Concentration of the PM2.5 according to the sampling areas associated with the concentration of heavy metals and anions in Penang

Suvennie Saseetheran, B. Selvam, N. R. Awang, M. Yusoff, Abdus Salam Mohamed
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Abstract

Particulate matter (PM) was identified as the main air pollutants in Malaysia which directly impose a treat to human health and understanding this pollutant is also crucial for its mitigation and control. This study aims to determine and characterize the PM2.5 with the influence of meteorological parameters. The PM2.5 samples were collected at Perai, Nibong Tebal and highway of Penang Bridge represented the industrial, residential, and roadside areas of Mainland Penang, respectively. The descriptive statistical analysis was conducted to understand the variations of PM2.5 concentration on the study areas, while its relationship with meteorological parameters were tested using Pearson correlation. Eleven heavy metals and three anions were determined using mass spectrometry (ICP-MS) and Ion Chromatography, respectively. Results showed that the mean concentration of PM2.5 are 10.88 ?g/m³, 31.96 ?g/m³, and 39.35 g/m³ for residential area, industrial area, and roadside, respectively. The results revealed that mean concentrations of PM2.5 (39.35 ?g/m³) in the roadside are significantly higher than NAAQG 24-h average of 35 ?g/m³. Result also suggested that meteorological parameters were lest significant in controlling the PM2.5 concentrations as only the air pressure was found to be significant with the value of correlation coefficient of 0.476. The major components such as SO42-, K and Na account for about 70-90% of the PM2.5.
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PM2.5浓度根据采样区域与槟城重金属和阴离子浓度相关
颗粒物质(PM)被确定为马来西亚的主要空气污染物,它直接对人体健康造成损害,了解这种污染物对于减轻和控制其影响也至关重要。本研究的目的是在气象参数的影响下确定和表征PM2.5。PM2.5样本采集地点分别为槟城内地的工业区、住宅区和路边区。通过描述性统计分析了解PM2.5浓度在研究区域的变化,并利用Pearson相关检验其与气象参数的关系。采用质谱法(ICP-MS)和离子色谱法分别测定了11种重金属和3种阴离子。结果表明:居民区、工业区和路边PM2.5的平均浓度分别为10.88 g/m³、31.96 g/m³和39.35 g/m³;结果显示,路边PM2.5平均浓度(39.35 μ g/m³)显著高于NAAQG 24 h平均值(35 μ g/m³)。结果还表明,气象参数对PM2.5浓度的影响不显著,只有气压对PM2.5浓度的影响显著,相关系数为0.476。SO42-、K、Na等主要成分约占PM2.5的70-90%。
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