Araştırma Makalesi
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ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA

Yıl 2025, Cilt: 9 Sayı: 1, 35 - 50, 06.07.2025

Öz

This study examined the heavy metal concentration of aerosol and its perceived impact on the health of residents of Port Harcourt Metropolis. From the study area, six locations on the Total Suspended Particulate (TSP) in the atmospheric aerosol was sampled, two sample locations in each of High Density Residential (HDR), Moderate Density Residential (MDR), and Low Density Residential (LDR). Offline aerosol measurement was carried out for seven days (a week) during wet and dry seasons. 84 aerosol samples were collected and subjected to laboratory analysis for selected heavy metals. ANOVA, TTest, and ChiSquare analysis were used in the analysis of the data on the SPSS software. The findings indicated that there is no statistically significant variation in the concentration of the selected heavy metals across locations and the Days of the (DO) week. In the study area, there are variations in the concentration of Copper (Cu), Nickel (Ni), and Iron (Fe) in the TSPM across the seasons while there is no statistically significant seasonal variation in the concentration of Chromium (Cr) and Lead (Pb) in the study area. The distributions of every other metal in the TSP except Fe in all the sampled locations are the same. LDR and MDR are similar in relation to average concentration of Fe (ppm) while MDR and HDR are also similar belonging to the same group. In the study area as revealed by the findings further showed that there is a statistically significant difference in the perception of residents of health risk associated with TSP in the atmosphere. Conclusively, that aerosol concentration is not static but dynamic across Land use types. Hence, the study recommends the need for source identification and apportionment using receptor models in new studies.

Kaynakça

  • Abbas, S .A. (2009).Air pollution, particulate matter (PM2.5)-induced gene expression of volatile organic compound and/or polycyclic aromatic hy-drocarbon-metabolizing enzymes in an in- vitro coculture lung mod-el.Toxicology in-Vitro, 23: 37-46.
  • Adon,A.J. & Catherine, L. (2020). Physico-chemical characterization of urban aerosols. Atmos. Chem. Phys, 5327–5354,www.atmos-chem-phys.net/20/5327.
  • Cassee, F. R., Héroux, M. E., Gerlofs-Nijland , M. E. & Kelly, F. J (2013). Particulate matter beyond mass: recent health evidence on the role of fractions, chemical constituents and sources of emission, Inhal. Toxicol, 25, 802–812.
  • Ezeh , G. C ., Imoh B. O., Olabode I. A., & Olawale E. A., (2012) . PIXE characterization of PM10 and PM2.5 particulates sizes collected in Ikoyi Lagos, Nigeria, Toxicological & Environmental Heavy metals concentration, 94:5, 884-894. DOI: 10.1080/02772248.2012.674133
  • Kim, K.H., Kabir, E., & Kabir, S., (2015).A review on the human health impact of airborne particulate matter.Environment International 74: 136–143.
  • Kumar, A., & Sarin, K. (2020). Geochemical characterization of modern aeolian dust over the northeastern Arabian Sea: Implication for dust transport in the Arabian sea. Sci. Total Environ 729, 138576. doi:10.1016/j.scitotenv.138576
  • Lawal, O., & Asimiea, A., (2015).Spatial Modeling of Population at Risk and PM2.5 Exposure Index. A case study in Nigeria. Ethiopian Journal of Envi-ronmental Studies & Management 8(1): 69 – 80.
  • Maier, K.L.,Alessandrini, F., & Beck-Speier, I., (2000). Health effects of ambient particulate matter– biological mechanisms and inflammatory respons-es to in-vitro and in- vivo particle exposures. Inhalation Toxicology, 20: 319-337
  • Mohr, C. (2011). Spatial variation of chemical composition and sources of submicron aerosol in Zurich during wintertime using mobile aerosol mass spectrometer data .Laboratory of Atmospheric Heavy metals concentration, Paul Scherrer Institute(PSI).
  • Pope III, C. A., (2010). Epidemiological basis for particulate air pollution health standards, Aerosol Sci. Technol., 32, 4–14, Environment 44, 1308-1320
  • Putaul, J. P. (2010). An European aerosol phenomenology-3: Physical and chemical characteristics of particulate matter from 60 rural, urban, and kerbside sites across Europe, Atmospheric Environment.
  • Ravindra, K.,Sokhi, R., & Van Grieken, R., (2008).Atmospheric polycy-clic aromatic hydrocarbons: Source attribution, emission factors and regula-tion. Atmospheric Environment 42: 2895–2921.
  • Romieu, I., Gouveia, N., Cifuentes, L.A., de Leon, A.P., Junger, W., Vera, J. &Tzintzun-Cervantes, G. (2012). Multicity study of air pollution and mortality in Latin America (the ESCALA study). Res. Rep. Health Eff. Inst. (171): 5-86.
  • Schwartz, J., Ballester, F., Saez, M., Pèrez-Hoyos, S., & Pèrez-Boillos, M. J. (1996). Sunyer, J. Environ. Health Perspect. 109, 1001-1005
  • Shi, Y., Ji, Y., & Sun, H. (2015.). Nanoscale characterization of PM2.5 airborne pollutants reveals high adhesiveness and aggregation capability of soot particles. Sci Rep, 5(3):181-183
  • Ukah, B.U., Ameh, P.D., Egber, J.C., Unigwe, C. O., & Ubido, O.E. (2020). Impact of effluent derived heavy metals on the groundwater quality in Ajao Industrial area, Nigeria: an assessement using entropy water quality index (EWQI). Int.J Energy Water Res., 10(20)., 120-138.
  • Weli,V.E, & Emenike,G.C. (2018). Atmospheric Aerosol Loading over the Urban Canopy of Port Harcourt City ,Nigeria. International Journal of En-vironment and Pollution Research. Vol 6.No. 2 pp .38-53.
  • Zhang, X., Wang, Y., Niu, T., (2012).Atmospheric aerosol compositions in China: Spatial/temporal variability, chemical signature, regional haze distri-bution and comparisons with global aerosols. Atmospheric Heavy metals con-centration and Physics 12: 779–799.

