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Dive into the research topics where Basheer Chanbasha is active.

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Featured researches published by Basheer Chanbasha.


Journal of Separation Science | 2015

Determination of N-nitrosamines by automated dispersive liquid-liquid microextraction integrated with gas chromatography and mass spectrometry.

Mousa Yaser Amayreh; Basheer Chanbasha; Khalid Alhooshani; Nuhu Dalhat Mu'azu; Hian Kee Lee

An automated dispersive liquid-liquid microextraction integrated with gas chromatography and mass spectrometric procedure was developed for the determination of three N-nitrosamines (N-nitroso-di-n-propylamine, N-nitrosopiperidine, and N-nitroso di-n-butylamine) in water samples. Response surface methodology was employed to optimize relevant extraction parameters including extraction time, dispersive solvent volume, water sample pH, sodium chloride concentration, and agitation (stirring) speed. The optimal dispersive liquid-liquid microextraction conditions were 28 min of extraction time, 33 μL of methanol as dispersive solvent, 722 rotations per minute of agitation speed, 23% w/v sodium chloride concentration, and pH of 10.5. Under these conditions, good linearity for the analytes in the range from 0.1 to 100 μg/L with coefficients of determination (r(2) ) from 0.988 to 0.998 were obtained. The limits of detection based on a signal-to-noise ratio of 3 were between 5.7 and 124 ng/L with corresponding relative standard deviations from 3.4 to 5.9% (n = 4). The relative recoveries of N-nitroso-di-n-propylamine, N-nitrosopiperidine, and N-nitroso di-n-butylamine from spiked groundwater and tap water samples at concentrations of 2 μg/L of each analyte (mean ± standard deviation, n = 3) were (93.9 ± 8.7), (90.6 ± 10.7), and (103.7 ± 8.0)%, respectively. The method was applied to determine the N-nitrosamines in water samples of different complexities, such as tap water, and groundwater, before and after treatment, in a local water treatment plant.


Archive | 2014

Automated microextraction technique for the analysis of N-nitrosamines in water

Basheer Chanbasha; Mousa Yaser Amayreh


Archive | 2014

METHOD OF DETECTING AND QUANTIFYING PERCHLORATE CONTAMINATION

Basheer Chanbasha; Hakimu Nsubuga


Archive | 2017

METHOD FOR DETECTING AND QUANTIFYING HALOETHER CONTAMINATION IN AQUEOUS SAMPLES

Basheer Chanbasha; Alsharaa Abdulnaser Khaled


Archive | 2017

MICROWAVE-ASSISTED HEADSPACE LIQUID-PHASE MICROEXTRACTION OF AN ANALYTE

Basheer Chanbasha; Alsharaa Abdulnaser Khaled


Archive | 2017

N-NITROSAMINE DETERMINATION IN AQUEOUS SAMPLES WITH SONICATION AND MICROEXTRACTION

Basheer Chanbasha; Amayreh Mousa Yaser


Archive | 2017

PROCESS FOR INHIBITING SCALE FORMATION WITH UV LIGHT

Basheer Chanbasha; Sayed Mohamed Mokhtar


Archive | 2017

Mercury detection in water-based compositions

Basheer Chanbasha; Adio Salawu Omobayo


Journal of Electroanalytical Chemistry | 2017

高効率は二酸化炭素の電気化学的還元エタノールへのgraphene/Cu_2 0電極【Powered by NICT】

R A Geioushy; M Khaled Mazen; S Hakeem Abbas; Alhooshani Khalid; Basheer Chanbasha


Archive | 2016

Method for detecting Hg2+ in an aqueous solution

Basheer Chanbasha; Adio Salawu Omobayo

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Dive into the Basheer Chanbasha's collaboration.

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Mousa Yaser Amayreh

King Fahd University of Petroleum and Minerals

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Alsharaa Abdulnaser Khaled

King Fahd University of Petroleum and Minerals

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Abdulelah Thabet

King Fahd University of Petroleum and Minerals

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Amayreh Mousa Yaser

King Fahd University of Petroleum and Minerals

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Hakimu Nsubuga

King Fahd University of Petroleum and Minerals

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Ibrahim Mohammed Al-Zahrani

King Abdulaziz City for Science and Technology

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Khalid Alhooshani

King Fahd University of Petroleum and Minerals

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Sayed Mohamed Mokhtar

King Fahd University of Petroleum and Minerals

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Than Htun

King Abdulaziz City for Science and Technology

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