Revolutions in algal biochar for different applications: State-of-the-art techniques and future scenarios
Algae are potential feedstock for the production of bioenergy and valuable chemicals. After
the extraction of specific value-added products, algal residues can be further converted into …
the extraction of specific value-added products, algal residues can be further converted into …
Renewable fuels via catalytic hydrodeoxygenation
TV Choudhary, CB Phillips - Applied Catalysis A: General, 2011 - Elsevier
There is considerable interest in investigating the deoxygenation process, due to the high
oxygen content of the feed-stocks used for the production of renewable fuels. This review …
oxygen content of the feed-stocks used for the production of renewable fuels. This review …
Pyrolysis behavior and product distributions of biomass six group components: Starch, cellulose, hemicellulose, lignin, protein and oil
P Zong, Y Jiang, Y Tian, J Li, M Yuan, Y Ji… - Energy Conversion and …, 2020 - Elsevier
Pyrolysis of more biomass group components should be studied in order to obtain a more
comprehensive understanding of various biomass pyrolysis. In this study, chemical …
comprehensive understanding of various biomass pyrolysis. In this study, chemical …
Thermal behavior, kinetics and fast pyrolysis characteristics of palm oil: Analytical TG-FTIR and Py-GC/MS study
Y Qiao, B Wang, P Zong, Y Tian, F Xu, D Li, F Li… - Energy Conversion and …, 2019 - Elsevier
In this work, the palm oil was selected as the model compound of waste cooking oil and the
pyrolysis experiments were performed first by TG-FTIR and then via Py-GC/MS. TG-FTIR …
pyrolysis experiments were performed first by TG-FTIR and then via Py-GC/MS. TG-FTIR …
Thermal deoxygenation and pyrolysis of oleic acid
The primary objective of this work was to study the pyrolytic conversion of mono unsaturated
fatty acids to hydrocarbon products for use as renewable chemicals and fuels. Oleic acid (cis …
fatty acids to hydrocarbon products for use as renewable chemicals and fuels. Oleic acid (cis …
New path in the thermal cracking of triacylglycerols (canola and soybean oil)
Triacylglycerols (TGs) are naturally occurring oils abundant in many crops. A series of batch
uncatalyzed thermal decomposition experiments were performed using canola and soybean …
uncatalyzed thermal decomposition experiments were performed using canola and soybean …
Pyrolysis of vegetable oil soaps—palm, olive, rapeseed and castor oils
H Lappi, R Alén - Journal of Analytical and Applied Pyrolysis, 2011 - Elsevier
Saponified, palm, olive, rapeseed and castor oils were pyrolysed (at 750° C for 20s) by
pyrolysis gas chromatography with mass selective and flame ionisation detection (Py …
pyrolysis gas chromatography with mass selective and flame ionisation detection (Py …
Microwave pyrolysis of typical forestry, manure, algae and kitchen wastes loaded with nickel nitrate: Influence of involvement of organic intermediates on exposure of …
Y Jiang, Y Shao, C Li, K Zhang, X Gao, L Zhang… - Fuel, 2024 - Elsevier
Theoretically, any carbonaceous feedstock could be potentially used as a carrier for
preparing metal/char composite material. Nonetheless, organics generated from varied …
preparing metal/char composite material. Nonetheless, organics generated from varied …
Ligand decomposition during nanoparticle synthesis: influence of ligand structure and precursor selection
Aliphatic amine and carboxylic acid ligands are widely used as organic solvents during the
bottom-up synthesis of inorganic nanoparticles (NPs). Although the ligands' ability to alter …
bottom-up synthesis of inorganic nanoparticles (NPs). Although the ligands' ability to alter …
The effect of calcination temperature on the performance of Ni/MgO–Al2O3 catalysts for decarboxylation of oleic acid
Ni catalysts supported on MgO–Al2O3 (MgO= 70wt.%) were prepared at various calcination
temperatures for decarboxylation of oleic acid. According to TPR patterns of Ni/MgO–Al2O3 …
temperatures for decarboxylation of oleic acid. According to TPR patterns of Ni/MgO–Al2O3 …