수중 내 발포성 정제로부터 생성된 미세기포 특성에 관한 실험적 연구

Effervescent tablets generate gas bubbles when chemical reaction occurs between water and tablets. Most of previous studies have been focused on pharmaceutical characteristics of tablets. However, for their applications in disinfectants, cleaners, and pesticides, physical characteristics of bubbles...

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Veröffentlicht in:한국가시화정보학회지 2021, Vol.19 (3), p.84-91
Hauptverfasser: 명재원(Jaewon Myeong), 맹주영(Juyoung Maeng), 김영준(Young Jun Kim), 조경민(Kyungmin Cho), 이웅희(Woonghee Lee), 김성호(Sungho Kim), 박영철(Youngchul Park), 손영구(Youngku Sohn), 신원규(Weon Gyu Shin)
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Sprache:kor
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Zusammenfassung:Effervescent tablets generate gas bubbles when chemical reaction occurs between water and tablets. Most of previous studies have been focused on pharmaceutical characteristics of tablets. However, for their applications in disinfectants, cleaners, and pesticides, physical characteristics of bubbles released from the effervescent tablets when they are in water are important. In this study, we experimentally investigated the characteristics of microbubbles generated by an effervescent tablet made of sodium bicarbonate and tartaric acid using PDPA and high-speed camera. Microbubbles were generated using different weights of effervescent tablet as well as in different water temperature. The experimental study shows increase in reaction time, bubble concentration and rise velocity as the weight of effervescent tablet increases from 1 to 20 g. The decrease in average bubble diameter was observed when the temperature of water increased from 25 to 45 ℃. Further, reaction time varies inversely with increase in water temperature, while bubble rise velocity is directly proportional to increase in water temperature. Effervescent table continuously generates the bubble with approximately constant diameter (235 ㎛) in the water. However, bubble concentration and bubble rise velocity decreased over time.
ISSN:1598-8430
2093-808X