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 2013-04-30

 محتوى عناصر الأتربة المستنشقة والمأخوذة من الأماكن السكنية والصناعية بمدينة الطائف

 شلتوت, عبد الله بن أمين


//uquui/handle/20.500.12248/131520
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محتوى عناصر الأتربة المستنشقة والمأخوذة من الأماكن السكنية والصناعية بمدينة الطائف

Alternative : Elemental composition of PM2.5 particles sampled in industrial and residential areas of Taif, Saudi Arabia
Publisher :معهد خادم الحرمين الشريفين لأبحاث الحج والعمرة - جامعة أم القرى
Issue Date : 2013-04-30
Description : -
Language : en
is part of series أبحاث الملتقى العلمي 13;6

Atmospheric aerosol particles PM2.5 were collected from two different sites (industrial and residential) in Taif during the summer of 2011. The industrial site was situated in the largest industrial area of Taif, and the residential site was situated on Television Street, which is the city’s most crowded area. PM2.5 samples were collected on polycarbonate filters using a cyclonic collector. Each sample was collected over a 24 hour period and new samples were collected weekly. An Energy Dispersive X-ray Fluorescence (EDXRF) spectrometer with a Mo secondary target was used to analyze the solid samples because of the relative simplicity of the technique and the widespread availability of the corresponding spectrometer. The use of a Mo secondary target is advantageous because it decreases the impact of continuum radiation from the x-ray tube and increases the signal to background ratio. Quantitative X-ray Analysis Software (PyMca) was used to perform quantitative analysis of the atmospheric aerosols. Direct analysis resulted in detected concentrations for sixteen elements; Si, S, Cl, K, Ca, Ti, Cr, Mn, Fe, Ni, Cu, Zn, Rb, Sr, Pb and Black Carbon (BC). The measured concentrations of the potentially hazardous trace elements Cu, Cr, Mn, Ni and Pb were below the limits defined by international guidelines and national standards for ambient air quality. However, further long-term research will be required to validate the quantification of trace elements in particulate matter in Taif.

Title: محتوى عناصر الأتربة المستنشقة والمأخوذة من الأماكن السكنية والصناعية بمدينة الطائف
Other Titles: Elemental composition of PM2.5 particles sampled in industrial and residential areas of Taif, Saudi Arabia
Authors: شلتوت, عبد الله بن أمين
Subjects :: الأتربة والغبار
التلوث الجوي
Issue Date :: 30-April-2013
Publisher :: معهد خادم الحرمين الشريفين لأبحاث الحج والعمرة - جامعة أم القرى
Series/Report no.: أبحاث الملتقى العلمي 13;6
Abstract: Atmospheric aerosol particles PM2.5 were collected from two different sites (industrial and residential) in Taif during the summer of 2011. The industrial site was situated in the largest industrial area of Taif, and the residential site was situated on Television Street, which is the city’s most crowded area. PM2.5 samples were collected on polycarbonate filters using a cyclonic collector. Each sample was collected over a 24 hour period and new samples were collected weekly. An Energy Dispersive X-ray Fluorescence (EDXRF) spectrometer with a Mo secondary target was used to analyze the solid samples because of the relative simplicity of the technique and the widespread availability of the corresponding spectrometer. The use of a Mo secondary target is advantageous because it decreases the impact of continuum radiation from the x-ray tube and increases the signal to background ratio. Quantitative X-ray Analysis Software (PyMca) was used to perform quantitative analysis of the atmospheric aerosols. Direct analysis resulted in detected concentrations for sixteen elements; Si, S, Cl, K, Ca, Ti, Cr, Mn, Fe, Ni, Cu, Zn, Rb, Sr, Pb and Black Carbon (BC). The measured concentrations of the potentially hazardous trace elements Cu, Cr, Mn, Ni and Pb were below the limits defined by international guidelines and national standards for ambient air quality. However, further long-term research will be required to validate the quantification of trace elements in particulate matter in Taif.
URI: http://dorar.uqu.edu.sa//uquui/handle/20.500.12248/131520
Appears in Collections :3- المحورالثالث: دراسات البيئة والصحة

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