• Title/Summary/Keyword: humidification

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Development of Nursing Practice Guidelines for Non-humidified Low Flow Oxygen Therapy by Nasal Cannula (비강 캐뉼라를 이용한 저유량 산소 요법에서 비가습 적용의 간호실무 가이드라인 개발)

  • Nam, Ae-Ri-Na;Bae, Woo-Hyun;Park, Mi-Mi;Ko, Eun-Jeong;Park, Byung-Nam;Park, Jeong-Ok;Yim, Ji-Yeoung
    • Journal of Korean Academy of Nursing Administration
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    • v.19 no.1
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    • pp.87-94
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    • 2013
  • Purpose: The purpose of this study was to provide a basis for non-humidified low flow oxygen by nasal cannula and to provide a guide for consistent care in nursing practice. Methods: A methodological study on the development of guidelines with experts' opinions on collected items, framing PICO questions, evaluating and synthesizing texts which were searched with the key words (low flow oxygen, nasal cannula, humidification of oxygen, guideline) from web search engines. Results: Of the 45 researched texts on the web, 9 texts relevant to the theme were synthesized and evaluated. All patients with humidified or non-humidified oxygen therapy reported that they had no discomfort. Conclusion: The results indicate that there are no tangible grounds for patients' perceived differences between the humidified and non-humidified oxygen under 4L/min supplied by nasal cannula. with oxygen. Therefore, non-humidification oxygen therapy is strongly advised when suppling under 4L/min oxygen by nasal cannula (recommended grade A).

A Performance Analysis and Experiments on Plastic Film/Paper Humidifying Elements Consisting of Horizontal Air Channels and Vertical Water Channels (수평 공기 채널과 수직 물 채널로 구성된 플라스틱 필름/종이 가습 소자의 성능)

  • Kim, Nae-Hyun
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.40 no.1
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    • pp.55-63
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    • 2016
  • New materials and shapes for a humidifying element were developed which outperformed the widely used crisscross glass wool Glasdek media design. The new material consists of 50% cellulose and 50% PET. The parallel channel configuration was devised to reduce excessive pressure loss caused by the reduced height (from 7.0 mm to 5.0 mm) of the crisscross configuration. For the same crisscross configuration, the humidification efficiency of the cellulose/PET element was 26% higher than that of the glass wool element. For the same cellulose/PET material, humidification efficiency of the parallel channel configuration was 14% higher than that of the crisscross configuration. As for the pressure drops, the cellulose/PET element was 2-52% higher than those of the glass wool element. For the same cellulose/PET material, the pressure drop of the parallel channel configuration was 14% higher than that of the crisscross configuration. Data were compared against the predictions from existing correlations and those by the proposed model.

Development of evidence-based protocol to maintain high humidity of incubator in Extremely Low Birth Weight Infant (초극소 저출생체중아의 고농도 가습환경 유지를 위한 근거중심 프로토콜 개발)

  • Yu, Mi;Choi, Yun-Jin;Han, Li-La;Yun, Young-Mi;Bae, Geun-Ha;Lee, Ji-Eun;Park, Ji-Seon;Park, Ui
    • Journal of Korean Critical Care Nursing
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    • v.2 no.2
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    • pp.5-17
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    • 2009
  • Purpose: The purpose of this study was to investigate the current humidification state of incubator, the factors disturbing high humidification and to establish the evidence-based nursing protocol to maintain it. Methods: The subjects were 15 infants who were born with extremely low birth weight (ELBW) from May to October, 2007, and data were collected during the first 3 days and analyzed with SPSS WIN program. Results: The goal of humidity level in incubator was 95%, but mean humidity levels were 89.7%(1st day), 91.9%(2nd day), and 91.8%(3rd day)(p<0.001). The disturbing factors were opening frequency and duration of incubator door and window by caregivers. The handling of infants by nurses and doctors happened more frequently during the first day. Especially, nurses handled them more often than others, but the duration of opening during the invasive procedures by doctors was longer than others. The opening frequency had negative correlation with duration(r=-.779, p<.01). Conclusion: So the evidence-based protocol for maintaining high humidity in incubator for ELBW infants during the first 3 days and next 2 days was made. Furthermore we need to educate NICU nurses and doctors about minimal handling.

