Bio-hydrogen production from steam reforming of liquid biomass wastes and biomass-derived oxygenates: A review

CC Chong, YW Cheng, KH Ng, DVN Vo, MK Lam… - Fuel, 2022 - Elsevier
Alternative energy sources have been the main interest since past decades due to inclining
energy demand and growing environmental consciousness. Hydrogen (H 2) which is known …

Progress in the reforming of bio-oil derived carboxylic acids for hydrogen generation

L Zhang, X Hu, K Hu, C Hu, Z Zhang, Q Liu, S Hu… - Journal of Power …, 2018 - Elsevier
Carboxylic acids are major components of bio-oil. Investigation of reaction characteristics of
carboxylic acids during steam reforming contributes to understanding of the reaction …

Coke formation during thermal treatment of bio-oil

X Hu, Z Zhang, M Gholizadeh, S Zhang, CH Lam… - Energy & …, 2020 - ACS Publications
Bio-oil is a mixture of organics produced from pyrolysis of biomass. The organics in bio-oil
serve as the feedstock for the production of hydrogen, chemicals, biofuels, and carbon …

Study on using hydrogen and ammonia as fuels: Combustion characteristics and NOx formation

J Li, H Huang, N Kobayashi, Z He… - International journal of …, 2014 - Wiley Online Library
This paper evaluates the potential of hydrogen (H2) and ammonia (NH3) as carbon‐free
fuels. The combustion characteristics and NOx formation in the combustion of H2 and NH3 …

Mechanochemical preparation method for the fabrication of the mesoporous Ni–Al2O3 catalysts for hydrogen production via acetic acid steam reforming

A Ghorbani, M Rezaei, SM Alavi, E Akbari… - Journal of the Energy …, 2023 - Elsevier
Abstract Ni (x)-Al 2 O 3 (x= 5, 7.5, 10, 12.5, 15, 17.5, and 20 wt%) catalysts were fabricated
by the mechanochemical way, and the samples were used in acetic acid steam reforming …

Effect of growth temperature and feedstock: catalyst ratio on the production of carbon nanotubes and hydrogen from the pyrolysis of waste plastics

JC Acomb, C Wu, PT Williams - Journal of Analytical and Applied Pyrolysis, 2015 - Elsevier
Carbon nanotubes have been produced from a low density polyethylene (LDPE) feedstock
via a two stage pyrolysis process. The temperature of the second stage, where carbon …

Steam reforming of biomass pyrolysis oil: a review

AG Adeniyi, KS Otoikhian, JO Ighalo - International Journal of …, 2019 - degruyter.com
The steam reforming of biomass pyrolysis oil is a well-established means of producing the
more useful bio-hydrogen. Bio-oil has a comparatively low heating value, incomplete …

Catalyst modification strategies to enhance the catalyst activity and stability during steam reforming of acetic acid for hydrogen production

A Kumar, R Singh, ASK Sinha - International Journal of Hydrogen Energy, 2019 - Elsevier
A high energy content (∼ 122 MJ/kg H 2) and presence of hydrogen-bearing compounds
abundance in nature make hydrogen forth runner candidate to fulfill future energy …

Catalytic steam reforming of bio-oil model compounds for hydrogen production over coal ash supported Ni catalyst

S Wang, F Zhang, Q Cai, X Li, L Zhu, Q Wang… - International journal of …, 2014 - Elsevier
The development of a high performance and low cost catalyst is an important contribution to
clean hydrogen production via the catalytic steam reforming of renewable bio-oil. Solid …

Recent progress in the steam reforming of bio-oil for hydrogen production: A review of operating parameters, catalytic systems and technological innovations

A Pafili, ND Charisiou, SL Douvartzides, GI Siakavelas… - Catalysts, 2021 - mdpi.com
The present review focuses on the production of renewable hydrogen through the catalytic
steam reforming of bio-oil, the liquid product of the fast pyrolysis of biomass. Although in …