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Titlebook: Life Cycle Impact Assessment; Michael Z. Hauschild,Mark A.J. Huijbregts Book 2015 Springer Science+Business Media Dordrecht 2015 LCIA char

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Alexis Laurent,Michael Z. Hauschildof job requests are differentiated by the restrictions they impose on the scheduler and by the form of co-allocation used. The results show that the performance improves with decreasing average job size and when fewer restrictions are imposed on the scheduler.
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Climate Change,odologies also propose endpoint characterisation factors. However, these factors are considered highly uncertain because of the complexity of the impact pathway so that further research is still needed to improve robustness of the models. Recent new developments are addressing the accounting of biog
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Stratospheric Ozone Depletion,g anthropogenic emissions of N.O (nitrous oxide) might pose a threat to ozone layer recovery, the mitigating effects of CH. (methane) and CO. (carbon dioxide) emissions will more than compensate for this. Global stratospheric ozone is expected to exceed pre-industrial levels sometime this century, a
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Human Toxicity, on characterisation factors means that results should by default be reported and interpreted in log scales when comparing scenarios or substance contribution! We conclude by outlining future trends in human toxicity modelling for LCIA, with promising developments for (a) better estimates of degrada
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Photochemical Ozone Formation,oth for impacts on human health and on other living beings and even on materials. Hence, the modelled impacts due to ozone caused by anthropogenic emissions are subject to large variability and uncertainty.
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Acidification,t method are available, with substantial options for improvement. To address ocean acidification in LCIA in the future, a carbon cycle model needs to be used to make the link to ocean acidification and stressor-response curves that assess impacts on marine biodiversity.
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