Torrefaction of biomass and plastic from municipal solid waste streams and their blends: Evaluation of interactive effects

被引:55
|
作者
Rago, Yogeshwari Pooja [1 ]
Collard, Francois-Xavier [2 ]
Gorgens, Johann F. [2 ]
Surroop, Dinesh [1 ]
Mohee, Romeela [1 ,3 ]
机构
[1] Univ Mauritius, Dept Chem & Environm Engn, Reduit 80837, Mauritius
[2] Stellenbosch Univ, Dept Proc Engn, Stellenbosch, South Africa
[3] Commonwealth Learning, Vancouver, BC, Canada
关键词
Torrefaction; Municipal solid wastes; Synergistic interactions; Co-combustion; Coal; Biomass; MASS-LOSS; PYROLYSIS; FUEL; HEMICELLULOSE; COMBUSTION; BEHAVIORS; YIELD; POLYETHYLENE; TEMPERATURE; PARAMETERS;
D O I
10.1016/j.fuel.2020.118089
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper investigated the interactive effects between biomass and plastic, derived from municipal solid wastes, during co-torrefaction of their mixtures. Mango branches (MBr), waste newspaper (Np), low-density polyethylene (LDPE) and their blends were torrefied at 300 degrees C at a constant heating rate of 10 degrees C/min for 30 min using a bench-scale reactor. Statistically significant interactions were found between MBr and Np during torrefaction of MBr-Np and MBr-Np-LDPE blends. The synergistic behaviour in torrefied MBr-Np accounted for its improved energy density, reduced volatile matter content, increased carbon content and higher fuel ratio than expected. During co-torrefaction with plastic, melted LDPE limited mass transfer, which resulted in higher char yield and energy content. Analysis of combustion indices revealed that waste blending ratio of torrefied biomass-LDPE blends should be limited to 5 wt%, due to the high volatile matter content of LDPE. This study elucidates that among the different torrefied blends, synergistic interactions during co-torrefaction of waste biomass (MBr-Np) generated a char with improved fuel characteristics that allowed co-firing of biomass at higher blending ratios (20 wt%).
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Municipal solid waste processing and separation employing wet torrefaction for alternative fuel production and aluminum reclamation
    Mu'min, Gea Fardias
    Prawisudha, Pandji
    Zaini, Ilman Nuran
    Aziz, Muhammad
    Pasek, Ari Darmawan
    WASTE MANAGEMENT, 2017, 67 : 106 - 120
  • [32] Optimization of Briquette Fuels by Co-Torrefaction of Residual Biomass and Plastic Waste Using Response Surface Methodology
    Guo, Shuai
    Liu, Lidong
    Zhao, Deng
    Zhao, Chenchen
    Li, Xingcan
    Li, Guangyu
    MOLECULES, 2023, 28 (06):
  • [33] Thermogravimetric and kinetic analysis of the decomposition of solid recovered fuel from municipal solid waste
    Conesa, Juan A.
    Rey, Lorena
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2015, 120 (02) : 1233 - 1240
  • [34] TORREFACTION OF MOIST MUNICIPAL SOLID WASTE PELLETS USING CHAR OF BAGASSE AS A MICROWAVE ABSORBER
    Siritheerasas, Prodpran
    Waiyanate, Phichayanan
    SURANAREE JOURNAL OF SCIENCE AND TECHNOLOGY, 2020, 27 (04):
  • [35] Torrefaction of municipal solid waste to enhanced hydrophobic solid fuel: parametric optimisation and optimised torrefied solid products characterisation, grindability, and pyrolysis behaviour
    Abdulyekeen, Kabir Abogunde
    Daud, Wan Mohd Ashri Wan
    Patah, Muhamad Fazly Abdul
    Abnisa, Faisal
    BIOMASS CONVERSION AND BIOREFINERY, 2024, 14 (23) : 30251 - 30268
  • [36] Optimizing Waste for Energy: Exploring Municipal Solid Waste Variations on Torrefaction and Biochar Production
    Mpungu, Ibrahim Luqman
    Maube, Obadiah
    Nziu, Patrick
    Mwasiagi, Josphat Igadwa
    Dulo, Benson
    Bongomin, Ocident
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2024, 2024
  • [37] Torrefaction of biomass: A review of production methods for biocoal from cultured and waste lignocellulosic feedstocks
    Barskov, Stan
    Zappi, Mark
    Buchireddy, Prashanth
    Dufreche, Stephen
    Guillory, John
    Gang, Daniel
    Hernandez, Rafael
    Bajpai, Rakesh
    Baudier, Jeff
    Cooper, Robbyn
    Sharp, Richard
    RENEWABLE ENERGY, 2019, 142 (624-642) : 624 - 642
  • [38] Reactivity characterization of municipal solid waste and biomass
    Nikku, Markku
    Deb, Anjan
    Sermyagina, Ekaterina
    Puro, Liisa
    FUEL, 2019, 254
  • [39] Fluidized-bed gasification kinetics model development using genetic algorithm for biomass, coal, municipal plastic waste, and their blends
    Bhattarai, Ashish
    Kafle, Sagar
    Sakhakarmy, Manish
    Moogi, Surendar
    Adhikari, Sushil
    ENERGY, 2024, 313
  • [40] Effects of various additives on the pyrolysis characteristics of municipal solid waste
    Song, Qiang
    Zhao, Hong-yu
    Xing, Wen-long
    Song, Li-hua
    Yang, Li
    Yang, Di
    Shu, Xinqian
    WASTE MANAGEMENT, 2018, 78 : 621 - 629