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Performance of a Pilot-Scale Entrained-Flow Black Liquor Gasifier

机译:中试夹带式黑液气化炉的性能

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摘要

Pilot-scale entrained flow gasification experiments were carried out at the 3 MWth,, LTU Green Fuels black liquor gasification (BLG) plant, using similar to 140 tons of Kraft black liquor (BL) with a dry solids content of similar to 72.5%. Comprehensive mass and energy balances were performed to quantify process performance under varying pressure, load, and oxygen/fuel ratio. Carbon conversion efficiency of the BLG process was 98.3%-99.2% and did not vary systematically in response to process changes. The unconverted carbon is almost exclusively present as dissolved organic carbon in the green liquor (GL) stream. GL is an aqueous solution of sodium carbonate and sodium sulfide used to recover the inorganic pulping chemicals present in BL for reuse in the pulp mill. A small fraction of syngas CO is converted to formate ions dissolved in GL through reaction with hydroxide ions. Unconverted carbon present in GL solids is insignificant. Syngas produced is subsequently upgraded to methanol and dimethyl ether (DME) in an integrated fuel synthesis facility. Concentration of H-2 in syngas is not significantly affected by operating point changes in the domain investigated, while CO and CO2 concentrations are. Syngas hydrocarbon concentration values are typically in the single-digit parts per million (ppm) with the exception of C6H6, which was present at 16-127 ppm. CH4 is present at 0.5%-1.2%, with lower concentrations at higher temperatures, and shows good correlation with C6H6. A quantity of 24%-27% of BL sulfur ended up in the syngas as 1.5%-1.7% H2S and 64-72 ppm COS. Cold gas efficiencies (CGEs) on a lower heating value (LHV) basis, when including syngas CH4, were 52%-55% and decreased at higher temperature. CGEs on an LHV basis, when considering only H-2 and CO with a sulfur-free BL heating value relevant for catalytic syngas upgrading, were 58%-60% and showed the opposite temperature dependence. Good mass and energy balance closures show the figures presented to be reliable. The results obtained from this study demonstrate process stability at varying operating conditions and can be further used for techno-economic analysis and design purposes.
机译:在3 MWth的LTU绿色燃料黑液气化(BLG)厂进行了中试夹带流化气化实验,使用了约140吨的牛皮纸黑液(BL),干固含量相似于72.5%。进行了全面的质量和能量平衡,以量化在变化的压力,负载和氧气/燃料比下的过程性能。 BLG工艺的碳转化效率为98.3%-99.2%,并且不会因工艺变化而系统地变化。未转化的碳几乎完全以溶解的有机碳形式存在于绿液(GL)物流中。 GL是碳酸钠和硫化钠的水溶液,用于回收BL中存在的无机制浆化学品,以便在制浆厂中重复使用。一小部分合成气CO通过与氢氧根离子反应转化为溶于GL的甲酸根离子。 GL固体中存在的未转化碳微不足道。产生的合成气随后在综合燃料合成设施中升级为甲醇和二甲醚(DME)。合成气中H-2的浓度不受所研究域中工作点变化的显着影响,而CO和CO2浓度则受到影响。合成气碳氢化合物的浓度值通常为百万分之几(ppm),但C6H6除外,其浓度为16-127 ppm。 CH4的含量为0.5%-1.2%,在较高的温度下浓度较低,并且与C6H6具有良好的相关性。最终,合成气中有24%-27%的BL硫以1.5%-1.7%的H2S和64-72 ppm的COS的形式存在于合成气中,包括合成气CH4时,在较低热值(LHV)的基础上的冷气效率,为52%-55%,并在较高温度下降低。基于LHV的CGE当仅考虑H-2和CO的无硫BL热值与催化合成气提质相关时,为58%-60%,并表现出相反的温度依赖性。良好的质量和能量平衡关闭显示出的数据可靠。从这项研究中获得的结果证明了在各种运行条件下的工艺稳定性,并可进一步用于技术经济分析和设计目的。

著录项

  • 来源
    《Energy & fuels》 |2016年第4期|3175-3185|共11页
  • 作者单位

    Lulea Univ Technol, Div Energy Sci, SE-97187 Lulea, Sweden;

    Lulea Univ Technol, Div Energy Sci, SE-97187 Lulea, Sweden;

    Lulea Univ Technol, Div Energy Sci, SE-97187 Lulea, Sweden;

    Lulea Univ Technol, Div Energy Sci, SE-97187 Lulea, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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