저압에서 초임계영역까지의 이산화탄소와 니켈도금액의 계면장력 측정과 계면활성제의 영향
- Other Titles
- The Measurement of the Interfacial Tension Between CO2 + Nickel-Plating Solution System and the Effect of Surfactant on this System in the Range of Low Pressure to Supercritical State
- Authors
- 임종성; 김재덕; 박지영; 진현상
- Issue Date
- 2004-08
- Publisher
- 한국화학공학회
- Citation
- Korean Chemical Engineering Research(HWAHAK KONGHAK), v.42, no.4, pp.404 - 412
- Abstract
- The interfacial tension of Ni-plating solution+CO2 was measured by using the capillary rise method, which
is requisite as a basic research for researching new electroplating using macroemulsion in supercritical CO2. The synthesized
surfactant was sodium salt of bis(2,2,3,3,4,4,5,5-octafluoro-1-pentanol) sulfosuccinate which has CO2 philic
chains and hydrophilic head group, and the experimental systems were water+CO2 and Ni-plating solution+CO2. In
measuring the interfacial tension of Ni-plating solution+CO2, the effects of surfactant and ethanol were investigated. The
interfacial tension of this system was decreased as the surfactant and ethanol were added into Ni-plating solution for Niplating
solution+CO2 system, respectively. However, the interfacial tension of this system at constant temperature was
increased as both the surfactant and ethanol were added into this solution simultaneously. This research is useful to
select the proper surfactant and additives, and is effective to understand the interface phenomena between CO2 and polar
chemicals such as water or Ni-plating solution for forming the micro-, and macroemulsion in the range of low pressure
to supercritical state.
- Keywords
- Interfacial Tension; CO2; Ni-Plating Solution; Capillary Rise Method; Sodium Salt of Bis(2; 2; 3; 3; 4; 4; 5; 5- octafluoro-1-pentanol) Sulfosuccinate; Surfactant; Ethanol; Interfacial Tension; CO2; Ni-Plating Solution; Capillary Rise Method; Sodium Salt of Bis(2; 2; 3; 3; 4; 4; 5; 5- octafluoro-1-pentanol) Sulfosuccinate; Surfactant; Ethanol
- ISSN
- 0304-128X
- URI
- https://pubs.kist.re.kr/handle/201004/137345
- Appears in Collections:
- KIST Article > 2004
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