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Literature List

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Literature deposition of particles in cleanrooms and associated controlled environments

Books

  • Particle deposition rate                              by Koos Agricola (Brookhuis)
  • Cleanroom testing and monitoring       by William Whyte (Euromed)
  • Testen en monitoren van cleanroom    by W. Whyte, translated by K. Agricola (Euromed)

ISO standards

  • ISO 14644-3            Measurement methods
  • ISO 14644-17          Particle deposition rate applications
  • Agricola K (2022), How to use cleanroom standards, ISCC 2022 Antalya

Particle deposition rate

  • Agricola K (2023) Particle deposition rate application ISO standard to control contamination by macro- and visible particles. Clean Air and Containment Review 49 p8-11.
  • Agricola K (2023), New Standard on Macro-Particles and Visible Particles in Cleanrooms—ISO 14644-17, Particle deposition rate applications. Journal of the IEST 66-1, p101-105.
  • Agricola K (2022), Latest developments in particle deposition monitoring, ISCC 2022 Antalya
  • Agricola K (2019), Draft ISO 14644-17: Particle deposition Matters, Cleanroom Technology 9 Sept 2019.
  • Agricola K (2018), Particle deposition rate applications, ISCC 2018 The Hague
  • Whyte W, Agricola K and Derks M (2015)., “Airborne particle deposition in cleanrooms; Part 1: Deposition mechanisms”, Clean Air and Containment Review 2015; Issue 24: 4-9. Available at http://eprints.gla.ac.uk/111678/1/111678.pdf.

Particle deposition rate limit to be able to make a product or perform a process

  • Agricola K (2024), Product Oriented Contamination Control, ISCC 2024 Milan
  • Agricola K (2023), Use of new ISO 14644-17 cleanroom standard in contamination control, Cleanroom Technology, 7-Nov-2023
  • Agricola K (2021), Product Cleanliness, Mikroniek 2021-6 p26-30
  • Agricola K (2018), Contamination control applied to inkjet printhead, ISCC 2018 The Hague
  • Agricola K (2017), Methods to keep a product clean. Clean Air and Containment Review 32, p4-10.
  • Agricola K (2017), Contamination challenges, solutions and standards. Methods to keep a product clean. Mikroniek 5 p5-11.
  • Agricola K (2015). “Product Oriented Contamination Control (POCC)”, Clean Air and Containment Review 24, p10-17.

Determination of air cleanliness requirements for a contamination control solution

  • Agricola K (2024), Cleanroom operations program, ISCC 2024 Milan
  • Agricola K (2024), Everything you need to know about human behaviour in cleanroom operations. Cleanroom Technology 19-Mar-2024.
  • Agricola K (2023), The impact of human behaviour on cleanrooms, ASCC 2023 Kanazawa
  • Agricola K (2020), Particle deposition rate in system contamination control. Proc. SPIE 11489, Systems Contamination: Prediction, Control, and Performance 2020, 114890Q; doi: 10.1117/12.2567513  
  • Whyte W and Agricola K (2018), Comparison of the removal of macroparticles and MCPs in cleanrooms by surface deposition and mechanical ventilation Clean Air and Containment Review 2016; Issue 35: 4-10.
  • Whyte W, , Whyte WM, Ward S and Agricola K (2018),Ventilation effectiveness in cleanrooms and its relation to decay rate, recovery rate, and air change rate
  • Whyte W, Eaton T, Whyte WM, Lenegan N, Ward S and Agricola K (2017).Calculation of air supply rates and concentrations of airborne contamination in non-UDAF cleanrooms. European Journal of Parenteral and Pharmaceutical Sciences 2017; 22(2):  38-49. Available at http://eprints.gla.ac.uk/157532/1/157532.pdf
  • Agricola K (2017). The impact of cleanroom behaviour on contamination control. Pharm. Ind. 79, Nr 1, 112-119 (2017).
  • Whyte W, Agricola K and Derks M (2016), “Airborne particle deposition in cleanrooms; Part 3: Product contamination and cleanroom classification”, Clean Air and Containment Review 2016; Issue 26: 4-10.. Available at http://eprints.gla.ac.uk/119089/1/119089.pdf
  • Whyte W, Agricola K and Derks M (2016), “Airborne particle deposition in cleanrooms; Part 2: relationship between deposition rate and airborne concentration”, Clean Air and Containment Review 2016; Issue 25: 4-10. Available at http://eprints.gla.ac.uk/119091/1/119091.pdf.

Monitoring the effectiveness of the established control solution

  • Agricola K (2016). Real-time Particle Deposition Monitoring of Operational Cleanroom Quality. November 2016. Journal of the IEST 59(1):40-52; DOI 10.17764/1098-4321.59.1.40
  • Agricola K (2016). Real time obscuration monitoring. SPIE Optical Engineering + Applications. 99520L (2016); doi: 10.1117/12.2237260.
  • Agricola K (2016), Monitoring macroparticles in a cleanroom, ISCC 2016 São Paulo.

Predicting surface cleanliness of various surfaces in a controlled environment

  • Agricola K, The role of surface cleanliness in contamination control. Proc. SPIE 12224, Space Systems Contamination: Prediction, Control, and Performance 2022, 122240Q (3 October 2022); doi: 10.1117/12.2632673

Providing information to improve the contamination control solution

  • Agricola K. (2015), Practical experiences in Particle Deposition Monitoring, Clean Air and Containment Review 21: p4-8.