actual cleaning of excavated costumes and then implemented and documented the processes of cleaning the Yeosan Song's costumes excavated at Mokdal-dong, Daejeon, which could date back to the early and mid periods of Choseon Dynasty. The excavated clothes of the family provide good examples for comparing men's costume of the 15th century with men's and women's of the mid and late 16th century. The total quantity of excavated remains were 184 and textiles were cotton, silk, hemp, ramie, and union cloth. The clothing remains were processed through wet or dry cleaning in accordance with their fabric condition and the extent to which they were worn or polluted. In detail, the excavated costumes of the Yeosan Song family were cleaned in two stages. For wet cleaning, both anionic(LAS) and nonionic(Triton X-100) surfactants were respectively used as cleaning agents and for dry cleaning, a mixture of n-hexane and n-decane(the ratio of 4 to 6) and petrolic dry cleaning solvent were used. After first cleaning, some cotton, ramie and hemp which had still the stains were processed bleaching and silk which were good condition was processed dry cleaning with the organic solvent again.

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Comparative Study on the Micellization of SDS/Brij 30, DBS/Brij 30, and SDS/DBS Mixed Surfactant Systems in Pure Water (순수 물에서 SDS/Brij 30, DBS/Brij 30 및 SDS/DBS 혼합계면활성제의 미셀화에 대한 비교연구)

  • Lee, Byung-Hwan;Park, In-Jung
    • Journal of the Korean Chemical Society
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    • v.55 no.3
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    • pp.379-384
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    • 2011
  • The critical micelle concentration (CMC) and the counter ion binding constant (B) for the mixed micellizations of DBS (sodium dodecylbenzenesulfonate), SDS (sodium dodecylsulfate), and Brij 30 (polyoxyethylene(4) lauryl ether) at $25^{\circ}C$ in pure water were determined by the use of electric conductivity and surface tension measuring methods. Various thermodynamic parameters ($X_i,\;{\gamma}i,\;C_i,\;a_i^M,\;{\beta}$, and ${\Delta}H_{mix}$) were calculated and compared with each other mixed surfactant system by means of the equations derived from the nonideal mixed micellar model. The results show that the SDS molecule interacts more strongly with Brij 30 molecule than DBS molecule and that the SDS/Brij 30 mixed surfactant system has the greatest negative deviation from the ideal mixed micellar model and the SDS/DBS mixed system has followed almost the ideal mixed micellar model.

Studies on the Surfactants of the N-Acyl Amino Acid Type(part 11);Synthesis of Biodegradable N-Acyl Amino Acid Type Anionic Surfactants (N-아실 아미노산계 계면활성제에 관한 연구(제11보);생분해성 N-아실 아미노산계 음이온성 계면활성제의 합성)

  • Yun, Y.G.;Kim, T.Y.;Jeong, H.K.;Nam, K.D.
    • Journal of the Korean Applied Science and Technology
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    • v.15 no.1
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    • pp.63-78
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    • 1998
  • A series of long chain N-acyl amino acid type anionic surfactants were prepared by treating fatty acid chlorides with three kinds of amino acids, that is, sodium N-acyl-sarcosinates, sodium N-acyl-N-methyl-${\beta}$-alaninates and sodium N-acyl-N-methyl-taurates in an alkaline solution. All prepared biodegradable surfactants were purified by thin layer chromatography and column chromatography, and identified their structures by spectral analysis.

Analysis of the Anionic Surfactants by Capillary Electrophoresis (모세관 전기영동 장치를 이용한 음이온계 계면활성제의 분석)

  • Jeong, Hyuk;Kim, Seung Sun;Lee, Byung Min;Kang, Ho-Cheol;Lee, Won;Kim, Hai-Dong
    • Analytical Science and Technology
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    • v.7 no.4
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    • pp.435-440
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    • 1994
  • Qualitative and quantitative analysis for the anionic surfactants used in the metal washing fluid (brand names are BFA and BCA) was performed by the capillary electrophoresis. Acetonitrile and sodium benzoate were mixed with the buffer solution which controlled at pH 10. Under the 18kV applied voltage, the electropherograms have shown the theoretical plates more than $10^4$. Determined as the concentration at the S/N~3, the typical detection limit was ~5 ppm and the calibration curves have shown the correlation coefficients higher than ~0.99. Based on these results, it was concluded that each components were octanoate, decanoate, dodecanoate, tetradecanoate, hexadecanoate and the relative ratio was 1.0 : 1.0 : 6.5 : 2.1 : 0.8 for the BFA.

