Production of Methanol as a Fuel Energy from CO2 Present in Polluted Seawater - A Photocatalytic Outlook

Author:

Kavil Yasar N1,Shaban Yasser A12,Orif Mohammad I1,Al-Farawati Radwan1,Zobidi Mousa1,Khan Sahed U M3

Affiliation:

1. Marine Chemistry Department, Faculty of Marine Sciences, King Abdulaziz University, P.O. Box 80207, Jeddah21589, Saudi Arabia

2. National Institute of Oceanography & Fisheries, Qayet Bay, Alexandria, Egypt

3. Department of Chemistry and Biochemistry, Duquesne University, Pittsburgh, PA 15282, USA

Abstract

AbstractThe production of methanol by photocatalytic reduction of the CO2present in the different polluted seawater systems was explored using P–25, C/TiO2, and Cu-C/TiO2under both UV and sunlight. Both C/TiO2and Cu-C/TiO2were synthesized by the sonicated sol-gel method. The prepared photocatalyst demonstrated maximum efficiency when the dosage of photocatalysts was 1g/L and the doping level was 3wt% of copper. The maximum methanol yields of two observed polluted seawater systems were 2910 μmol/g and 2250 μmol/g after 5 hour illumination of UV light. However, the 5 hour natural sunlight illumination generated the yield of 990 μmol/g and 910 μmol/g of methanol. The observed results demonstrated that band gap narrowing of the photocatalyst by carbon modification and the restriction of electron-hole pair combination by copper doping both greatly enhanced the photocatalytic reduction of CO2to methanol under both UV and natural sunlight.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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