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의료용 전동공기청정호흡기(PAPR)용 항균성 후드 및 필터 개발 KCI 등재

Development of Antibacterial Hood and Filter for Medical Powered Air Purifying Respirators (PAPR)

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멤브레인 (Membrane Journal)
한국막학회 (The Membrane Society Of Korea)
초록

본 연구는 지카바이러스, 메르스, coronavirus disease-19 (COVID-19) 등의 감염병 방역 및 의료현장에서 사용할 수 있는 의료용 공기정화호흡기(powered air purifying respirators, PAPR)의 항균성 보호복의 후드와 필터를 개발하였다. PAPR은 전동팬 본체 및 필터, 배터리팩, 후드로 구성되며 보호복의 후드 소재는 뛰어난 흡습성, 풍압, 외부충격을 견딜 수 있는 폴리프로필렌 슐폰레이스(spunlace) 부직포 직물(SFS)을 사용하였다. 사용자의 감염위험을 낮추기 위해 후드의 외피에는 피톤치드계 물질을 사용하여 99.9%의 안티-박테리얼(antibacterial) 효과를 얻었으며 내피에는 친수가공을 하여 흡수성을 25% 향상시켰다. 의료용 보호복 후드에 필요한 인공혈액 침투저항성, 건조미생물 침투저항성, 습식세균 침투저항성, 그리고 박테 리오파아지 침투저항성을 평가한 결과 2~6 단계의 합격평가를 받았다. 한편, 항균 처리된 슐폰레이스(spunlace filter, SF) 헤 파 필터(high efficiency particulate air, HEPA)의 성능을 평가한 결과 우수한 항균성, 분진제거율, 차압 효과를 확인하였다.

This work developed a hood and filter for antibacterial protective clothing for medical powered air purifying respirators (PAPR) that can be used in medical settings and quarantine against infectious diseases such as Zika virus, Middle East respiratory syndrome (MERS), and coronavirus disease-19 (COVID-19). The hood material of the protective clothing was made of polypropylene spunlace nonwoven fabric (SFS) was used for withstand wind pressure and external physcial pressure. Forthermore, in order to reduce the user's risk of infection, phytoncide-based materials were used on the outer-surface of the hood to achieve a 99.9% antibacterial effect, and the inner-surface were treated with hydro-philic materials to improve absorbency by 25%. In addition to evaluating the artificial blood penetration resistance, dry mi-croorganism penetration resistance, wet bacteria penetration resistance, and bacteriophage penetration resistance required for medical protective clothing hoods, it received a passing evaluation of levels 2-6. Meanwhile, as a result of evaluating the performance of the antibacterial treated spunlace high efficiency particulate air (HEPA) filter, excellent antibacterial properties, dust removal rate, and differential pressure effect were confirmed. All performance evaluations were conducted by an accredited certification body in accordance with the medical PAPR certification standards.

목차
1. 서 론
2. 실 험
    2.1. 재료 및 시약
    2.2. 실험방법
3. 결과 및 고찰
    3.1. 친수-항균성 후드의 개발
    3.2. 항균성 SF 헤파 필터의 개발
    3.3. PAPR 보호복 후두 및 필터의 성능평가
4. 결 론
Reference
저자
  • 고은주(경희대학교 화학공학과) | Eunjoo Koh (Department of Chemical Engineering, Kyung Hee University, Yongin-si 17104, Republic of Korea.)
  • 조나현(경희대학교 화학공학과) | Nahyun Cho (Department of Chemical Engineering, Kyung Hee University, Yongin-si 17104, Republic of Korea)
  • 이용택(경희대학교 화학공학과) | Yong Taek Lee (Department of Chemical Engineering, Kyung Hee University, Yongin-si 17104, Republic of Korea) Corresponding author