Methodologies for bio-oil characterization from biomass pyrolysis: A review focused on GC-MS

被引:2
|
作者
Vilas-Boas, A. C. M. [1 ,2 ]
Tarelho, L. A. C. [1 ,2 ]
Moura, J. M. O. [1 ,2 ]
Gomes, H. G. M. F. [1 ,2 ]
Marques, C. C. [1 ,2 ]
Pio, D. T. [3 ]
Nunes, M. I. S. [1 ,2 ]
Silvestre, A. J. D. [4 ,5 ]
机构
[1] Univ Aveiro, Dept Environm & Planning, Aveiro, Portugal
[2] Univ Aveiro, Ctr Environm & Marine Studies CESAM, Aveiro, Portugal
[3] Navigator Co, P-2901861 Setubal, Portugal
[4] Univ Aveiro, Dept Chem, Aveiro, Portugal
[5] Univ Aveiro, Aveiro Inst Mat, CICECO, Aveiro, Portugal
关键词
Biomass; Bio-oil; Chemical characterization; GC-MS; Pyrolysis; CHEMICAL-CHARACTERIZATION; FRACTIONAL CONDENSATION; CATALYTIC PYROLYSIS; LIGNOCELLULOSIC BIOMASS; OPERATING PARAMETERS; NMR CHARACTERIZATION; GAS-CHROMATOGRAPHY; HEAVY FRACTION; GC/MS ANALYSIS; CO-PYROLYSIS;
D O I
10.1016/j.jaap.2024.106850
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Residual biomass pyrolysis offers a promising route for the production of bio-oil, which can be further processed into various green value-added fuels and chemicals. However, the complex composition of bio-oil requires thorough physicochemical characterization to optimize conversion processes and improve biomass-to-liquid technologies. This review provides a comprehensive appraisal of the influence of operating conditions, particularly biomass components, on the composition of bio-oil produced by pyrolysis, addresses physicochemical characterization methods, focusing on Gas Chromatography-Mass Spectrometry (GC-MS) for chemical analysis. Various analytical methods were reviewed, revealing differences in sample preparation, injection conditions, temperature programs, heating rates, chromatographic column dimensions, and stationary phases. The variety in methods difficult data comparison and highlights the need for standardized methodologies. While some approaches yield well-defined chromatograms with effective separation of bio-oil components, further assessments of repeatability and reproducibility are essential - both across laboratories using identical samples and within laboratories using varying samples. After compound identification, quantification using either GC-MS or GC-FID (GC with Flame Ionization Detection) with appropriate standards is recommended to enhance the reliability and validity of the results. Additionally, because GC-MS primarily identifies semi-volatile and volatile compounds, complementary techniques are necessary for a more comprehensive analysis. This review provides crucial insights into the existing methodologies and compiles a database of frequently identified compounds by GC-MS, aiming to support tool to the development of standardized methodologies for the accurate and comprehensive characterization of pyrolysis-derived bio-oils.
引用
收藏
页数:20
相关论文
共 50 条
  • [41] Microwave-Assisted Pyrolysis of Biomass for Bio-Oil Production: A Review of the Operation Parameters
    Zhang, Yaning
    Zhao, Wenke
    Li, Bingxi
    Xie, Gongnan
    JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2018, 140 (04):
  • [42] Characterisation and Py-GC/MS analysis of Imperata Cylindrica as potential biomass for bio-oil production in Brunei Darussalam
    Hidayat, Syarif
    Abu Bakar, Muhammad S.
    Yang, Yang
    Phusunti, Neeranuch
    Bridgwater, A. V.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2018, 134 : 510 - 519
  • [43] Characterization of Fast Pyrolysis Bio-Oil from Hardwood and Softwood Lignin
    Zadeh, Zahra Echresh
    Abdulkhani, Ali
    Saha, Basudeb
    ENERGIES, 2020, 13 (04)
  • [44] Characterization of bio-oil and biochar from pyrolysis of waste corrugated cardboard
    Sotoudehnia, Farid
    Rabiu, Abdulkarim Baba
    Alayat, Abdulbaset
    McDonald, Armando G.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2020, 145
  • [45] Chemical Characterization of Bio-oil from Pyrolysis of Undecayed and Decayed Fagus orientalis Wood
    Hosseinihashemi, Seyyed Khalil
    Hassani, Saeed
    Latibari, Ahmad Jahan
    Ozbay, Gunay
    DRVNA INDUSTRIJA, 2017, 68 (02) : 113 - 119
  • [46] Characterization of bio-oil and biochar from slow pyrolysis of oil palm plantation and palm oil mill wastes
    Chantanumat, Yanisa
    Phetwarotai, Worasak
    Sangthong, Silawan
    Palamanit, Arkom
    Abu Bakar, Muhammad Saifullah
    Cheirsilp, Benjamas
    Phusunti, Neeranuch
    BIOMASS CONVERSION AND BIOREFINERY, 2023, 13 (15) : 13813 - 13825
  • [47] Review on Aging of Bio-Oil from Biomass Pyrolysis and Strategy to Slowing Aging
    Cai, Junmeng
    Rahman, Md Maksudur
    Zhang, Shukai
    Sarker, Manobendro
    Zhang, Xingguang
    Zhang, Yuqing
    Yu, Xi
    Fini, Elham H.
    ENERGY & FUELS, 2021, 35 (15) : 11665 - 11692
  • [48] Valorization of coffee silverskin industrial waste by pyrolysis: From optimization of bio-oil production to chemical characterization by GC x GC/qMS
    Polidoro, Allan dos Santos
    Scapin, Enelise
    Lazzari, Eliane
    Silva, Aline Nunes
    Santos, Anal Loreiro dos
    Caramao, Elina Bastos
    Jacques, Rosangela Assis
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2018, 129 : 43 - 52
  • [49] Corncob pyrolysis for sustainable bio-oil production; a review of pretreatment, conversion, and improvement techniques
    Bello, Sakina
    Adeleke, Adekunle
    Nzerem, Petrus
    Uthman, Taofik Olatunde
    BIOFUELS-UK, 2024,
  • [50] Pyrolysis of mangaba seed: Production and characterization of bio-oil
    Santos, Roberta M.
    Santos, Aglaeverton O.
    Sussuchi, Eliana Midori
    Nascimento, Juciara S.
    Lima, Alvaro S.
    Freitas, Lisiane S.
    BIORESOURCE TECHNOLOGY, 2015, 196 : 43 - 48