Amrinder Singh Sethi Waste to Energy

ISBN 13: 9783659506161

Waste to Energy

 
9783659506161: Waste to Energy
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In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day.

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Amrinder Singh SethiAssistant Professor, Department of Mechanical Engineering, Lala Lajpat Rai Institute of Engineering & Technology, Moga, Punjab, India. M.Tech in Industrial Engineering, Guru Nanak Dev Engineering College, Ludhiana, Punjab, India. Research interest in Waste to Energy.

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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day. | Format: Paperback | Language/Sprache: english | 107 gr | 220x150x3 mm | 68 pp. Seller Inventory # K9783659506161

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Book Description LAP Lambert Academic Publishing. Paperback. Condition: New. 68 pages. Dimensions: 9.0in. x 6.0in. x 0.2in.In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4. 21 kW and one kilogram of plastic syringe was equivalent to 11. 86 kW. The total energy that can be extracted from selected wastes amounts to 9. 03 MWday. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Seller Inventory # 9783659506161

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Book Description LAP Lambert Academic Publishing, United States, 2015. Paperback. Condition: New. Language: English . Brand New Book ***** Print on Demand *****.In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day. Seller Inventory # AAV9783659506161

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Book Description LAP Lambert Academic Publishing Okt 2015, 2015. Taschenbuch. Condition: Neu. Neuware - In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day. 68 pp. Englisch. Seller Inventory # 9783659506161

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Book Description LAP Lambert Academic Publishing Okt 2015, 2015. Taschenbuch. Condition: Neu. Neuware - In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day. 68 pp. Englisch. Seller Inventory # 9783659506161

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Book Description LAP Lambert Academic Publishing Okt 2015, 2015. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - In the present scenario, waste to energy is emerging as a new technique. But its execution in medical field is still missing even in developing countries. The present study investigates the energy potential from medical waste produced by healthcare facilities of Moga city. The study included the collection of generation rates from city hospitals and selected, cotton, bandages, plastic syringe and glucose bottles as the main components. Five samples of each selected components were collected and tested in laboratory, where proximate analysis and calorific value tests were conducted. The investigation highlighted that plastic syringe has highest calorific value and cotton has least. One kilogram of cotton waste was equivalent to 4.21 kW and one kilogram of plastic syringe was equivalent to 11.86 kW.The total energy that can be extracted from selected wastes amounts to 9.03 MW/day. 68 pp. Englisch. Seller Inventory # 9783659506161

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