Yıl 2025, Cilt: 9 Sayı: 1, 35 - 50, 06.07.2025

Öz

Kaynakça

  • Abbas, S .A. (2009).Air pollution, particulate matter (PM2.5)-induced gene expression of volatile organic compound and/or polycyclic aromatic hy-drocarbon-metabolizing enzymes in an in- vitro coculture lung mod-el.Toxicology in-Vitro, 23: 37-46.
  • Adon,A.J. & Catherine, L. (2020). Physico-chemical characterization of urban aerosols. Atmos. Chem. Phys, 5327–5354,www.atmos-chem-phys.net/20/5327.
  • Cassee, F. R., Héroux, M. E., Gerlofs-Nijland , M. E. & Kelly, F. J (2013). Particulate matter beyond mass: recent health evidence on the role of fractions, chemical constituents and sources of emission, Inhal. Toxicol, 25, 802–812.
  • Ezeh , G. C ., Imoh B. O., Olabode I. A., & Olawale E. A., (2012) . PIXE characterization of PM10 and PM2.5 particulates sizes collected in Ikoyi Lagos, Nigeria, Toxicological & Environmental Heavy metals concentration, 94:5, 884-894. DOI: 10.1080/02772248.2012.674133
  • Kim, K.H., Kabir, E., & Kabir, S., (2015).A review on the human health impact of airborne particulate matter.Environment International 74: 136–143.
  • Kumar, A., & Sarin, K. (2020). Geochemical characterization of modern aeolian dust over the northeastern Arabian Sea: Implication for dust transport in the Arabian sea. Sci. Total Environ 729, 138576. doi:10.1016/j.scitotenv.138576
  • Lawal, O., & Asimiea, A., (2015).Spatial Modeling of Population at Risk and PM2.5 Exposure Index. A case study in Nigeria. Ethiopian Journal of Envi-ronmental Studies & Management 8(1): 69 – 80.
  • Maier, K.L.,Alessandrini, F., & Beck-Speier, I., (2000). Health effects of ambient particulate matter– biological mechanisms and inflammatory respons-es to in-vitro and in- vivo particle exposures. Inhalation Toxicology, 20: 319-337
  • Mohr, C. (2011). Spatial variation of chemical composition and sources of submicron aerosol in Zurich during wintertime using mobile aerosol mass spectrometer data .Laboratory of Atmospheric Heavy metals concentration, Paul Scherrer Institute(PSI).
  • Pope III, C. A., (2010). Epidemiological basis for particulate air pollution health standards, Aerosol Sci. Technol., 32, 4–14, Environment 44, 1308-1320
  • Putaul, J. P. (2010). An European aerosol phenomenology-3: Physical and chemical characteristics of particulate matter from 60 rural, urban, and kerbside sites across Europe, Atmospheric Environment.
  • Ravindra, K.,Sokhi, R., & Van Grieken, R., (2008).Atmospheric polycy-clic aromatic hydrocarbons: Source attribution, emission factors and regula-tion. Atmospheric Environment 42: 2895–2921.
  • Romieu, I., Gouveia, N., Cifuentes, L.A., de Leon, A.P., Junger, W., Vera, J. &Tzintzun-Cervantes, G. (2012). Multicity study of air pollution and mortality in Latin America (the ESCALA study). Res. Rep. Health Eff. Inst. (171): 5-86.
