使用发光二极管产生的紫外线辐射对不钢表面进行灭菌
Joseph Wood1, Mariela Monge2, Emily P Seto3
1Office of Research and Development, Center for Environmental Solutions and Emergency Response, United States Environmental Protection Agency, Research Triangle Park, North Carolina, USA.
紫外线C发光二极管 (UVC-LED) 可以消毒不钢表面,但有效性取决于UVC剂量,微生物类型和子负载. 细菌子的完全无活化需要特定的条件来克服屏蔽效应.
科学领域:
- 微生物学 微生物学
- 摄影化学的使用.
- 表面科学是一门学科.
背景情况:
- 紫外线C发光二极管 (UVC-LED) 显示出通过使细菌和病毒无活化的消毒具有前景.
- 有限的数据存在于UVC-LED对绝育表面的有效性,特别是对细菌子的完全无活化.
研究的目的:
- 为了评估UVC-LED在不钢表面的灭菌效果.
- 为了确定紫外线剂量和其他变量对细菌子无活化的影响.
主要方法:
- 使用 *Bacillus atrophaeus* 和 *Bacillus pumilus* 的子作为指标微生物.
- 暴露在不钢表面,具有不同的子负载和注射方法,对UVC-LED辐射进行照射.
- 基于UVC剂量和微生物计数的量化无活化.
主要成果:
- 在UVC剂量从大约4500到21000mJ/cm2之间实现了灭菌.
- 微生物类型,子载荷和注射方法显著影响了无活化.
- 当子沉积量低 (2.96.2 log10 CFU/cm2) 并且凝结/屏蔽被最小化时,完全无活化发生.
结论:
- 紫外线LED可以实现不钢的灭菌,但需要高剂量和特定条件.
- 由于凝聚或异物物质导致的细菌子屏蔽可以降低UVC有效性.
- 优化UVC剂量和表面条件对于有效的灭菌至关重要.
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