Download Assessment of Carbon Footprint in Different Industrial by Subramanian Senthilkannan Muthu PDF
By Subramanian Senthilkannan Muthu
Followed by way of the former half (Volume-1), Volume-2 of carbon footprint evaluation booklet offers with the evaluate of carbon footprint in several different sectors, which have been now not dealt within the first half. recognition on Carbon footprint is starting to be daily from the general public, executive and media. definitely it's essentially the most very important issues within the time table of each kingdom, that's attempting its top to lessen its carbon footprint to the utmost attainable volume. each production or zone wish to lessen the carbon footprint of its items and shoppers are searhing for the goods which emit decrease carbon emissions of their whole existence cycle. evaluation of Carbon footprint for various items, procedures and companies and in addition carbon labeling of goods became wide-spread issues within the contemporary previous in a number of business sectors. each has its exact review and modeling suggestions, allocation systems, mitigation tools and labeling techniques for its carbon emissions. With this heritage, quantity of this ebook has been framed with committed chapters on carbon footprint overview on quite a few business sectors, except those lined in quantity 1. In each one bankruptcy, info bearing on the overview methodologies of carbon footprint in a specific undefined, demanding situations in calculating the carbon footprint, case stories of varied items in that specific undefined, mitigation measures to be to trim down the carbon footprint, thoughts for extra study are mentioned intimately.
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Additional resources for Assessment of Carbon Footprint in Different Industrial Sectors, Volume 2
Int J Life Cycle Assess 16:599–610 Ramos S, Vázquez-Rowe I, Artetxe I, Moreira MT, Feijoo G, Zufía J (2014) Operational Efficiency and Environmental Impact Fluctuations of the Basque Trawling Fleet Using LCA+ DEA Methodology. Turk J Fish Aquat Sc 14:77–90 Reap J, Roman F, Duncan S, Bras B (2008a) A survey of unresolved problems in life cycle assessment. Part 1: goal and scope and inventory analysis. Int J Life Cycle Assess 13:290–300 Reap J, Roman F, Duncan S, Bras B (2008b) A survey of unresolved problems in life cycle assessment.
10–16 May 2013, ICES Headquarters, Copenhagen. ICES CM 2013/ACOM:11A. p 11 ILCD (2010) General guide for life cycle assessment—detailed guidance. European Commission, Joint Research Centre, Institute for Environment and Sustainability ILCD (2011) Recommendations for life cycle impact assessment in the European context-based on existing environmental impact assessment models and factors. International reference life cycle data system. ISBN 978-92-79-17451-3 IPCC (2007) Contribution of Working Groups I, II and III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change.
2012). From a strictly GHG emissions perspective, it is clear that the intensity of energy use in hake fisheries is among the highest in the world, due to a series of inherent characteristics: (i) the species type (demersal bottom-dwellers); (ii) the fishing gears used (trawlers account for the highest proportion of landings); (iii) the location of the fishing areas; and (iv) the market-driven characteristics of the hake subsector (hake is a popular fish species with Spanish consumers, who are willing to pay higher prices for hake than for other fish species).