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ving a consistent carbon accounting framework for calculating the carbon footprints of CCU products is therefore not an insoluble problem. Nevertheless, tackling this particular task raises a series of specific challen- ges concerning the best approach to take and for which the standard publi- cations in the field offer little in the way of guidance. Although there is on- going research in the field aimed at filling the existing gaps, and although the scientific and professional literature contains recommendations on diverse aspects of the problem, the issues involved are relatively new and the tech- nological processes and techniques that need to be assessed are very varied and are also undergoing very dynamic development at present. This report aims to • provide a broad overview of the carbon accounting rules at all levels • highlight the core aspects that make carbon accounting procedures for CCU products so complex • provide readers with the guidance necessary to enable them to deal with the main compartments along the entire CCU product life cycle. This report has been compiled principally as a contribution to the current specialist discussions on what looks to be an increasingly significant area of technology. Nevertheless, this report cannot include and address all of the many questions arising in relation to this important topic. Finally, we wish to underscore the fact that carbon footprints provide a me- ans of assessing the impact of CCU systems on only one specific environ- mental aspect, albeit a very significant one. It is frequently the case that the use of fossil resources or the emissions generated from fuel combustion (acidification, eutrophication, summer smog, respirable dust, etc.) result in negative assessments in other environmental impact categories. There are, however, environmental impact categories that do not behave analogously to the GHG emissions inventory. When biomass is used as a replacement for fossil-based energy sources, for example, the associated climate benefits can, in certain circumstances, be obtained to the detriment of biodiversity. It is particularly important when analysing processes that are expected to have a favourable carbon footprint but are technically complex to implement that special care is taken to examine environmental impacts beyond just green- house gas emissions. METHODOLOGICAL GUIDANCE 323PDF Image | Chemical Processes and Use of CO2
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