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Adhesive Silicone Gel Sheet for Treatment of Nailbed Injury (손톱바닥 치료를 위한 부착형 실리콘 겔 시트의 유용성)

  • Kim, Eui Sik;Hwang, Jae Ha;Kim, Kwang Seog
    • Archives of Plastic Surgery
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    • v.33 no.1
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    • pp.107-112
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    • 2006
  • If autogenous nail is lost in nail bed injuries, alternative effective nail bed protection material is questionable in postoperative follow up period. The conventional modality with autogenous nail coverage have several disadvantages such as drawback of maintenance, higher chance of loss and complex dressing step (eg. ointment apply for humidification and nail fixation using tape or bandage). So, we have studied the usefulness of adhesive silicone gel sheet for alternative nail bed protection material until the end of nail regeneration. From March 2003 to July 2004, we have experienced 215 traumatic nail bed injuries except fingertip loss. Among these patient, we classified two groups, 30 cases with autogenous nail protection(Group I) and 30 cases with adhesive silicone gel sheet protection(Group II). Mean full nail growth time was 3.6 months in group I and 3.8 months in group II. Mean final nail appearance score(0: poor, 4: excellent) was 3.0 in group I and 3.5 in group II. Adhesive silicone gel sheet protection(Group II) was slightly superior to the autogenous nail protection in final appearance, especially sterile matrix laceration. In conclusion, we believe that adhesive silicone gel sheet application is a simple, acceptable, alternative method for protecting nail bed with loss of autogenous nail. It has a number of advantages compared with autogenous nail such as better humidification, controllable hygiene, less pain, less hospitalization, less frequent visit, less chance of loss, avoiding complex dressing step and more even pressure with adhesiveness, flexibility and durability.

Residential Humidifying Elements Comprizing Horizontal Corrugated Channels (수평 코류게이트 채널로 구성된 가정용 가습 소자)

  • Kim, Nae-Hyun
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.41 no.9
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    • pp.579-586
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    • 2017
  • In this study, new materials and shapes for a residential humidifying element were investigated. These elements could replace the current Japanese folded-type rayon/PE elements. Samples were taken from three different materials - rayon/PET (50:50), kraft/PET (40:60), kraft/PET/carbon. Results showed that the humidification efficiencies of the new samples were lower than those of the Japanese product. The efficiencies were 59% for the Japanese product (rayon/PET), 62% for kraft/PET and 84% for kraft/PET/carbon. This could be due to lower rayon or kraft content in the present samples than that in the Japanese product. However, pressure drops in the present samples were significantly lower than that in the Japanese product, due to improved channel configuration. The humidification capacity at the same pumping power ($j_m/f^{1/3}$) was 60% to 82% higher for the kraft/PET/carbon sample compared with the Japanese product. Furthermore, the results are compared with theoretical predictions.

A Study of Humidification Method in PEMFC (고분자전해질형 연료전지의 가습 방법에 대한 연구)

  • Hyun, Deok-Su;Kim, Jun-Bom
    • Journal of the Korean Electrochemical Society
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    • v.6 no.3
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    • pp.212-216
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    • 2003
  • The humidification measurement system designed in laboratory was used to measure relative humidity and temperature of reaction gases passing through internal or external humidifier which was used in proton exchange membrane fuel cell test station. The relative humidity of gases was stabilized after $10\~20$ minutes and thus credibility of data could be assured. The effect of relative humidity on fuel cell performance could be analyzed by humidity measurement system. Extreme caution was needed to avoid humidity sensor mal-function or failure which is probable in experiment of high humidity condition near $100\%$. The amount of water carried by gas through humidifier was increased along the flow rate of gas. However, the extent of increase was lowered at high gas flow rate. These phenomena could be analyzed as residence time effect of gas in humidifier.

Decrease of PEMFC Performance by Ion Contamination (이온 오염에 의한 고분자전해질 연료전지의 성능저하)

  • Song, Jinhoon;Woo, Myungwu;Kim, Saehoon;Ahn, Byungki;Lim, Taewon;Park, Kwonpil
    • Korean Chemical Engineering Research
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    • v.50 no.2
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    • pp.187-190
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    • 2012
  • Contamination of ion from cathode air on the membrane and electrode assembly (MEA) is the serious degradation source in proton exchange membrane fuel cells (PEMFC). In this study, concentration of ions in air at industry region, street and seaside were measured. There were comparably high concentration of $Na^+$, $K^+$, $Ca^{2+}$ and $Fe^{3+}$ in this regions. This paper shows the effects of MEA contamination by these ions generated from humidification water. After 170 hours of fuel cell operation using city water as humidification water, the performance of unit cell decrease to 11% of initial performance. The electrolyte membrane easily absorbed foreign contaminant cations due to the stronger affinity of foreign cations with the sulfonic acid group compared to $H^+$. The contaminant ions existing in the interface between the platinum catalyst and ionomer layer turn out to be the most serious factor to decrease cell performance.

