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Gasification Characteristics of Hydrothermal Carbonized Biomass in an Updraft Pilot-Scale Gasifier

机译:上升式先导尺度气化器中水热碳化生物质的气化特性

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Biocoal pellets were gasified in an updraft high-temperature agent gasification (HTAG) unit with preheated air at 900 °C to study the performance of the air gasification of hydrothermal carbonized biomass. In comparison to raw biomass, hydrothermal carbonization increased the carbon content from 46 to 66% and decreased the oxygen content from 38 to 16%. As a result, the heating value of biomass on a dry basis was increased from 19 to 29 MJ/lcg after hydrothermal carbonization. Thermogravimetric analysis (TGA) of biocoal featured early decomposition of hemicellulose and a shoulder attached to the cellulose peak corresponding to lignin decomposition. Char gasification demonstrated a peak near conversion of 0.2. Syngas with 7.9 MJ Nm~(-3) lower heating value (LHV) was obtained from gasification experiments performed in the pilot-scale gasifier. The maximum cold gas efficiency was 80% at the lowest equivalence ratio (ER) and also resulted in high-purity syngas. The LHV and cold gas efficiency were higher than diat of the previously studied unpretreated biomass pellets. The fuel conversion positively correlated with the fuel residence time in the bed, and almost 99% conversion could be achieved for a residence time of 2 h. The superficial velocity (or hearth load) and specific gasification rate were higher than the reported values of updraft gasifiers because of the high-temperature operation and specific fuel used.
机译:生物粒子在高温剂气体化(HTAG)单元中气化,在900℃下预热空气,研究了水热碳化生物质的空气气化的性能。与原料生物质相比,水热碳化从46%增加到66%,并降低了38%至16%的氧含量。结果,在水热碳化后,生物质的加热值从19至29 mJ / LCG增加。生物橡胶的热重分析(TGA)精选半纤维素的早期分解和附着在对应于木质素分解的纤维素峰的肩部。 Char Garifications证明了0.2的转化率附近的峰值。具有7.9 MJ〜(-3)的合成气从试点级气化器中进行的气化实验中获得较低的加热值(LHV)。最大冷气效率为80%,在最低的等效比(ER)中,也导致高纯度合成气。 LHV和冷气体效率高于先前研究过的未普通的生物质颗粒的DIAT。燃料转换与床中的燃料停留时间正相关,并且可以在2小时的停留时间达到几乎99%的转化率。由于高温操作和所用特定燃料,表面速度(或炉膛负荷)和特定的气化率高于预上的上升气体气体值。

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