  • Schwartz, J., Ballester, F., Saez, M., Pèrez-Hoyos, S., & Pèrez-Boillos, M. J. (1996). Sunyer, J. Environ. Health Perspect. 109, 1001-1005
  • Shi, Y., Ji, Y., & Sun, H. (2015.). Nanoscale characterization of PM2.5 airborne pollutants reveals high adhesiveness and aggregation capability of soot particles. Sci Rep, 5(3):181-183
  • Ukah, B.U., Ameh, P.D., Egber, J.C., Unigwe, C. O., & Ubido, O.E. (2020). Impact of effluent derived heavy metals on the groundwater quality in Ajao Industrial area, Nigeria: an assessement using entropy water quality index (EWQI). Int.J Energy Water Res., 10(20)., 120-138.
  • Weli,V.E, & Emenike,G.C. (2018). Atmospheric Aerosol Loading over the Urban Canopy of Port Harcourt City ,Nigeria. International Journal of En-vironment and Pollution Research. Vol 6.No. 2 pp .38-53.
  • Zhang, X., Wang, Y., Niu, T., (2012).Atmospheric aerosol compositions in China: Spatial/temporal variability, chemical signature, regional haze distri-bution and comparisons with global aerosols. Atmospheric Heavy metals con-centration and Physics 12: 779–799.
Toplam 18 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Sosyoloji (Diğer)
Bölüm Araştırma Makalesi
Yazarlar

Amuche Obomanu Bu kişi benim

Temple Abali

Michael Uzodianya Didia Bu kişi benim

Yayımlanma Tarihi 6 Temmuz 2025
Gönderilme Tarihi 2 Aralık 2024
Kabul Tarihi 17 Şubat 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 9 Sayı: 1

Kaynak Göster

APA Obomanu, A., Abali, T., & Didia, M. U. (2025). ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA. International Journal of Social And Humanities Sciences, 9(1), 35-50.
AMA Obomanu A, Abali T, Didia MU. ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA. IJSHS. Temmuz 2025;9(1):35-50.
Chicago Obomanu, Amuche, Temple Abali, ve Michael Uzodianya Didia. “ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA”. International Journal of Social And Humanities Sciences 9, sy. 1 (Temmuz 2025): 35-50.
EndNote Obomanu A, Abali T, Didia MU (01 Temmuz 2025) ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA. International Journal of Social And Humanities Sciences 9 1 35–50.
IEEE A. Obomanu, T. Abali, ve M. U. Didia, “ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA”, IJSHS, c. 9, sy. 1, ss. 35–50, 2025.
ISNAD Obomanu, Amuche vd. “ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA”. International Journal of Social And Humanities Sciences 9/1 (Temmuz2025), 35-50.
JAMA Obomanu A, Abali T, Didia MU. ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA. IJSHS. 2025;9:35–50.
MLA Obomanu, Amuche vd. “ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA”. International Journal of Social And Humanities Sciences, c. 9, sy. 1, 2025, ss. 35-50.
Vancouver Obomanu A, Abali T, Didia MU. ASSESSMENT OF HEAVY METAL CONCENTRATION OF AEROSOL IN RESIDENTIAL AND COMMERCIAL AREAS AROUND PORT HARCOURT METROPOLIS, RIVERS STATE, NIGERIA. IJSHS. 2025;9(1):35-50.