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利用多年生牧草生产燃料乙醇前景 被引量:13

Prospect of producing bio-ethanol fuel from perennial forage
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摘要 多年生牧草具有可再生、产量高、分布广、价格低廉、纤维素含量高等特点,采用其生产燃料乙醇不仅可以解决现阶段能源生产与粮食安全之间的矛盾,还可带来控制土壤侵蚀、减少农药化肥的污染、降低CO2排放量等生态效益。相比于粮食作物,在生产工艺发展的基础上,使用多年生牧草将大幅降低燃料乙醇的生产成本,带来良好的经济效益。阐述了利用多年生牧草生产燃料乙醇的研究现状,并在此基础上分析其生态优势与经济价值,介绍了几种可作为燃料乙醇原料开发的多年生牧草,为利用多年生牧草发展能源草业提供了科学依据。 Perennial forage had many merits such as reproducible ability, high yield, wild distribution, low price, high cellulose content, etc. Therefore, using perennial forage as feedstock of producing ethanol could solve the contradiction between energy produetion and food seeurity, but also took ecological benefits such as controlling soil erosion, reducing pesticide and fertilizer pollution, reducing CO2 emission. Compared with grain crops, the use of perennial forage could decrease the ethanol production cost and brought good economic benefit with the development of teehnology. This paper discussed the status of producing bio-ethanol by perennial forage, and analyzed its ecological advantage and economic value. Also, some main perennial forage as feedstock of producing ethanol were introduced, and it provided a scientific basis for developing energy grassland industry with perennial forage.
出处 《草业科学》 CAS CSCD 北大核心 2009年第9期62-69,共8页 Pratacultural Science
基金 国家高技术(863计划)专题项目(2007AA10Z231)
关键词 多年生能源牧草 生物质能源 燃料乙醇 能源草业 perennial energy forage bio-energy bio-ethanol energy grassland industry
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参考文献39

  • 1曾祥艳.生物新燃料—芒草的开发利用[J].广西热带农业,2007(5):37-38. 被引量:19
  • 2Paine L K, Peterson T L, Undersander D J, et al. Some ecological and socio-economic considerations for biomass energy crop production[J]. Biomass and Bioenergy, 1996,10(4) :231-242.
  • 3Semere T,Slater F M. Ground flora, small mammal and bird species diversity in miscanthus(Miscanthus × giganteus) and reed canary-grass (Phalaris arundinacea) fields [J]. Biomass and Bioenergy,2007,31:20-29.
  • 4Spatari S, Hang Y, Maclean H L. Life Cycle Assessment of Switchgrass-and Corn Stover-Derived Ethanol-Fueled Automobiles [J].Environmental Seience and Technology, 2005,39 : 9750-9758.
  • 5Gebhart D L,Johnson H B, Hayeux H S,et al. The CRP increases soil organic carbon[J]. Journal of Soil and Water Conservation, 1994,49:488-492.
  • 6Mclaughlin S B,Walsh M E. Evaluating environmental consequences of producing herbaceous crops forbioenergy[J]. Biomass and Bioenergy, 1998,14 (4) : 317-324.
  • 7马欢,刘伟伟,张无敌,刘士清.燃料乙醇的研究进展及存在问题[J].能源工程,2006,26(2):29-33. 被引量:12
  • 8Styles D,Thorne F,Jones M B. Energy crops in Ireland: An economic comparison of willow and Miscanthus production with conventional farming systems[J ]. Biomass and Bioenergy, 2008, 32 : 407- 421.
  • 9Guo G L,Chen W H,Chen W H, et al. Characterization of dilute acid pretreatment of silvergrass for ethanol production [J ]. Bioresource Technology, 2008,10:1-8.
  • 10Boe A.Casler M D. Hierarchical analysis of switchgrass morphology[J]. Crop Science, 2005,45 : 2467- 2472.

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