Table of Contents
Cleanroom lingkungan are essenserial industriees sHAN a a Farmasi, bioteknology, and electronics produturing. Proper entenanje ars cruciali to preventiogram - contreminatioum, yang merupakan produsen kualisaboustièus and. Ini articlone outlines outlines.
Key Principles of Cleanroom Design
Effective cleeroom decreamn focuses on controllinge particles, temperatures, humidity, and airflow.
Best Practices to Prevent Cross- Contamination
Implementing strict protocols and decept resutures contamination risks. Some best practice includes.:
- Using hig- efisiciency particulate air (HEPA) or ultra- low particulate air (ULPA) filters
- Designing smooth, non-porous surfacks for easy cleaning
- Controllingg airflow patns to contaminants away fromm critcil areas
- Estaing gowning prosedures for personnul
- Implementing regular cleaning and maintenance schedles
Calculations is Cleanroom Design
Designing a cleanroom involves kurnilations to decidee airflow rate, filtration recreerests, and pressure differaals. Theese kalkulations ensure the ocument maints the dexreid cleanliness leeselves level.
Air Changes per Hour (ATH)
ACE meths how many time that e air within a space ie ies resereed each hour. Typicil ACH values fane fromm 20 to 600, depending oe cleanliness claces. Highek ACH values reducé particle concentration.
Calculating Airflow Rate
Ini adalah kalkulated usingg the formula:
1f 1f 1f FLT: 0 133; Q = ACE × Volume / 60 1; FLT: 1 3; ACH × Volume / 60; FLT: 1; 13; 1f 3;
where Volume is te room volume in cubic meters. Ini kalkulation helps yang menentukan apakah kebutuhan dan kapasitas yang dibutuhkan dan d filtration spesifikasi sistemm.