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M. R. Islam

Researcher at Dalhousie University

Publications -  106
Citations -  2236

M. R. Islam is an academic researcher from Dalhousie University. The author has contributed to research in topics: Porous medium & Darcy's law. The author has an hindex of 24, co-authored 106 publications receiving 1966 citations. Previous affiliations of M. R. Islam include United Arab Emirates University & Colorado School of Mines.

Papers
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Waste Cooking Oil as an Alternate Feedstock for Biodiesel Production

TL;DR: In this article, a local restaurant in Halifax, Nova Scotia, Canada was used for the transesterification of waste cooking oil and the final biodiesel esters were determined by gas chromatography.
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The removal of As(III) and As(V) from aqueous solutions by waste materials.

TL;DR: The use of different waste materials such as Atlantic Cod fish scale, chicken fat, coconut fibre and charcoal in removing arsenic from aqueous solutions was investigated and various parameters such as residence time, adsorbent dose, initial concentration of adsorbate, grain size of the Adsorbent and pH of the bulk phase were studied to establish optimum conditions.
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Alteration of asphaltic crude rheology with electromagnetic and ultrasonic irradiation

TL;DR: In this article, the authors investigated the extent of thermal alterations of crude oil properties due to electromagnetic or ultrasonic irradiation and found that the presence of asphaltenes led to some irreversible alteration in crude oil rheology.
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A Critical Review of Electromagnetic Heating for Enhanced Oil Recovery

TL;DR: In this article, the authors present a critical review of electromagnetic heating of reservoirs for enhanced oil recovery, which is a relatively new method and has been of great interest in the recent years.
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The effect of microwave and ultrasonic irradiation on crude oil during production with a horizontal well

TL;DR: In this article, the authors investigated the possibility of using microwave or ultrasonic irradiation for removing precipitates in the horizontal section of the well without requiring expensive work-over operations.