基于现场测量的中国高水平生物安全实验室室内环境调查

Q1 Engineering
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引用次数: 0

摘要

高水平生物安全实验室不仅是传染病防控的基础支撑,也与环境安全、社会安全等重点领域相互关联,越来越受到人们的关注。良好的室内环境是保证实验顺利进行和生物风险防控的前提。为了更好地了解高级别生物安全实验室的室内环境,从2020年12月至2022年12月,我们精心挑选了国内19个高级别生物安全实验室(共65个主室)作为检测对象。按照中国标准 GB 50346 规定的测试方法,对换气量、洁净度、静压差、温度、相对湿度和照度进行了测试和分析。结果表明,所有测量参数均符合中国标准 GB 50346 的要求,生物安全性能完全令人满意。但个别参数出现了超标现象:洁净度为 7 级和 8 级的主要房间换气次数超过标准下限 50%的比例分别为 54.5%和 69.8%;BSL-3-b1 实验室主要房间大气压差超过标准下限 50%的比例为 94.7%;BSL-3-b2 实验室主要房间大气压差最大值接近 -160 Pa。在保证主室洁净度和压力梯度的前提下,可以减少换气次数。本研究首次揭示了不同类型和级别生物安全实验室的环境参数,可为此类设施的设计和运行提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigations of indoor environment of high level biosafety laboratory in China based on field measurements

Investigations of indoor environment of high level biosafety laboratory in China based on field measurements

The high-level biosafety laboratory is not only the basic support for infectious disease prevention and control, but also interrelated with key areas such as environmental security and social security, which has attracted increasing attention. A good indoor environment is the premise to ensure the smooth progress of the experiment and biological risk prevention and control. In order to better understand the indoor environment of high-level biosafety laboratories, 19 high-level biosafety laboratories in China (with a total of 65 main rooms) were carefully selected as the test objects from December 2020 to December 2022. According to the test methods specified in the Chinese standard GB 50346, the air change, cleanliness, static pressure difference, temperature, relative humidity, and illumination were tested and analyzed. The results showed that all the measured parameters met the requirements of the Chinese standard GB 50346, and the bio-safety performance was completely satisfactory. However, individual parameters showed some overlarge values: the proportion of main rooms with cleanliness levels of 7 and 8 exceeding 50% of the lower limit for air changes was 54.5% and 69.8%, respectively; the proportion of main rooms in BSL-3-b1 laboratories with atmospheric pressure differentials exceeding 50% of the standard lower limit was 94.7%; and the atmospheric pressure differential in the main rooms of BSL-3-b2 laboratories reached a maximum of nearly -160 Pa. On the premise of ensuring the cleanliness and pressure gradient of the main room, it may be possible to reduce the air change. This study, for the first time, reveals the environmental parameters of various types and levels of biosafety laboratories, which can provide reference for the design and operation of such facilities.

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来源期刊
Energy and Built Environment
Energy and Built Environment Engineering-Building and Construction
CiteScore
15.90
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