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首页> 外文期刊>Environmental and Climate Technologies >Energetic and Environmental Impacts Related to Transport and Assembling Processes in ABiogas Production Plant from Marine Macroalgae (FP7 Project BioWALK4Biofuels)
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Energetic and Environmental Impacts Related to Transport and Assembling Processes in ABiogas Production Plant from Marine Macroalgae (FP7 Project BioWALK4Biofuels)

机译:与海洋大型藻类生物气生产厂中运输和组装过程有关的能源和环境影响(FP7项目BioWALK4Biofuels)

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GHG emissions, eutrophication and energy dependence are problems that the EU has to face in the near future.The BioWALK4Biofuels project aims to find a common response to these challenges, taking advantage of spontaneous biological processes: the growth of algae and anaerobic digestion of biomass.This project is being built thanks to European funding under the 7th Framework Programme.To evaluate the results obtained, a first LCA study was carried out that, as regards the data on infrastructure and on the assembly of the plant, refers to data supplied by manufacturers, while the study of algal growth was made on the basis of a model of cultivation that takes account of the aspects that most affect this key process among all the ones that cooperate in the whole plant.The electricity and heat produced through a co-generator fueled by biogas produced from algal biomass, according to this study, are responsible for GHG emissions reduced by 52% compared to traditional technologies.The biogas produced during the 4 years of the project allows the substitution of 85 tonnes of oil equivalent (toe).
机译:温室气体排放,富营养化和能源依赖性是欧盟在不久的将来必须面对的问题。BioWALK4生物燃料项目旨在利用自发的生物过程,即藻类的生长和生物质的厌氧消化,寻求对这些挑战的共同应对措施。该项目是在第七框架计划的欧洲资助下建立的。为了评估获得的结果,进行了首次LCA研究,该研究涉及基础设施和工厂组装方面的数据,涉及制造商提供的数据。藻类生长的研究是基于一种栽培模型进行的,该模型考虑了在整个植物中进行合作的所有过程中最影响该关键过程的各个方面。根据这项研究,由藻类生物质产生的沼气为燃料,与传统技术相比,温室气体排放量减少了52%。在该项目的4年中生产的石油可替代85吨油当量(趾)。

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