College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, PR China.
School of Architecture and Environment, Sichuan University, Chengdu 610065, China.
Sci Total Environ. 2023 Feb 20;860:160506. doi: 10.1016/j.scitotenv.2022.160506. Epub 2022 Nov 25.
Pathogenic bacteria pose a great threat to global public health from environmental and public health perspectives, especially regarding the impact of the COVID-19 pandemic worldwide. As a result, the increased risk of pathogenic bioaerosol exposure imposes a considerable health burden and raises specific concerns about the layout and location of vaccine manufacturers. This study proposed a grid computing method based on the CALPUFF modelling system and population-based environmental risks to reduce bioaerosol-related potential risks. We previously used the CALPUFF model to quantify the diffusion level, the spatial distribution of emissions, and potential environmental risks of bioaerosol leakage in Gansu province's Zhongmu Lanzhou biopharmaceutical plant from July 24, 2019, to August 20, 2019. By combining it with publicly available test data, the credibility was confirmed. Based on our previous research, the CALPUFF model application combined with the environmental population-based environmental risks in two scenarios: the layout and site selection, was explored by using the leakage accident of Zhongmu Lanzhou biopharmaceutical plant of Gansu province as a case study. Our results showed that the site selection method of scenario 2 coupled with the buffer area was more reasonable than scenario 1, and the final layout site selection point of scenario 2 was grid 157 as the optimal layout point. The simulation results demonstrated agreement with the actual survey. Our findings could assist global bioaerosol manufacturers in developing appropriate layout and site selection strategies to reduce bioaerosol-related potential environmental risks.
从环境和公共卫生的角度来看,病原细菌对全球公共健康构成了巨大威胁,尤其是在全球范围内 COVID-19 大流行的情况下。因此,病原生物气溶胶暴露的风险增加对健康造成了相当大的负担,并对疫苗制造商的布局和选址提出了具体的关注。本研究提出了一种基于 CALPUFF 模型系统和基于人群的环境风险的网格计算方法,以降低与生物气溶胶相关的潜在风险。我们之前使用 CALPUFF 模型来量化 2019 年 7 月 24 日至 2019 年 8 月 20 日期间甘肃省中牟兰州生物制药厂生物气溶胶泄漏的扩散水平、排放的空间分布和潜在环境风险。通过将其与公开的测试数据相结合,确认了可信度。基于我们之前的研究,我们探索了将 CALPUFF 模型应用与两种情景下的基于人群的环境风险相结合:布局和选址,将甘肃省中牟兰州生物制药厂的泄漏事故作为案例研究。我们的结果表明,情景 2 与缓冲区相结合的选址方法比情景 1 更合理,情景 2 的最终布局选址点为网格 157,作为最佳布局点。模拟结果与实际调查结果一致。我们的研究结果可以帮助全球生物气溶胶制造商制定适当的布局和选址策略,以降低与生物气溶胶相关的潜在环境风险。