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首页> 外文期刊>Energy Conversion & Management >Impact on performance and emissions of the aspiration of algal biomass suspensions in the intake air of a direct injection diesel engine
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Impact on performance and emissions of the aspiration of algal biomass suspensions in the intake air of a direct injection diesel engine

机译:对直喷式柴油发动机进气中藻类生物质悬浮液中抽吸性能和排放的影响

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摘要

Recently, the production of sustainable biofuels from algal biomass has gained significant attention and been investigated as a potential replacement of fossil fuel. However, existing downstream processes for producing biodiesel from algae cells are complex, highly energy-intensive, and have high economic and environmental cost. Therefore, this work introduces an alternative and novel method of utilizing the energy content of microalgae that precludes lipid extraction by aspirating wet algal biomass suspensions directly into the intake air of an internal combustion engine.For all engine experiments, powdered algae cells were prepared as slurries at different biomass concentrations. The impacts of (i) varying the biomass concentration with constant suspension injection flowrate into the engine intake and (ii) varying suspension injection flowrate with constant biomass concentration were investigated.A correlation between engine work produced during combustion and algal biomass aspiration was found. At constant flowrate and greater than 5% biomass concentrations, an increase of energy release during combustion from the aspirated algae could be observed. However, the aspiration of low concentration biomass suspension produced a negative impact on engine performance relative to water-only aspiration. The engine exhaust gas of nitrogen oxides (NOx) was reduced for all algae suspension tests relative to diesel-only combustion. However, the carbon monoxide (CO) emission level was much higher relative to diesel-only tests at high biomass concentrations and injection flowrate.These findings demonstrate the possibility of utilising the energy content of algal biomass in combustion without lipid extraction, with added benefits of reducing NOx emissions.
机译:最近,来自藻类生物量的可持续生物燃料的生产已显着关注,并被调查为化石燃料的潜在替代。然而,从藻类细胞生产生物柴油的现有下游方法是复杂的,高度能量密集的,具有很高的经济和环境成本。因此,该作品介绍了利用微藻的能量含量的替代和新方法,其通过将湿藻生物质悬浮液直接吸入内燃机的进气中来渗出脂质萃取。所有发动机实验,粉状藻类细胞被制备为浆料以不同的生物质浓度。 (i)将生物质浓度与恒定悬浮液进入的影响变化到发动机摄入量和(ii)不同的悬浮液中具有恒定生物量浓度的变化。发现在燃烧和藻类生物测量期间产生的发动机工作之间的相关性。在恒定流动率和大于5%的生物质浓度下,可以观察到从吸出藻类期间的燃烧期间能量释放的增加。然而,低浓度生物质悬浮液的吸入产生了相对于仅水的吸入的发动机性能的负面影响。除柴油燃烧中,所有藻类悬浮试验都降低了氮氧化物(NOx)的发动机废气。然而,相对于高生物量浓度和注射流量的仅柴油试验,一氧化碳(CO)排放水平要高得多。这些结果证明了利用燃烧中的藻类生物量的能量含量而没有脂质提取的可能性,增加了益处减少NOX排放。

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