ENVIRONMENTAL IMPACT ASSESSMENT OF GASIFICATION SYNTHESIS OF DIFFERENT BIOMASS FOR PRODUCTION OF JET FUEL

被引:0
|
作者
Pan X. [1 ,2 ]
Zhong Z. [1 ,2 ]
Wang W. [1 ,2 ]
Zheng X. [1 ,2 ]
Shen Z. [1 ,2 ]
Deng Y. [1 ,2 ]
机构
[1] Key Laboratory of Energy Thermal Conversion and Process Measurement and Control, Ministry of Education, Southeast University, Nanjing
[2] School of Energy and Environment, Southeast University, Nanjing
来源
关键词
biomassenergy; environmental impact; gasification synthesis; inventory analysis; jet coal; life cycle;
D O I
10.19912/j.0254-0096.tynxb.2021-1601
中图分类号
学科分类号
摘要
The life cycle assessment method was used to evaluate the environmental impact of the gasification synthesis for the production of jet fuel from three types of biomass:maize stover,rice husk and poplar wood. Six types of environmental impacts,including global warming,acidification,eutrophication,photochemical ozone formation,human toxicity and solid waste,were selected to calculate the potential environmental impact of the three processes over their entire life cycles. The calculation results show that highest CO2 emissions in the production phase throughout the life cycle,with emission accounting for 69.13%- 74.36% ;minimal environmental impact during the transport phase,with each environmental impact potential accounting for less than 7%;maize stover is with the lowest environmental impact among the three biomass,and reducing the power consumption of the Fischer-Tropsch reactor can reduce the environmental impact of the maize stover process. © 2023 Science Press. All rights reserved.
引用
收藏
页码:10 / 16
页数:6
相关论文
共 14 条
  • [1] DE JONG S, Et al., Life-cycle analysis of greenhouse gas emissions from renewable jet fuel production[J], Biotechnology for biofuels, 10, 1, pp. 64-75, (2017)
  • [2] TAO W,, XIAO J,, YANG K., Life cycle assessment of jet fuel from biomass gasification and Fischer- Tropsch synthesis[J], China environmental science, 38, 1, pp. 383-391, (2018)
  • [3] FORTIER M O P,, ROBERTS G W,, STAGG-WILLIAMS S M,, Et al., Life cycle assessment of bio- jet fuel from hydrothermal liquefaction of microalgae[J], Applied energy, 122, 5, pp. 73-82, (2014)
  • [4] YANG K,, TAO W,, XIAO J., Exergetic life cycle assessment of jet fuel from biomass gasification and Fischer- Tropsch synthesis[J], Power equipment, 32, 4, pp. 246-252, (2018)
  • [5] Recent developments in life cycle assessment[J], Journal of environmental management, 91, 1, pp. 1-21, (2009)
  • [6] KIM J K, PARK J Y, YIM E S,, Et al., Bio- jet fuel production technologies for GHG reduction in aviation sector[J], Transactions of the Korean Hydrogen and New Energy Society, 26, 6, pp. 609-628, (2015)
  • [7] FAN J Q, KALNES T N,, Et al., A life cycle assessment of pennycress(Thlaspi arvense L.)derived jet fuel and diesel[J], Biomass & bioenergy, 55, pp. 87-100, (2013)
  • [8] National compilation of cost and benefit information on agricultural products-2021[M]
  • [9] YU D., System simulation exergy analysis and life cycle assessment of biological fuel preparation process[D], (2018)
  • [10] GUO M,, LITTLEWOOD J,, JOYCE J,, Et al., The environmental profile of bioethanol produced from current and potential future poplar feedstocks in the EU[J], Green chemistry, 16, 11, pp. 4680-4695, (2014)