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Analysis of hydrochar fuel characterization and combustion behavior derived from aquatic biomass via hydrothermal carbonization process

机译:水热碳化过程水生生物量衍生的烃燃料表征及燃烧行为分析

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Using aquatic biomass as a solid fuel is limited by its low energy density, low lignin content and high moisture content. This study investigated upgrading aquatic biomass as a solid fuel using hydrothermal carbonization with temperatures in the moderate temperatures range for a reaction time of 30 min. Thermogravimetric analysis (TGA) tests were used to study the combustion behavior of the raw aquatic biomass and its derived hydrochar during the combustion process. Chemical composition analysis indicated that compared to the raw aquatic biomass, the fuel quality of the derived hydrochar had been improved by increasing the carbon contents with a substantial decrease in the volatile matter and ash content. Furthermore, higher fuel quality of the derived hydrochar was observed with increasing hydrothermal temperature. Similarly, based on the TGA test, the hydrochars had increased ignition temperatures, higher combustion temperatures and higher burnout temperatures compared to the raw aquatic biomass. The combustion characteristic index values for all hydrochar samples derived from water hyacinth and cattail leaves were appropriate for combustion.
机译:使用水生生物量作为固体燃料受其低能量密度,低木质素含量和高水分含量的限制。本研究研究了使用水热碳化在中等温度范围内的温度碳化为固体燃料的升级水生料,其反应时间为30分钟。热重分析(TGA)试验用于研究燃烧过程中生物生物量及其衍生的水炭的燃烧行为。化学成分分析表明,与原始水生生物量相比,通过增加挥发性物质和灰分含量的显着降低,通过增加碳含量来改善衍生的水炭的燃料质量。此外,随着水热温度的增加,观察到衍生的水炭的较高燃料质量。类似地,基于TGA测试,与原始水生生物量相比,氢港的点火温度提高,燃烧温度更高,燃烧温度较高。衍生自水葫芦和香蒲叶片的所有氨基样品的燃烧特性指数值适合燃烧。

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