首页> 外文期刊>American journal of applied sciences >Microwave-Assisted Co-Pyrolysis of Bamboo Biomass with Plastic Waste for Hydrogen-Rich Syngas Production | Science Publications
【24h】

Microwave-Assisted Co-Pyrolysis of Bamboo Biomass with Plastic Waste for Hydrogen-Rich Syngas Production | Science Publications

机译:微波辅助竹生物质与塑料废物共热解生产富氢合成气|科学出版物

获取原文
获取外文期刊封面目录资料

摘要

> >Concerns about diminishing fossil fuels and increasing greenhouse gas emissions are driving many countries to develop renewable energy sources. The knowledge of the dielectric property is essential to design and develop microwave technology for processing biomass materials. Bamboo biomass was subjected to microwave pyrolysis, to determine the influence of each process on the yield and composition of the derived gas, oil and char products. The influence of pyrolysis temperature and heating rate for the microwave pyrolysis was investigated. A microwave-enhanced co-pyrolysis of bamboo with plastic coupled with Ni/Al2O3 catalyst was studied to produce a high yield of hydrogen-rich syngas under mild operating conditions. Ni was applied as the catalyst loaded on Al2O3 supports. The co-pyrolysis with catalyst not only produced high hydrogen amounts but also improve the quality of the liquid bio-oil. The maximum H2 content reached 54 vol% for the bamboo using activated carbon as the microwave absorbing agent with ratio of bamboo wood: Plastic at 80:20. The Ni/Al2O3 catalyst dramatically improved the gas yield as well as the hydrogen concentration.
机译: > >对减少化石燃料和增加温室气体排放的担忧促使许多国家开发可再生能源。介电特性的知识对于设计和开发用于处理生物质材料的微波技术至关重要。将竹生物质进行微波热解,以确定每个过程对衍生的气体,油和炭产品的产率和组成的影响。研究了热解温度和加热速率对微波热解的影响。研究了竹与塑料的微波增强共热解及Ni / Al 2 O 3 催化剂在温和的操作条件下可高产富氢合成气。 Ni被用作负载在Al 2 O 3 载体上的催化剂。与催化剂的共热解不仅产生大量的氢,而且还改善了液体生物油的质量。使用活性炭作为微波吸收剂的竹子,其最大H 2 含量达到54vol%,竹木:塑料的比例为80:20。 Ni / Al 2 O 3 催化剂显着提高了气体收率和氢气浓度。

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