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Seng Sing Tan

Researcher at Nanyang Polytechnic

Publications -  15
Citations -  642

Seng Sing Tan is an academic researcher from Nanyang Polytechnic. The author has contributed to research in topics: Methane & Catalysis. The author has an hindex of 6, co-authored 15 publications receiving 604 citations. Previous affiliations of Seng Sing Tan include Deakin University.

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Photocatalytic reduction of carbon dioxide into gaseous hydrocarbon using TiO2 pellets

TL;DR: In this paper, a new approach of heterogeneous photocatalysis using pellet form of catalyst instead of immobilized catalysts on solid substrates was proposed to transform CO 2 into hydrocarbons under continuous UV irradiation at room conditions.

Photocatalytic reduction of carbon dioxide into gaseous hydrocarbon using TiO2 pellets

TL;DR: In this paper, a new approach of heterogeneous photocatalysis using pellet form of catalyst instead of immobilized catalysts on solid substrates was proposed to transform CO 2 into hydrocarbons under continuous UV irradiation at room conditions.
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Kinetic modelling for photosynthesis of hydrogen and Methane through catalytic reduction of carbon dioxide with water vapour

TL;DR: In this paper, a simple kinetic model incorporating the coupled effect of the adsorptive photocatalytic reduction and oxidation was developed to model the formation rates of hydrogen and methane through photocatallytic reduction of carbon dioxide with water vapour.
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Photosynthesis of hydrogen and methane as key components for clean energy system

TL;DR: In this paper, instead of coating catalysts on a substrate, a pellet form of catalysts, which has better adsorption capacity, was used in the photo-reduction of carbon dioxide with water.
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Photocatalytic Production of Methane and Hydrogen Through Reduction of Carbon Dioxide with Water Using Titania Pellets

TL;DR: In this paper, a pellet form of catalyst was used in photo-reduction of carbon dioxide with water, and the results showed that methane and hydrogen were produced through photoreduction with water.