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  • Search: person:"YUSAF, TALAL F."
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Algae energy resources 1 Biodiesel 1 Multilayered composite 1 Renewable energies 1 adhesive wear and friction 1 betelnut fiber mats 1 operating parameters 1 orientation 1 polyester 1
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Yusaf, Talal F. 2 Buttsworth, D.R. 1 DEVADAS, ALVIN 1 Ghobadian, Barat 1 Najafi, Gholamhassan 1 Saleh, Khalid H. 1 YOUSIF, B. F. 1 YUSAF, TALAL F. 1 Yousif, B.F. 1
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Applied Energy 1 Renewable and Sustainable Energy Reviews 1 Surface Review and Letters (SRL) 1
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Showing 1 - 3 of 3
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Algae as a sustainable energy source for biofuel production in Iran: A case study
Najafi, Gholamhassan; Ghobadian, Barat; Yusaf, Talal F. - In: Renewable and Sustainable Energy Reviews 15 (2011) 8, pp. 3870-3876
Algae can be converted directly into energy, such as biodiesel, bioethanol and biomethanol and therefore can be a source of renewable energy. There is a growing interest for biodiesel production from algae because of its higher yield non-edible oil production and its fast growth that does not...
Persistent link: https://www.econbiz.de/10010573479
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CNG-diesel engine performance and exhaust emission analysis with the aid of artificial neural network
Yusaf, Talal F.; Buttsworth, D.R.; Saleh, Khalid H.; … - In: Applied Energy 87 (2010) 5, pp. 1661-1669
This study investigates the use of artificial neural network (ANN) modelling to predict brake power, torque, break specific fuel consumption (BSFC), and exhaust emissions of a diesel engine modified to operate with a combination of both compressed natural gas CNG and diesel fuels. A single...
Persistent link: https://www.econbiz.de/10008913696
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ADHESIVE WEAR AND FRICTIONAL BEHAVIOR OF MULTILAYERED POLYESTER COMPOSITE BASED ON BETELNUT FIBER MATS UNDER WET CONTACT CONDITIONS
YOUSIF, B. F.; DEVADAS, ALVIN; YUSAF, TALAL F. - In: Surface Review and Letters (SRL) 16 (2009) 03, pp. 407-414
In the current study, a multilayered polyester composite based on betelnut fiber mats is fabricated. The adhesive wear and frictional performance of the composite was studied against a smooth stainless steel at different sliding distances (0–6.72 km) and applied loads (20–200 N) at 2.8 m/s...
Persistent link: https://www.econbiz.de/10004996423
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