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Ajay K. Dalai

Researcher at University of Saskatchewan

Publications -  525
Citations -  28990

Ajay K. Dalai is an academic researcher from University of Saskatchewan. The author has contributed to research in topics: Catalysis & Chemistry. The author has an hindex of 72, co-authored 465 publications receiving 22871 citations. Previous affiliations of Ajay K. Dalai include Indian Institute of Technology Roorkee & Energy Biosciences Institute.

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Hydrothermal gasification of soybean straw and flax straw for hydrogen-rich syngas production: Experimental and thermodynamic modeling

TL;DR: In this article, agricultural crop residues such as soybean straw and flax straw were gasified in subcritical water (300°C) and supercritical water for H2 production at a pressure range of 22-25 MPa.
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Enhanced CO2 Adsorption Using MgO-Impregnated Activated Carbon: Impact of Preparation Techniques

TL;DR: In this article, a facile and sustainable approach to produce magnesium oxide (MgO) activated carbons impregnated through a single-step activation of biochar is reported.
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Supercritical CO2 Fractionation of Bio-oil Produced from Mixed Biomass of Wheat and Wood Sawdust

TL;DR: In this article, the physical and chemical characteristics of mixed biomass (i.e., wheat−wood sawdust) were estimated using proximate analysis, calorific value, crystallinity, devolatalization behavior, and ultimate analysis.
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Production of glycerol carbonate using a novel Ti-SBA-15 catalyst

TL;DR: In this article, a green process for the production of glycerol carbonate (GYC) using a Ti-SBA-15 catalyst was developed. And a regression model was developed to analyze the correlation between reaction parameters and reaction outcomes which suggest that the reaction temperature has the most significant effect on the glycerolic conversion and GYC selectivity.
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Review on Fischer–Tropsch synthesis in supercritical media

TL;DR: A detailed review of the recent works regarding applications of supercritical media in Fischer-Tropsch synthesis (FTS) is presented in this paper, where the effects of temperature, pressure, solvent type, super-critical media/syngas molar ratio on SC-FTS are discussed.