Exergy Transfer Analysis of Biomass and Microwave Based on Experimental Heating Process

被引:1
作者
Cui, Longfei [1 ]
Liu, Chaoyue [1 ]
Liu, Hui [1 ]
Zhao, Wenke [1 ]
Zhang, Yaning [1 ]
机构
[1] Harbin Inst Technol, Sch Energy Sci & Engn, Harbin 150001, Peoples R China
基金
中国国家自然科学基金;
关键词
biomass; microwave; heating process; exergy transfer; WHEAT-STRAW; PYROLYSIS;
D O I
10.3390/su15010388
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Exergy transfer and microwave heating performances of wheat straw particles as affected by microwave power (250, 300, and 350 W), feeding load (10, 30, and 50 g), and particle size (0.058, 0.106, and 0.270 mm) were investigated and detailed in this study. The results show that when the microwave power increased from 250 to 350 W, the average heating rate increased in the range of 23.41-56.18 degrees C/min with the exergy transfer efficiency increased in the range of 1.10-1.89%. When the particle size increased from 0.058 to 0.270 mm, the average heating rate decreased in the range of 20.59-56.18 degrees C/min with the exergy transfer efficiency decreased in the range of 0.70-1.89%. When the feeding load increased from 10 to 50 g, the average heating rate increased first and then decreased in the range of 5.96-56.18 degrees C/min with the exergy transfer efficiency increased first and then decreased in the range of 0.07-1.89%. The highest exergy transfer efficiency was obtained at a microwave power of 300 W, feeding load of 30 g, and particle size of 0.058 mm.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Two equations for estimating the exergy of woody biomass based on the exergy of ash
    Zhang, Yaning
    Zhao, Wenke
    Li, Bingxi
    Zhang, Haochun
    Jiang, Baocheng
    Ke, Cunfeng
    ENERGY, 2016, 106 : 400 - 407
  • [22] Experimental Study on Impact of Heating Temperature and Heating Rate during Carbonization of Woody Biomass
    Huang, Haizhen
    Jiao, Zhenwei
    Shu, Zhenyang
    Zeng, Yaoguo
    PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON GREEN MATERIALS AND ENVIRONMENTAL ENGINEERING (GMEE 2015), 2016, 35 : 174 - 178
  • [23] Numerical study of cullet glass subjected to microwave heating and SiC susceptor effects. Part II: Exergy transfer
    Acevedo, Luis
    Uson, Sergio
    Uche, Javier
    ENERGY CONVERSION AND MANAGEMENT, 2015, 97 : 458 - 469
  • [24] Numerical Analysis of Heat Transfer Characteristics in Microwave Heating of Magnetic Dielectrics
    Zhiwei Peng
    Jiann-Yang Hwang
    Chong-Lyuck Park
    Byoung-Gon Kim
    Gerald Onyedika
    Metallurgical and Materials Transactions A, 2012, 43 : 1070 - 1078
  • [25] Exergy analysis of biomass-to-synthetic natural gas (SNG) process via indirect gasification of various biomass feedstock
    Vitasari, Caecilia R.
    Jurascik, Martin
    Ptasinski, Krzysztof J.
    ENERGY, 2011, 36 (06) : 3825 - 3837
  • [26] ENERGY AND EXERGY ANALYSIS OF A BIOMASS POWER PLANT
    Silva, Joao
    Teixeira, Senhorinha F.
    Preziati, Simone
    Teixeira, Jose Carlos
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2016, VOL. 6B, 2017,
  • [27] Proposal, exergy analysis and optimization of a new biomass-based cogeneration system
    Gholamian, E.
    Mahmoudi, S. M. S.
    Zare, V.
    APPLIED THERMAL ENGINEERING, 2016, 93 : 223 - 235
  • [28] Simulation study of parameters influencing microwave heating of biomass
    Halim, Siti Abdul
    Swithenbank, Jim
    JOURNAL OF THE ENERGY INSTITUTE, 2019, 92 (04) : 1191 - 1212
  • [29] Heating of biomass in microwave household oven - A numerical study
    Fia, A. Z.
    Amorim, J.
    ENERGY, 2021, 218
  • [30] Describing the microwave heating performances of the main constitutes of biomass
    Cui, Longfei
    Zhang, Yaning
    Shi, Ce
    Zhao, Wenke
    Li, Bingxi
    ENERGY, 2024, 302