期刊文献+

生物质炭水蒸气气化制取富氢合成气 被引量:10

Steam gasification of bio-char for hydrogen-rich syngas
下载PDF
导出
摘要 以生物质炭为原料在上吸式固定床气化炉中进行水蒸气气化制备富氢合成气,考察了不同原料、粒径和催化剂对生物质炭水蒸气气化影响。结果表明,不同类型炭气化结果存在较大差异,其中木片炭气化结果最优,其次是玉米芯炭和稻壳炭,秸秆炭气化结果最差,木片炭产氢率最大为222.8g/kg。粒径的改变主要影响炭转化率,炭转化率随着粒径的增加呈增加趋势。通过炭吸收方式负载催化剂为有效的方法,其中在相同钾盐质量分数下,KOH催化能力较优于K_2CO_3,且气化速率为未加催化剂条件下的两倍。炭转化率随着碱液浓度的增加而增加,但浓度过高会增加灰分含量从而不利于产氢率,玉米芯炭催化气化最高产氢率为197.8g/kg,在碱质量分数为6%下获得。 Steam gasification of bio-char had been studied in an updraft fixed bed reactor for hydrogen-rich syngas.The effect of different feedstocks,particle sizes and catalysts on steam gasification was investigated.The results showed that there were big diversity between different char gasifications.The results of wood chip char gasification were the best,followed by the corn cob char and rice husk char;and the worst results were strew char gasification.The maximum hydrogen yield of wood chip char was 222.8g/kg char.Particle sizes mainly affected the char conversion rate,which increased with the increase of particle size.The method of char adsorbing catalysts was efficient,and the catalytic ability of KOH was better than K2CO3 at the same potassium salts mass fraction.The gasification rate with catalyst were twice of that without catalyst.Moreover,the char conversion rate increased with the rising of alkali concentrations,but higher concentration was not favoable for the hydrogen yield due to the increase of ash content.The maximum hydrogen yield of corn cob char gasification was 197.8g/kg char with alkali concentration of 6%.
作者 贾爽 应浩 徐卫 孙云娟 尹航 宁思云 孙宁 JIA Shuang;YING Hao;XU Wei;SUN Yunjuan;YIN Hang;NING Siyun;SUN Ning(Institute of Chemical Industry of Forest Products,CAF,Jiangsu Province,Nanjing 210042,Jiangsu,China;National Engineering Lab.for Biomass Chemical Utilization,Jiangsu Province,Nanjing 210042,Jiangsu,China;Key and Open Lab.of Forest Chemical Engineering,SFA,Jiangsu Province,Nanjing 210042,Jiangsu,China;Key Lab of Biomass Energy and Material,Jiangsu Province,Nanjing 210042,Jiangsu,China)
出处 《化工进展》 EI CAS CSCD 北大核心 2018年第4期1402-1407,共6页 Chemical Industry and Engineering Progress
基金 国家科技支撑计划(2015BAD21B05) 林业科学技术推广项目([2016]15) 江苏省生物质能源与材料重点实验室开放基金(JSBM201801)项目 中央级公益性科研院所基本科研业务费专项(CAFINT2014K04) 江苏省生物质与材料重点实验室开放基金(JSBEM201801)项目
关键词 生物质炭 气化 富氢合成气 催化剂 bio-char gasification hydrogen-rich syngas catalyst
  • 相关文献

参考文献1

二级参考文献44

  • 1朱瑞春,公维恒,范少锋.煤制天然气工艺技术研究[J].煤质技术,2011,(6):81-85.
  • 2Michiel C Carbo,Ruben Smit,Bram van der Drift,et al.Bio energy with CCS (BECCS):Large potential for BioSNG at low CO2 avoidance cost[J].Energy Procedia,2011,4:2950-2954.
  • 3Vogel A,J(o)nsson O.The role of Bio-SNG in the EuroPean gas industry,Bio-SNG'09-Synthetic Natural Gas from Biomass[C]//Intemational Conference on Advanced Biomass-to-SNG Technologies and their Market Implementation.Zürich,Switzerland.2009.
  • 4Ahrenfeldt J,Jorgensen B,Thomsen T.Bio-SNG potential assessment:Denmark 2020[C].Denmark,2010.
  • 5Steubing B,Zah R,Waeger P,et al.Bioenergy in Switzerland;Assessing the domestic sustainable biomass potential[J].Renewable and Sustainable Energy Reviews,2010,14 (8):2256-2265.
  • 6Jasper Ahrenfeldt,Tobias P Thomsen,Ulrik Henriksen,et al.Biomass gasification cogeneration-A review of state of the art technology and near future perspectives[J].Applied Thermal Engineering,2013,50(2):1407-1417.
  • 7Andreas K(o)nig.Cost efficient utilisafion of biomass in the German energy system in the context of energy and environmental policies[J].Energy Policy,2011,39 (2):628-636.
  • 8Hans Hellsmark,Staffan Jacobsson.Realising the potential of gasified biomass in the European Union-Policy challenges in moving from demonstration plants to a larger scale diffusion[J].Energy Policy,2012,41:507-518.
  • 9Seiffert M,Kaltschmitt M,Miranda J A.The biomethane potential in Chile[J].Biomass andBioenergy,2009,33 (4): 564-572.
  • 10Marcin Siedlecki,Wiebren de Jong,Adrian H M Verkooijen.Fluidized bed gasification as a mature and reliable technology for the production of bio-syngas and applied in the production of liquid transportation fuels-A review[J].Energies,2011,4,389-434.

共引文献22

同被引文献111

引证文献10

二级引证文献85

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部