Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)

The distribution of gaseous and particulate polycyclic aromatic hydrocarbons (PAHs), sources, and human exposure were studied around a petrochemical site located in Melaka, Malaysia from March 2021 - March 2022. Polyurethane (PUF) sampler devices were placed in six different areas to collect gaseous...

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Main Authors: Ramanathan, Sharanya, Mohd Jani, Siti Jariani, A. Ramly, Zamzam T, Huda, Muhammad Nurul, Lamia, Nowshin Jahan, Nawyal, Nazifa, Khan, Md Firoz
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2025
Online Access:http://psasir.upm.edu.my/id/eprint/120914/
http://psasir.upm.edu.my/id/eprint/120914/1/120914.pdf
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author Ramanathan, Sharanya
Mohd Jani, Siti Jariani
A. Ramly, Zamzam T
Huda, Muhammad Nurul
Lamia, Nowshin Jahan
Nawyal, Nazifa
Khan, Md Firoz
author_facet Ramanathan, Sharanya
Mohd Jani, Siti Jariani
A. Ramly, Zamzam T
Huda, Muhammad Nurul
Lamia, Nowshin Jahan
Nawyal, Nazifa
Khan, Md Firoz
author_sort Ramanathan, Sharanya
building UPM Institutional Repository
collection Online Access
description The distribution of gaseous and particulate polycyclic aromatic hydrocarbons (PAHs), sources, and human exposure were studied around a petrochemical site located in Melaka, Malaysia from March 2021 - March 2022. Polyurethane (PUF) sampler devices were placed in six different areas to collect gaseous phase PAHs, and a High Volume Air Sampler (HVS) device was placed at a single location to collect PM2.5-bound PAHs. PUF samplers utilize porous foam to absorb PAHs passively with zero external power for long-term exposure monitoring. Meanwhile, the HVS device draws air at higher flow rates for more than a day. A total of sixteen PAHs were analyzed in both particulate and gaseous phases. The average concentrations for the gaseous phase (n=48) were 15.90±27.29, 10.41±16.74, 7.47±18.18, 8.19±15.70, 9.39±19.35, and 11.19±28.35 ng/m3 at Sri Vanathandavar Temple, Masjid Wadhi, Tadika Cahaya, Tadika Pasti, Monforth Youth Centre, and Maha Mariamman Temple, respectively, whereas the average concentration of particulate phase (n=35) was 0.24±0.23 ng/m3 at SK Sungai Udang. In the gaseous phase, the seasonal variations at sampling sites in Southwest Monsoon (June – September) observed the greatest level at 13.89±4.69 ng/m3 and the lowest during Intermonsoon 1 (October – November) at 8.22±5.26 ng/m3 . The diagnostic ratio showed that the primary contributors of PAHs in both phases are traffic emissions, petroleum and coal burning. The total Benzo(a)Pyrene equivalent carcinogenic (BaPeq) exposure was 5.27 - 22.02 ng/m3 in the volatile phase and 1.18 ng/m3 in the particulate aerosol phase. For carcinogenic risk, the incremental lifetime cancer risk (ILCR) in adults was higher compared to children and adolescents in both gaseous and particulate phases. The Hazard Quotient (HQ) for the adolescent in the gaseous phase (9.86E-03) was relatively higher compared to the particulate aerosol phase (1.01E-03).
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institution Universiti Putra Malaysia
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publisher Penerbit Universiti Kebangsaan Malaysia
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spelling upm-1209142025-10-15T07:08:43Z http://psasir.upm.edu.my/id/eprint/120914/ Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia) Ramanathan, Sharanya Mohd Jani, Siti Jariani A. Ramly, Zamzam T Huda, Muhammad Nurul Lamia, Nowshin Jahan Nawyal, Nazifa Khan, Md Firoz The distribution of gaseous and particulate polycyclic aromatic hydrocarbons (PAHs), sources, and human exposure were studied around a petrochemical site located in Melaka, Malaysia from March 2021 - March 2022. Polyurethane (PUF) sampler devices were placed in six different areas to collect gaseous phase PAHs, and a High Volume Air Sampler (HVS) device was placed at a single location to collect PM2.5-bound PAHs. PUF samplers utilize porous foam to absorb PAHs passively with zero external power for long-term exposure monitoring. Meanwhile, the HVS device draws air at higher flow rates for more than a day. A total of sixteen PAHs were analyzed in both particulate and gaseous phases. The average concentrations for the gaseous phase (n=48) were 15.90±27.29, 10.41±16.74, 7.47±18.18, 8.19±15.70, 9.39±19.35, and 11.19±28.35 ng/m3 at Sri Vanathandavar Temple, Masjid Wadhi, Tadika Cahaya, Tadika Pasti, Monforth Youth Centre, and Maha Mariamman Temple, respectively, whereas the average concentration of particulate phase (n=35) was 0.24±0.23 ng/m3 at SK Sungai Udang. In the gaseous phase, the seasonal variations at sampling sites in Southwest Monsoon (June – September) observed the greatest level at 13.89±4.69 ng/m3 and the lowest during Intermonsoon 1 (October – November) at 8.22±5.26 ng/m3 . The diagnostic ratio showed that the primary contributors of PAHs in both phases are traffic emissions, petroleum and coal burning. The total Benzo(a)Pyrene equivalent carcinogenic (BaPeq) exposure was 5.27 - 22.02 ng/m3 in the volatile phase and 1.18 ng/m3 in the particulate aerosol phase. For carcinogenic risk, the incremental lifetime cancer risk (ILCR) in adults was higher compared to children and adolescents in both gaseous and particulate phases. The Hazard Quotient (HQ) for the adolescent in the gaseous phase (9.86E-03) was relatively higher compared to the particulate aerosol phase (1.01E-03). Penerbit Universiti Kebangsaan Malaysia 2025 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/120914/1/120914.pdf Ramanathan, Sharanya and Mohd Jani, Siti Jariani and A. Ramly, Zamzam T and Huda, Muhammad Nurul and Lamia, Nowshin Jahan and Nawyal, Nazifa and Khan, Md Firoz (2025) Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia). Sains Malaysiana, 54 (4). pp. 1037-1052. ISSN 0126-6039; eISSN: 2735-0118 https://www.ukm.my/jsm/pdf_files/SM-PDF-54-4-2025/6.pdf 10.17576/jsm-2025-5404-06
spellingShingle Ramanathan, Sharanya
Mohd Jani, Siti Jariani
A. Ramly, Zamzam T
Huda, Muhammad Nurul
Lamia, Nowshin Jahan
Nawyal, Nazifa
Khan, Md Firoz
Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title_full Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title_fullStr Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title_full_unstemmed Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title_short Polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
title_sort polycyclic aromatic hydrocarbons in volatile and particle phases over the vicinity of petrochemical refinery areas (hidrokarbon aromatik polisiklik dalam fasa meruap dan fasa zarah di persekitaran kawasan penapisan petrokimia)
url http://psasir.upm.edu.my/id/eprint/120914/
http://psasir.upm.edu.my/id/eprint/120914/
http://psasir.upm.edu.my/id/eprint/120914/
http://psasir.upm.edu.my/id/eprint/120914/1/120914.pdf