...
首页> 外文期刊>International journal of hydrogen energy >Hydrogen gas yield and trace pollutant emission evaluation in automotive shredder residue (ASR) gasification using prepared oyster shell catalyst
【24h】

Hydrogen gas yield and trace pollutant emission evaluation in automotive shredder residue (ASR) gasification using prepared oyster shell catalyst

机译:使用制备的牡蛎壳催化剂的汽车粉碎机残留物(ASR)气化中的氢气产量和痕量污染物排放评估

获取原文
获取原文并翻译 | 示例

摘要

This work examines the hydrogen gas yield and trace pollutants partitioning in automobile shredder residue (ASR) catalytic gasification by fixed bed and fluidized bed gasifier with controlling at equilibrium ratio (ER) 0.2, temperature 900 degrees C, and 5%-15% prepared catalyst addition. Oyster shell (OS) is a valuable resource due to its higher calcium content that it could prepare as a catalyst for enhancing the hydrogen production in ASR gasification. In the case of the fixed bed gasifier experiments, the highest lower heating value (LHV) and syngas production were found at 900 degrees C and 10% OS catalyst addition. The maximum H-2 and CO composition were 6.57% and 5.97%, respectively. The LHV of syngas was approximately 4.43 MJ/Nm(3). The fluidized bed gasifier could provide a good ASR decomposition and heat transfer behavior. The syngas yield results indicated the maximum H-2 and CO composition were 12.12% and 10.59%, respectively. It was obviously showed that the syngas production and energy conversion efficiency were enhanced by applying fluidized bed gasifier. The maximum produced gas LHV was 10.77 MJ/Nm(3) as well as the cold gas efficiency (CGE) of produced gas was 71.62%. On the other hand, the volatile sulfur and chlorine speciation formed in ASR gasification were mainly partitioned in the solid and/or liquid phase. It implied that tested OS catalysts could inhibit the volatile sulfur and chlorine speciation emission in the produced gas as well as enhance the produced gas quality. In summary, this research could provide basic insight into enhanced syngas production and quality in ASR catalytic gasification using the prepared OS catalyst. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本作品通过固定床和流化床气化器检查了汽车粉碎机残留物(ASR)催化气化的氢气产量和痕量污染物分配,所述固定床和流化床气化器以平衡比(ER)0.2,温度900℃,5%-15%制备的催化剂添加。牡蛎壳(OS)是一种有价值的资源,其钙含量较高,可作为增强ASR气化中的氢生产的催化剂制备。在固定床气化器实验的情况下,在900℃和10%OS催化剂加入中发现了最高的较低的加热值(LHV)和合成气产量。最大H-2和Co组合物分别为6.57%和5.97%。合成气的LHV约为4.43 mJ / nm(3)。流化床气化器可以提供良好的ASR分解和传热行为。合成气产量结果表明,最大H-2和Co组合物分别为12.12%和10.59%。显然表明,通过施加流化床气化器,增强了合成气生产和能量转换效率。最大产生的气体LHV为10.77MJ / NM(3)以及产生气体的冷气效率(CGE)为71.62%。另一方面,在ASR气化中形成的挥发性硫和氯气格主要在固相和/或液相中分配。它暗示测试的OS催化剂可以抑制所生产的气体中的挥发性硫和氯气格发射以及增强产生的气体质量。总之,该研究可以使用制备的OS催化剂对ASR催化气化的增强合成气生产和质量提供基本的洞察。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。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