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Co-combustion behaviours of a low calorific Uruguayan Oil Shale with biomass wastes

机译:低热量乌拉圭油页岩与生物质废物的共燃行为

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摘要

In the present work thermal transport properties, thermochemical characteristics and gaseous pollutants released during co-combustion of different biomasses with oil shales (OS) were assessed using three different mass ratios (25%, 50% and 75% OS-biomass). The biomasses selected for carrying out the analysis were grape pomace (GP), rice husk (RH) and eucalyptus grandis (EG). In this sense, we demonstrated that the addition of biomass to the OS turns out having a positive effect, it improves the combustion index and diminishes the amount of pollutant emissions per energy unit released. Cone calorimeter tests were carried out in order to determine the effective heat of combustion (EHC) and subsequently the energetic combustion efficiency (EHC/HHV) taking as reference the higher heating value (HHV). The higher thermal diffusivity value was obtained for EG (0.161 mm(2)/s) and the lowest value was obtained for GP (0.105 mm(2)/s). The EHC/HHV ratio was obtained for a blending proportion of 50% for OS-EG (0.88-0.98). According to combustion index results, blends containing c.a 50% OS-EG reached a good burning performance of the combustion process, providing a potential OS-biomass ratio for being used as fuel. Moreover, the co-combustion emissions per energy unit released were analysed by means of TG-FTIR. CO2, CO and SO2 patterns showed that the emissions diminished with the addition of biomass to the OS. This paper aims to perform an assessment of the potential utilization of OS-biomass blends based on the biomass and OS composition, their thermal properties, gas emissions per energy unit released and EHC/HHV ratio.
机译:在本工作中,使用三种不同的质量比(25%,50%和75%OS生物质)评估了不同生物量与油页岩(OS)共燃烧过程中释放的热化学性质和热化学特性以及气态污染物。选择进行分析的生物量为葡萄果渣(GP),稻壳(RH)和桉树(EG)。从这个意义上讲,我们证明了向OS添加生物质具有积极作用,它改善了燃烧指数并减少了每个能量单位释放的污染物排放量。进行锥形量热仪测试以确定有效燃烧热(EHC),然后确定能量燃烧效率(EHC / HHV),以较高的发热量(HHV)为参考。对于EG(0.161 mm(2)/ s),可以获得较高的热扩散率;对于GP(0.105 mm(2)/ s),可以获得较低的热扩散率。对于OS-EG(50-0.88-0.98),以50%的混合比例获得EHC / HHV比。根据燃烧指数结果,含有约50%OS-EG的混合物在燃烧过程中达到了良好的燃烧性能,为用作燃料提供了潜在的OS生物质比。此外,通过TG-FTIR分析了释放的每个能量单位的共燃排放。 CO2,CO和SO2模式表明,随着向OS添加生物质,排放量减少。本文旨在根据生物量和OS组成,其热性能,单位能量释放的气体排放量和EHC / HHV比,评估OS-生物质混合物的潜在利用。

著录项

  • 来源
    《Fuel》 |2020年第15期|117118.1-117118.12|共12页
  • 作者

  • 作者单位

    Univ Republica Fac Quim DETEMA Area Fisicoquim Gral Flores 2124 CC 1157 Montevideo 11800 Uruguay;

    Univ Queensland Sch Civil Engn Brisbane Qld 4072 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oil shales; Thermal analysis; Biomass wastes; Co-combustion;

    机译:油页岩;热分析;生物质废物;混燃;

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