Toxicity Risk Assessment Due to Particulate Matter Pollution from Regional Health Data: Case Study from Central Romania

Author:

Maftei Carmen1ORCID,Vaseashta Ashok23ORCID,Poinareanu Ionut456ORCID

Affiliation:

1. Faculty of Civil Engineering, Transilvania University of Brasov, 900152 Brasov, Romania

2. Office of Research, International Clean Water Institute, Manassas, VA 20108, USA

3. Institute of Biomedical Engineering and Nanotechnologies, Faculty of Mechanical Engineering, Transport and Aeronautics, Ķīpsalas, LV1048 Rīga, Latvia

4. Faculty of Medicine, “Ovidius” University of Constanta, 900470 Constanta, Romania

5. Clinical Service of Pathology, “St. Apostol Andrei” Emergency County Hospital, 145 Tomis Blvd., 900591 Constanta, Romania

6. Faculty of Materials Science and Engineering, Transilvania University of Brasov, 500036 Brasov, Romania

Abstract

Air pollution poses one of the greatest dangers to public well-being. This article outlines a study conducted in the Central Romania Region regarding the health risks associated with particulate matter (PM) of two sizes, viz., PM10 and PM2.5. The methodology used consists of the following: (i) an analysis of the effects of PM pollutants, (ii) an analysis of total mortality and cardiovascular-related mortality, and (iii) a general health risk assessment. The Central Region of Romania is situated in the Carpathian Mountains’ inner arch (consisting of six counties). The total population of the region under investigation is about 2.6 million inhabitants. Health risk assessment is calculated based on the relative risk (RR) formula. During the study period, our simulations show that reducing these pollutants’ concentrations below the new WHO guidelines (2021) will prevent over 172 total fatalities in Brasov alone, as an example. Furthermore, the potential benefit of reducing annual PM2.5 levels on total cardiovascular mortality is around 188 persons in Brasov. Although health benefits may also depend upon other physiological parameters, all general health indicators point towards a significant improvement in overall health by a general reduction in particulate matter, as is shown by the toxicity assessment of the particulate matter in the region of interest. The modality can be applied to other locations for similar studies.

Publisher

MDPI AG

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