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Dispersion Stability of Pigments in Aqueous Solution of Anionic Oligo Type Surfactants(Parts 1)-Dispersion of Phthalocyanine or Carbon Black- (올리고머형 음이온성 계면활성제 수용액에서 안료의 분산성(제1보) - Phthalocyanine이나 Carbon Black의 분산 -)

  • Lee, H.W.;Yun, Y.K.;Park, H.Ch.;Nam, K.D.
    • Applied Chemistry for Engineering
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    • v.9 no.1
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    • pp.1-5
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    • 1998
  • The dispersing behaviors of oligomer-type anionic surfactants, cooligomers of diethyl maleate(CmD-Na) or maleic anhydride (CmM-Na) and $C_4{\sim}C_{16}$ alkyl vinylether, which have a different alkyl chain length of the hydrophobic group or degree of polymerization, were studied on the aqueous suspension of ${\alpha}-$ and ${\beta}-$ copper phthalocyanine and carbon black particles. In case of the side alkyl chain length of $C_4{\sim}C_{10}$ of CmD-Na, the dispersing actions were good in the concentration range of 0.01 to 0.1%. Especially, side alkyl groups played an important role in the orientation adsorption on the surface of pigment particles, and oligomers having smaller degrees of polymerization were more effective in the dispersing action, but did not affect the dispersability of carbon black.

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Removal of Volatile Organic Contaminant(toluene) from Specific Depth in Aquifer Using Selective Surfactant-Enhanced Air Sparging (계면활성제와 폭기를 이용한 대수층의 특정깊이에 존재히는 휘발성 유기오염물질 (톨루엔)의 휘발제거)

  • Song, Young-Su;Kwon, Han-Joon;Yang, Su-Kyeong;Kim, Heon-Ki
    • Economic and Environmental Geology
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    • v.43 no.6
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    • pp.565-571
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    • 2010
  • An innovative application of surfactant-enhanced air sparging(SEAS) technique was developed in this study. Using a laboratory-scale physical model packed with water-saturated sand, air sparging was implemented to remove water-dissolved toluene that was introduced into a specific depth of the system with finite vertical width prior to sparging. An anionic surfactant(Sodium dodecylbenzene sulfonate) was introduced into the contaminated layer as in dissolved form in the toluene-contaminated solution for SEAS, whereas no surfactant was applied in the control experiment. Due to the suppressed surface tension of water in the surfactant(and toluene)-containing region, the toluene removal rate increased significantly compared to those without surfactant. More than 70% of the dissolved toluene was removed from the contaminated layer for SEAS application while less than 20% of toluene was removed for the experiment without surfactant. Air intrusion into the contaminated layer during sparging was found to be more effective than that without surfactant, enhancing air contact with toluene-contaminated water, which resulted in improved volatilization of contaminant. This new method is expected to open a new option for remediation of VOC(volatile organic compound)-contaminated aquifer.

Remediation Technique for PCBs-and Phenols-Contaminated Soils by Surfactant-Enhanced Desorption (계면활성제 탈착촉진법을 이용한 폴리클로네이티드 바이페닐(PCBs)과 페놀류(Phenols)에 의하여 오염된 지반의 정화방안)

  • 박준범;윤현석;김준섭
    • Journal of the Korean Geotechnical Society
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    • v.15 no.5
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    • pp.241-257
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    • 1999
  • Subsurface contamination of industrial hazardous organic substances is a serious social issue. Decomposing the hydrophobic organic compounds in the subsurface is technically difficult and the compounds can last as long-term contaminant sources of groundwater once they are sorbed on the soil. Although the danger of contaminated subsurface has long been recognized little was known about the effective remediation technique. Focusing on the remediation of the p-Cresol and 3, 5-Dichlorobiphenyl among subsurface contaminants, this paper studies the surfactant-enhanced desorption technique. Nonionic surfactant(Triton X-100) and anionic surfactant(SDS ) were used as desorbing solvents for extracting organic compound sorbed on soil particles. Sorption characteristics of soils and organic compounds were analyzed and the applications of surfactant solution were studied through batch tests and the flexible-wall permeameter tests. As a result of the sorption isotherm tests, a log-log linear relation was obtained between the linear-partition coefficient, $K_p$ and the octanol-water partition coefficient, $K_{ow}$ of each organic compound. The result of the batch test also showed that Triton X-100 at 0.5% of solution desorbs the 3, 5-Dichlorobiphenyl 28 times more than the water in the batch tests. The surfactant-enhanced subsurface remediation technique becomes more effective when the contaminants are hydrophobic and hard to be decomposed.

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