首页> 外文期刊>Chemical Engineering and Processing >Experimental analysis of continuous steam gasification of wood biomass for syngas production in a high-temperature particle-fed solar reactor
【24h】

Experimental analysis of continuous steam gasification of wood biomass for syngas production in a high-temperature particle-fed solar reactor

机译:高温粒子美食太阳能反应堆中木材生物质连续蒸汽气化的实验分析

获取原文
获取原文并翻译 | 示例
           

摘要

Solar steam gasification of beech wood biomass has been performed in a novel high-temperature continuously fed solar reactor for the thermochemical conversion of low-grade carbonaceous feedstock into transportable and storable gaseous fuels (syngas). The 1.5 kW(th) cavity-type solar reactor was operated in the temperature range of 1100-1300 degrees C. Large wood biomass particles (3-5 mm size) were continuously fed and gasified with the oxidizing agent to produce syngas, thus demonstrating the reactor suitability for large particle size processing. Operating parameters were varied in order to optimize the syngas production. The effect of steam flow-rate, carrier gas flow-rate, temperature, and biomass feeding rate on the syngas yield and reactor performances was experimentally investigated. The increase of steam flow-rate favored H-2, CO2 and CH4 and reduced CO production. A noteworthy increase of the syngas yield with the temperature was highlighted, while the increase of carrier gas flow-rate was detrimental to the amount of syngas produced because of lowered gas residence time. The increase of biomass feeding rate (in the range of 0.8-1.8 g/min) showed noteworthy impact on the syngas composition without affecting the reactor performance, yielding high-quality syngas with a carbon conversion rate above 80%, while the total syngas yield was stable at about 70 mmol/g(biomass).
机译:山毛榉木生物量的太阳能蒸汽气化已经在新型高温连续供给太阳能反应器中进行,用于低级碳质原料的热化学转化为可运输和可储存的气体燃料(合成气)。 1.5千瓦(Th)腔式太阳能反应器在1100-1300摄氏度的温度范围内操作。大型木材生物质颗粒(尺寸为3-5mm尺寸),连续喂食并与氧化剂气化以产生合成气,从而展示对大粒径加工的反应器适用性。改变操作参数以优化合成气生产。实验研究了蒸汽流速,载气流速,温度和生物质进料率对合成气产量和反应器性能的影响。蒸汽流速的增加赞成H-2,CO2和CH4和CO减少的CO生产。突出显示,由于气体停留时间降低,突出了载气流量的增加的合成气产量增加,而载气流速的增加对合成气的量有害。生物质喂养速率的增加(在0.8-1.8g / min的范围内)对合成气组合物的影响有所了解,而不影响反应器性能,产生高质量的合成气,碳转化率超过80%,而总合成气产量在约70mmol / g(生物质)上稳定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号