The Operating Condition and Flow Field Design Effect on the Anode Water Management of a Proton Exchange Membrane Fuel Cell (PEMFC) (운전조건 및 유로형상에 따른 고체고분자형 연료전지의 수소극에서의 수분관리)

  • Hong, In Kwon;Kim, Sunhoe
    • Applied Chemistry for Engineering
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    • v.22 no.5
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    • pp.518-521
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    • 2011
  • A PEMFC single cell with the active area of $25cm^2$ was used to verify the effect of water management in the anode. Water management is one of the most critical operating variables. In this paper the effect of operating condition change, such as anode humidification and temperature, was investigated under constant current density of $200mA/cm^2$ where possible anode flooding operating area. Also experiments to observe the effect of the anode and cathode stoichiometry change and flow field design on the water management were performed. The water management was effected by the stoichimetry change. The temperature and humidification change also affected the fuel cell performance.

Effect of Change in Wet/Dry Time of PEMFC Membrane Durability Test Protocol Using Oxygen as Cathode Gas (Cathode 산소 공급조건에서 고분자막 내구평가 프로토콜의 가습/건조 시간 변화의 영향)

  • Lim, Daehyeon;Oh, Sohyeong;Jung, Sunggi;Jeong, Jihong;Park, Kwonpil
    • Korean Chemical Engineering Research
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    • v.59 no.1
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    • pp.16-20
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    • 2021
  • Since the durability evaluation for improving the durability of PEMFC polymer membranes is very important for the development of PEMFC, research and development of the polymer membrane durability evaluation protocol (AST) continues. Recently, DOE's polymer membrane chemical/mechanical durability evaluation AST was developed and applied to Nafion XL for review. In order to shorten the evaluation time, oxygen was used as a cathode gas instead of air, and it was finished in 144 hours. Since DOE AST has a large number of voltage changes with 45 seconds of humidification and 30 seconds of drying, the degradation of the electrode has more influence on the MEA durability. Therefore, one cycle time was lengthened with 60sec of wet/300sec of dry, and the drying time was made longer than the humidification time to further deteriorate the polymer membrane, and it was finished in 240 hours. It was confirmed that the DOE AST for evaluation of the durability of the polymer membrane was accompanied by electrode degradation.

Effect of Coolant on PEMFC Performance in Low Humidification Condition (저가습 조건에서 냉각 유체의 고분자전해질 연료전지에 대한 영향)

  • Lee, Hung-Joo;Song, Hyun-Do;Kwon, Jun-Taek;Kim, Jun-Bom
    • Journal of the Korean Electrochemical Society
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    • v.10 no.1
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    • pp.25-30
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    • 2007
  • Proton exchange membrane fuel cell(PEMFC) performance could be affected by various factors such as cell temperature, total pressure, partial pressure of reactants and relative humidity. Hydrogen ion is combined with water to form hydronium ion [$H_3O^+$] and pass through membrane resulting electricity generation. Cooling system is needed to remove heat and other uses on large scale fuel cell. In case that collant conductivity is increased, fuel cell performance could be decreased because produced electricity could be leaked through coolant. In this study, triple distilled water(TDW) and antifreeze solution containing ethylene glycol was used to observe resistance change. Resistance of TDW was taken 28 days to reach preset value, and effect on fuel cell operation was not observed. Resistance of antifreeze solution was not reached to preset value up to 48 days, but performance failure occurred presumably caused by bipolar plate junction resulting stoppage resistance experiment. Generally PEMFC humidification is performed near-saturated operating conditions at various temperatures and pressures, but non-humidifying condition could be applied in small scale fuel cell to improve efficiency and reduce system cost. However, it was difficult to operate large scale fuel cell without humidifying, especially higher than $50{\sim}60^{\circ}C$. In case of small flux such as 0.78 L/min, temperature difference between inlet and outlet was occurred larger than other cases resulting performance decrease. Non-humidifying performance experiments were done at various cell temperature. When both of anode and cathode humidification were removed, cell performance was strongly depended on cell operating temperature.