Quantitative microbial risk assessment (QMRA) tool for modelling pathogen infection risk to wastewater treatment plant workers

废水 室内生物气溶胶 环境科学 风险评估 生物固体 风险分析(工程) 污水处理 环境卫生 风险管理 环境工程 废物管理 生物 工程类 医学 生态学 计算机科学 业务 计算机安全 财务
作者
Ashley Heida,Rasha Maal‐Bared,Marc Veillette,Caroline Duchaine,Kelly A. Reynolds,Ahamed Ashraf,Olusola Olabisi Ogunseye,Yoonhee Jung,Lester M. Shulman,Luisa A. Ikner,Walter Q. Betancourt,Kerry A. Hamilton,Amanda M. Wilson
出处
期刊:Water Research [Elsevier]
卷期号:260: 121858-121858 被引量:12
标识
DOI:10.1016/j.watres.2024.121858
摘要

Wastewater treatment plants (WWTPs) provide vital services to the public by removing contaminants from wastewater before returning environmental discharge or reuse for beneficial purposes. WWTP workers occupationally exposed to wastewater can be at risk of respiratory or gastrointestinal diseases. The study objectives were to: (1) quantify pathogens and pathogen indicators in wastewater aerosols near different WWTP processes/unit operations; (2) develop a QMRA model for multi-pathogen and multi-exposure pathway risks, and (3) create a web-based application to perform and communicate risk calculations for wastewater workers. Case studies for seven different WWTP job tasks were performed investigating infection risk across nine different enteric and respiratory pathogens. It was observed that the ingestion risk among job tasks was highest for "walking the WWTP," which involved exposure from splashing, bioaerosols, and hand-to-mouth contact from touching contaminated surfaces. There was also a notable difference in exposure risk during peak (5:00 am-9:00 am) and non-peak hours (9:00 am- 5:00am), with risks during the peak flow hours of the early morning assumed to be 5 times greater than non-peak hours. N95 respirator usage reduced respiratory risks by 77%. The developed tool performs multiple QMRA calculations to estimate WWTP workers' infection risks from accidental ingestion or inhalation of wastewater from multiple pathogens and exposure scenarios, which can inform risk management strategies to protect occupational health. However, more data are needed to reduce uncertainty in model estimates, including comparative data for pathogen concentrations in wastewater during peak and non-peak hours. QMRA tools will increase accessibility of risk models for utilization in decision-making.
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