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Char-diesel slurry fuels for microgeneration: Emission characteristics and engine performance

机译:用于微生物的Char-Diesel Slurry Fuels:排放特性和发动机性能

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Diesel engine generators are one of the major methods for off-grid and on-demand electricity generation, particularly in the remote areas of some developing countries. However, access to fossil diesel is often limited by supply or price. In many regions, biomass is an abundant source of energy, but many types are not suitable for producing traditional liquid biofuels such as biodiesel. This paper explores the use of so called 'slurry fuels' produced by the blending of micron sized particles of carbonaceous material in diesel and assesses whether these 'slurry fuels' can be used in a standard diesel engine generator with minimal modification. Two types of micronized carbon chars were added to diesel, produced by either pyrolysis or hydro-thermal carbonization of biomass. The results indicated that at high engine power, the micronized carbon slurry fuels can be run at a similar efficiency as pure diesel. The major issues identified included high engine wear and the blockage of the fuel injector. Hydrothermal carbonization was found to be the best thermal conversion route for producing micronized carbon in terms of emissions when blended with diesel.
机译:柴油发动机发电机是离产电网和按需发电的主要方法之一,特别是在一些发展中国家的偏远地区。但是,进入化石柴油通常受供应或价格的限制。在许多地区,生物质是一种丰富的能量来源,但许多类型不适用于生产传统的液体生物燃料,例如生物柴油。本文探讨了所谓的“浆料燃料”所产生的柴油碳质颗粒的混合,并评估这些'浆料燃料'是否可以在标准柴油发动机发生器中使用,具有最小的修改。将两种类型的微化碳素加入柴油中,由生物质的热解或水热碳化产生。结果表明,在高发动机功率下,微粉化碳浆料燃料可以以纯柴油的效率类似的效率运行。所识别的主要问题包括高发动机磨损和燃料喷射器的堵塞。发现水热碳化是在与柴油混合时产生微粉化碳的最佳热转化途径。

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