Unraveling the environmental impacts of bioactive compounds and organic amendment from grape marc

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In a society that produces large amounts of solid waste, the search for new methods of valorisation has led to the development of techniques that make it possible to obtain new products from waste. In the case of bio-waste, biological treatment such as anaerobic digestion or composting appear to be suitable options for producing bio-energy or bio-fertilizers respectively. Vermicomposting is a method of converting solid organic waste into resources through bio-oxidation and stabilization of the organic waste by earthworms. The purpose of this study is to establish the environmental impacts of a complete route for the valorisation of grape pomace in order to identify environmental hotspots. In this valorisation route, different value-added products are produced with potential application in the cosmetic, food and pharmaceutical sectors. Priority was given to the use of primary data in the elaboration of the data inventories needed to perform the life cycle assessment (LCA). The main findings from this study reported that the energy requirement of the distillation process is an important hot spot of the process. Although the valorisation route has some poor results in terms of the two environmental indicators (carbon footprint and normalised impact index), when economic revenues were included in this analysis, its environmental performance was better than that of other alternatives for bio-waste recovery

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Journal of Environmental Management. Volume 272, 15 October 2020, 111066. https://doi.org/10.1016/j.jenvman.2020.111066

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This research was supported by the European Project STAR-ProBio (Grant Agreement Number 727740) and the Spanish Ministry of Economy and Competitiveness (CTM2013-42540-R and AGL2017-86813-R). The authors belong to the Galician Competitive Research Group GRC ED431C 2017/29; GPC ED431B 2017/04 and ED431B 2019/38 and to the CRETUS Strategic Partnership (ED431E 2018/01). All these programmes are co-funded by FEDER (EU)

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© 2020 Elsevier Ltd. This manuscript version is made available under the CC-BY-NC-ND 4.0 license (http://creativecommons.org/licenses/by-nc-nd/4.0/)
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