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Data supporting consolidating emission indices of a diesel engine powered by carbon nanoparticle-doped diesel/biodiesel emulsion fuels using life cycle assessment framework

机译:数据支持使用生命周期评估框架的由掺有碳纳米颗粒的柴油/生物柴油乳化燃料驱动的柴油发动机的综合排放指标

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摘要

Integrated environmental analysis using life cycle assessment for different fuel blends used in a single-cylinder diesel engine was performed to select the most eco-friendly fuel blend. More specifically, the inventory data in support of the integrated environmental analysis of water-emulsified 5% biodiesel/diesel blends (B5) containing different levels of carbon nanoparticles ( , 38, 75, and 150 µM) as a novel fuel nanoadditives at a fixed engine speed of 1000 rpm and four different engine loads ( ., 25, 50, 75, and 100%) are presented. Neat diesel, B5, and B5 containing water (3 wt.%) were used as controls. Raw data related to the production and combustion of fuel blends were experimentally collected. Industrial ( , experiments at large scale) and laboratory ( experiments at small scale) data were used for fuel blends production while experimental data obtained by engine tests were used for the combustion stage. Then raw data were processed with the IMPACT 2002+ methods by using the SimaPro software and EcoInvent database and were then converted into environmental impacts. Accordingly, six supplementary files including the inventory data on integrated environmental analysis of the different fuel blends are presented (Supplementary Files 1–6). The data could be applied for integrated environmental analysis in order to avoid subjective weighting of combustion parameters for selecting the most eco-friendly fuel blend for use in diesel engines. More specifically, by developing a single score indicator obtained through conducting integrated combustion analysis, comparison of various fuel blends is largely facilitated.
机译:针对单缸柴油发动机中使用的不同混合燃料,使用生命周期评估进行了综合环境分析,以选择最环保的混合燃料。更具体地说,库存数据支持固定浓度的水乳化5%生物柴油/柴油共混物(B5)的综合环境分析,其中固定水平包含不同水平的碳纳米颗粒(,38、75和150μm)作为一种新型燃料纳米添加剂。给出了1000 rpm的发动机转速和四种不同的发动机负荷(。,25、50、75和100%)。用水(3%(重量))的纯柴油,B5和B5作为对照。实验收集了与燃料混合物的生产和燃烧有关的原始数据。工业(大型实验)和实验室(小型实验)数据用于混合燃料的生产,而通过发动机测试获得的实验数据用于燃烧阶段。然后,使用SimaPro软件和EcoInvent数据库使用IMPACT 2002+方法处理原始数据,然后将其转换为环境影响。因此,提供了六个补充文件,包括有关不同燃料混合物的综合环境分析的清单数据(补充文件1-6)。该数据可用于综合环境分析,以避免主观地加权燃烧参数,从而选择最环保的柴油混合燃料。更具体地,通过开发通过进行综合燃烧分析而获得的单个得分指标,大大促进了各种燃料混合物的比较。

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