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Numerical Simulation of ethanol production using Monod kinetic Model: Effect of Process Parameters on Ethanol Production using Numerical Simulation - Softcover

 
9786139462728: Numerical Simulation of ethanol production using Monod kinetic Model: Effect of Process Parameters on Ethanol Production using Numerical Simulation

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Pakistan is world 7th largest producer of sugar cane, apart from this 84 sugar industries and 22 distillery present in Pakistan. In this research work numerical simulation was used to carryout ethanol production and effects of various parameter on that. Numerical simulation was done by selecting Rk 4rth order method to solve monod model by developing C++ program. C++program were developed for solving different parameters like pH, oxygen flowrate, agitational intensity and temperature. The maximum ethanol was produced by utilizing 5.5pH, 0.1vvm/l of oxygen flowrate,300rpm of agitational intensity and 40oC. Numerical simulation has getting importance regarding optimization of various parameter for any process. The simulation and experimental results were compared and result were analysed. By utilizing temp 40oC,pH 5.5 ,oxygen flowrate 0.1 vvm/l and agitational intensity rpm 300. As carbon and nitrogen source is concerned there are different source were present like for carbon sucrose, glucose and molasses, but the maximum production at 15% molasses . As for nitrogen source is concerned (NH4)2SO4 is about 0.5% . study the various other model that were made for ethanol production.

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Abdul Sattar Jatoi
ISBN 10: 613946272X ISBN 13: 9786139462728
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Pakistan is world 7th largest producer of sugar cane, apart from this 84 sugar industries and 22 distillery present in Pakistan. In this research work numerical simulation was used to carryout ethanol production and effects of various parameter on that. Numerical simulation was done by selecting Rk 4rth order method to solve monod model by developing C++ program. C++program were developed for solving different parameters like pH, oxygen flowrate, agitational intensity and temperature. The maximum ethanol was produced by utilizing 5.5pH, 0.1vvm/l of oxygen flowrate,300rpm of agitational intensity and 40oC. Numerical simulation has getting importance regarding optimization of various parameter for any process. The simulation and experimental results were compared and result were analysed. By utilizing temp 40oC,pH 5.5 ,oxygen flowrate 0.1 vvm/l and agitational intensity rpm 300. As carbon and nitrogen source is concerned there are different source were present like for carbon sucrose, glucose and molasses, but the maximum production at 15% molasses . As for nitrogen source is concerned (NH4)2SO4 is about 0.5% . study the various other model that were made for ethanol production. 80 pp. Englisch. Bestandsnummer des Verkäufers 9786139462728

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Abdul Sattar Jatoi|Abdul Karim Shah|Zubair Hashmi
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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Jatoi Abdul SattarAbdul Sattar Jatoi working as lecturer in department of chemical engineering Dawood University of engineering and technology Karachi. His research work is related to the bio-chemical engineering with respect to nume. Bestandsnummer des Verkäufers 285393810

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Jatoi, Abdul Sattar/ Shah, Abdul Karim/ Hashmi, Zubair
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Taschenbuch. Zustand: Neu. Neuware -Pakistan is world 7th largest producer of sugar cane, apart from this 84 sugar industries and 22 distillery present in Pakistan. In this research work numerical simulation was used to carryout ethanol production and effects of various parameter on that. Numerical simulation was done by selecting Rk 4rth order method to solve monod model by developing C++ program. C++program were developed for solving different parameters like pH, oxygen flowrate, agitational intensity and temperature. The maximum ethanol was produced by utilizing 5.5pH, 0.1vvm/l of oxygen flowrate,300rpm of agitational intensity and 40oC. Numerical simulation has getting importance regarding optimization of various parameter for any process. The simulation and experimental results were compared and result were analysed. By utilizing temp 40oC,pH 5.5 ,oxygen flowrate 0.1 vvm/l and agitational intensity rpm 300. As carbon and nitrogen source is concerned there are different source were present like for carbon sucrose, glucose and molasses, but the maximum production at 15% molasses . As for nitrogen source is concerned (NH4)2SO4 is about 0.5% . study the various other model that were made for ethanol production.Books on Demand GmbH, Überseering 33, 22297 Hamburg 80 pp. Englisch. Bestandsnummer des Verkäufers 9786139462728

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ISBN 10: 613946272X ISBN 13: 9786139462728
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Pakistan is world 7th largest producer of sugar cane, apart from this 84 sugar industries and 22 distillery present in Pakistan. In this research work numerical simulation was used to carryout ethanol production and effects of various parameter on that. Numerical simulation was done by selecting Rk 4rth order method to solve monod model by developing C++ program. C++program were developed for solving different parameters like pH, oxygen flowrate, agitational intensity and temperature. The maximum ethanol was produced by utilizing 5.5pH, 0.1vvm/l of oxygen flowrate,300rpm of agitational intensity and 40oC. Numerical simulation has getting importance regarding optimization of various parameter for any process. The simulation and experimental results were compared and result were analysed. By utilizing temp 40oC,pH 5.5 ,oxygen flowrate 0.1 vvm/l and agitational intensity rpm 300. As carbon and nitrogen source is concerned there are different source were present like for carbon sucrose, glucose and molasses, but the maximum production at 15% molasses . As for nitrogen source is concerned (NH4)2SO4 is about 0.5% . study the various other model that were made for ethanol production. Bestandsnummer des Verkäufers 9786139462728

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