State-of-the-art co-pyrolysis of lignocellulosic and macroalgae biomass feedstocks for improved bio-oil production-A review

OA Fakayode, H Wahia, L Zhang, C Zhou, H Ma - Fuel, 2023 - Elsevier
In recent years, there have been emerging studies on developing different techniques to
improve the properties of pyrolysis bio-oil. One of such techniques is the co-pyrolysis of …

Recent developments on sewage sludge pyrolysis and its kinetics: Resources recovery, thermogravimetric platforms, and innovative prospects

SR Naqvi, R Tariq, M Shahbaz, M Naqvi… - Computers & Chemical …, 2021 - Elsevier
Sewage sludge is a by-product of the wastewater treatment process, which has the potential
to be a source of transport fuels, heat, and power using the pyrolysis process. Considering …

Studies on individual pyrolysis and co-pyrolysis of corn cob and polyethylene: Thermal degradation behavior, possible synergism, kinetics, and thermodynamic …

S Singh, T Patil, SP Tekade, MB Gawande… - Science of the Total …, 2021 - Elsevier
The knowledge on thermo-kinetics, synergistic effect, and reaction mechanism of
pyrolysis/co-pyrolysis of biomass with plastics is crucial for designing efficient reactor system …

Recent progress on biomass co-pyrolysis conversion into high-quality bio-oil

H Hassan, JK Lim, BH Hameed - Bioresource Technology, 2016 - Elsevier
Co-pyrolysis of biomass with abundantly available materials could be an economical
method for production of bio-fuels. However, elimination of oxygenated compounds poses a …

Thermal decomposition kinetics of sorghum straw via thermogravimetric analysis

V Dhyani, J Kumar, T Bhaskar - Bioresource technology, 2017 - Elsevier
The thermal decomposition of sorghum straw was investigated by non-isothermal
thermogravimetric analysis, where the determination of kinetic triplet (activation energy, pre …

Intrinsic kinetics, thermodynamic parameters and reaction mechanism of non-isothermal degradation of torrefied Acacia nilotica using isoconversional methods

S Singh, JP Chakraborty, MK Mondal - Fuel, 2020 - Elsevier
The objective of this work is to examine the suitability of torrefied biomass for bio-energy
generation by investigating its physicochemical characteristics, kinetic and thermodynamic …

Thermogravimetric kinetics of lignocellulosic biomass slow pyrolysis using distributed activation energy model, Fraser–Suzuki deconvolution, and iso-conversional …

M Hu, Z Chen, S Wang, D Guo, C Ma, Y Zhou… - Energy Conversion and …, 2016 - Elsevier
Pyrolysis kinetics of pine wood, rice husk and bamboo (Bambusa chungii) were studied via
thermo-gravimetric analysis technique under low heating rates. The result of model-free …

Effect of torrefaction on pinewood pyrolysis kinetics and thermal behavior using thermogravimetric analysis

Q He, L Ding, Y Gong, W Li, J Wei, G Yu - Bioresource technology, 2019 - Elsevier
Torrefaction is a promising pretreatment technology for biomass thermochemical
conversion. In this study, pinewood (PW) and PW250 (torrefied at 250° C) were prepared for …

Production of light olefins and aromatics via catalytic co-pyrolysis of biomass and plastic

DT Sekyere, J Zhang, Y Chen, Y Huang, M Wang… - Fuel, 2023 - Elsevier
Co-pyrolysis of pine and LDPE over basic catalysts (calcium oxide, calcium aluminate, and
calcium ferrite), acidic catalysts (ZSM-5 with Si/Al ratios of 40, 80 and 200, commercial FCC …

Discernment of synergism in pyrolysis of biomass blends using thermogravimetric analysis

D Mallick, MK Poddar, P Mahanta, VS Moholkar - Bioresource technology, 2018 - Elsevier
This study reports pyrolysis kinetics of biomass blends using isoconversional methods, viz.
Friedman, FWO and KAS. Blends of three biomasses, viz. saw dust, bamboo dust and rice …