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Titlebook: Energy Footprints of the Energy Sector; Subramanian Senthilkannan Muthu Book 2019 Springer Nature Singapore Pte Ltd. 2019 Bioenergy Produc

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2345-7651 study to highlight the energy footprint in India and the scThis book examines the energy footprints of various industrial sectors, including the bio- and hydrogen energy systems, and explores the scope for improvement, particularly in India. It focuses on the consumption and conservation of energy,
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Addressing Environmental Criteria and Energy Footprint in the Selection of Feedstocks for Bioenergylevant sustainability criteria in the exploitation of feedstocks for bioenergy production from a life cycle perspective. Three types of biofuels were evaluated: biogas, bioethanol and biodiesel. In addition, conventional and innovative biomass sources for bioenergy will be analysed and compared. A c
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Cumulative Energy Demand of Hydrogen Energy Systems,ons are actually available and implemented. In order to check the suitability of hydrogen under sustainability aspects, the life cycle assessment methodology is often used. In particular, global warming (i.e., carbon footprint) and cumulative energy demand (CED or energy footprint) are among the mos
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Cumulative Energy Demand of Hydrogen Energy Systems,rom steam reforming of natural gas. Furthermore, a correlation equation between CED and carbon footprint is calculated and applied for the estimation of harmonised CED values. The use of harmonised values allows sound comparisons by mitigating the risk of misinterpretation. The results show that ele
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Energy Footprint of India: Scope for Improvements in End-Use Energy Efficiency and Renewable Energyhe perishing stock of fossil fuel coupled with the growing concerns of climate change has necessitated the exploration of cost effective, environment friendly, and sustainable energy alternatives. Renewable sources of energy such as solar and wind are emerging as viable alternatives to meet the grow
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https://doi.org/10.1007/978-3-322-90706-6 sugar beet and their by-products (molasses and bagasse) are recognised as technologically validated biomass sources for bioethanol production. As for biodiesel, oilseeds (soybean, palm, sunflower, etc.) and cooking oil residues are possible feedstocks. The number of environmental studies related to
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Sozialpolitik in der Bundesrepublikhe perishing stock of fossil fuel coupled with the growing concerns of climate change has necessitated the exploration of cost effective, environment friendly, and sustainable energy alternatives. Renewable sources of energy such as solar and wind are emerging as viable alternatives to meet the grow
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