首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Effect of sweeping gas flow rates on temperature-controlled multistage condensation of pyrolysis vapors in an auger intermediate pyrolysis system
【24h】

Effect of sweeping gas flow rates on temperature-controlled multistage condensation of pyrolysis vapors in an auger intermediate pyrolysis system

机译:扫气流量对螺旋中间热解系统中热解蒸气的温度控制多级冷凝的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The vapors produced from pine wood using an intermediate auger pyrolysis process under various sweeping gas flow rates were condensed by three temperature-controlled condensers and analyzed. Increasing sweeping gas flow rate from 20 to 40 L/min did not change the yield of the pyrolysis products, however, noticeable changes were found in the bio-oil composition, such as a decrease in water content and an increase of amount of organic compounds. Increasing sweeping gas flow rate influenced the bio-oil fractionation in each temperature-controlled condenser with a reduction in bio-oil yield in the first condenser controlled between 85 and 90 degrees C and outgoing vapor temperature of 121 degrees C. There were no changes in the second condenser maintained at 45-50 degrees C and outgoing vapor temperature of 107 degrees C, and an increase in the third condenser regulated at 10-15 degrees C and outgoing vapor temperature of 25 degrees C. Higher sweeping gas flow rates also resulted in changing the bio-oil composition in the first and second condensers including a reduction in water content and an increase in viscosity and density, suggesting that refining this fraction as an intermediate source would be a more efficiency way to produce fuels and chemicals than treating the whole bio-oil. The bio-oil from the third condenser contained elevated water content, acidity and light oxygenated compounds with increasing sweeping gas flow rate, suggesting that this fraction would be more suitable as an energy source for hydrogen production via microbial electrolysis processes. In summary, the sweeping gas flow rate used for pyrolysis with an intermediate auger reactor is an important factor to change bio-oil properties in temperature-controlled multistage condensation processes. (C) 2016 Elsevier B.V. All rights reserved.
机译:在三个吹扫气流量下,采用中间螺旋钻热解工艺从松木中产生的蒸气通过三个温度控制的冷凝器进行冷凝并进行分析。将吹扫气流量从20 L / min增加到40 L / min不会改变热解产物的产率,但是,发现生物油成分发生了显着变化,例如含水量减少和有机化合物含量增加。吹扫气体流量的增加影响了每个温度控制的冷凝器中的生物油分馏,第一冷凝器中的生物油收率降低,温度控制在85到90摄氏度之间,出汽温度为121摄氏度。第二冷凝器保持在45-50摄氏度,流出蒸汽温度为107摄氏度,第三冷凝器的增加被调节为10-15摄氏度,流出蒸汽温度为25摄氏度。较高的吹扫气体流速也导致改变第一冷凝器和第二冷凝器中的生物油成分,包括减少水分含量以及增加粘度和密度,这表明,将这一馏分精炼为中间来源将是比处理全部燃料更高效的燃料和化学品生产方式生物油。来自第三冷凝器的生物油含有较高的水含量,酸度和轻度含氧化合物,且吹扫气流速增加,这表明该馏分将更适合用作通过微生物电解过程生产氢的能源。总而言之,用于中间螺旋钻反应器进行热解的吹扫气体流速是改变温度控制的多级冷凝过程中生物油性质的重要因素。 (C)2016 Elsevier B.V.保留所有权利。

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