The rapid expansion of rice processing mills in agriculturally rich regions, such as Khajanagar, Kushtia, has resulted in elevated concentrations of particulate matter (PM), posing serious environmental and public health risks. The close proximity of rice mills to residential areas necessitates evaluating particulate matter dispersion to assess neighbourhood-level health risks. This study examines the spatial distribution, dispersion behaviour, and health impacts of PM₂.₅ and PM₁₀ across industrial and adjacent residential zones. A total of 69 sampling points were monitored using optical particle counters (OPCs) at 0–100 m (industrial) and 101–300 m (residential) distances, along with meteorological observations. PM₂.₅ concentrations in industrial areas exceeded all regulatory limits in Bangladesh, the WHO, and the U.S. EPA, while PM₁₀ exceeded WHO standards only within industrial zones; both fractions exceeded all benchmarks in residential areas. The Kruskal–Wallis test (p < 0.05) confirmed significant interzonal variation. Spatial mapping identified PM hotspots in the western and eastern industrial belts and the western residential cluster, providing empirical evidence of localized emission intensity and downwind accumulation driven by mill density and prevailing wind patterns. PM₂.₅ and PM₁₀ were highly correlated, though their relationships with humidity and temperature were weak. Gaussian plume modelling indicated that PM₁₀ dispersed and deposited over greater distances than PM₂.₅ due to its size-dependent transport under prevailing winds, increasing exposure in residential zones. AirQ⁺ health risk analysis revealed that PM₂.₅ exposure contributed to 39.78% of ALRI-related mortality in children under five, while in adults (≥ 30 years), it accounted for 48.01% of Chronic Obstructive Pulmonary Disease (COPD), 56.25% of Ischemic Heart Disease (IHD), and 65.05% of stroke deaths. PM₁₀ posed additional risks for IHD and lung cancer, with 34.16% of lung cancer mortality linked to PM₂.₅ exposure. By integrating spatial monitoring, dispersion modelling, and health risk assessment, this study identifies high-risk micro-environments and underscores the need for stricter emission control in rice-processing regions.
Rubaiatul Islam Zerin, M. Hossain, Humaira Rashid et al.· Environmental science and po...· 0 citations
Manganese (Mn) contamination in groundwater is an emerging public health concern in Bangladesh, particularly in rural communities. The main objective of this study was to evaluate the spatial patterns of Mn contamination across diverse hydrogeological settings, estimate human health risks, and identify suitable groundwater sources in shallow aquifers. A total of 132 groundwater samples were collected from shallow tube wells using a purposive sampling technique and analyzed by Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES) following standard procedures. The spatial patterns of groundwater contamination were depicted using ArcGIS version 10.8.2, while surface elevation and tube-well depth were incorporated into linear regression models to examine the influence of topographic factors on Mn distribution. Moreover, human health risks were evaluated using the Chronic Daily Intake (CDI), Hazard Quotient (HQ), and Hazard Index (HI) equations. The results showed that Jaypurhat had substantially higher Mn contamination, with approximately 76.67% and 91.67% of groundwater samples exceeding the former WHO and current Bangladesh drinking-water guideline values, respectively. Elevation showed only a weak positive relationship with Mn concentration in Jaypurhat, whereas tube-well depth had a strong negative relationship with Mn concentration in Chandpur, indicating that deeper tube wells contained lower Mn concentrations. The health risk assessment showed that Jaypurhat had considerably higher Mn-related health risks than Chandpur, particularly for children, while the suitable-depth analysis indicated that safer groundwater abstraction is more depth-dependent in Chandpur than in Jaypurhat. These findings suggest that the relevant authorities should implement regular groundwater quality monitoring and promote safer groundwater management practices to reduce Mn-related human health risks.
M. Hossain, Md. Rahedul Islam, Tamanna Yesmin et al.· Journal of Environmental Sci...· 0 citations