首页> 外文期刊>Fuel Processing Technology >TGA-FTIR investigation of co-combustion characteristics of blends of hydro thermally carbonized oil palm biomass (EFB) and coal
【24h】

TGA-FTIR investigation of co-combustion characteristics of blends of hydro thermally carbonized oil palm biomass (EFB) and coal

机译:TGA-FTIR研究水热碳化油棕生物质(EFB)与煤的混合燃烧特性

获取原文
获取原文并翻译 | 示例
           

摘要

Hydrothermally upgraded chars with improved density and friable characteristics were produced from oil-palm empty fruit bunch (EFB) at three temperatures (150,250, and 350 °C-denoted as H-l 50, H-250 and H-350). These chars were co-combusted with low rank Indonesian coal and with hydrothermally upgraded coal (HT-coal). The composition of major gaseous pollutants released from the co-combustion process with specific reference to CO, CO2, CH4, NO, and SO2 was studied in real-time using a thermogravimetric analyzer coupled with a Fourier transform infrared spectrometry. Combustion characteristic factor (CCF) was determined for a systematic analysis of the thermal decomposition process. In the co-combustion of hydrothermally treated biomass with coal and HT-coal, H-250 (50%)/HT-coal (50%) (CCF = 4.1 x 10~(-7)) fuel blend showed the highest CCF values i.e. the most efficient co-combustion process. Further analysis of the emission profiles of gaseous pollutants revealed that the co-combustion of 50% H-350 with 50% HT-coal by mass produced the lowest levels of gaseous pollutant emissions. Overall, a systematic combustion carried out in this study showed that co-combustion of hydrothermally upgraded EFB biochar with coal and HT-coal leads to environmental benefits, specifically reduced emissions of toxic (CO), acidic (NO and SO2) and greenhouse (CH4 and CO2) gases.
机译:在三个温度(150,250和350°C,分别表示为H-1 50,H-250和H-350)下,由油棕空果束(EFB)制成具有改进的密度和脆性特性的热解炭。这些焦炭与低品位的印尼煤和热液强化煤(HT煤)一起燃烧。使用热重分析仪结合傅立叶变换红外光谱法,实时研究了共燃烧过程中释放出的主要气体污染物的组成,具体参考了CO,CO2,CH4,NO和SO2。确定燃烧特征因子(CCF)以便对热分解过程进行系统分析。在经过水热处理的生物质与煤和HT煤的共燃烧中,H-250(50%)/ HT煤(50%)(CCF = 4.1 x 10〜(-7))的燃料混合物显示最高的CCF值即最有效的共燃过程。对气态污染物排放特征的进一步分析表明,按质量计,50%H-350与50%HT煤的共燃烧产生了最低水平的气态污染物排放。总体而言,在这项研究中进行的系统燃烧表明,将水热升级的EFB生物炭与煤和HT煤共同燃烧可带来环境效益,特别是减少了有毒(CO),酸性(NO和SO2)和温室气体(CH4)的排放。和CO2)气体。

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