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Progress in microwave pyrolysis conversion of agricultural waste to value-added biofuels: a batch to continuous approach
Microwave pyrolysis (MP) has emerged as a promising technique to valorize agricultural
wastes (AW) into biofuels, comprising biochar, bio-oil, and syngas. To fill the research gap …
wastes (AW) into biofuels, comprising biochar, bio-oil, and syngas. To fill the research gap …
A review on recent advances in dry reforming of methane over Ni-and Co-based nanocatalysts
F Sharifianjazi, A Esmaeilkhanian, L Bazli… - international journal of …, 2022 - Elsevier
The recent environmental-related issues such as climate change and global warming have
sparked scientists' interest in finding a way to reduce the emission of greenhouse gases …
sparked scientists' interest in finding a way to reduce the emission of greenhouse gases …
A critical review of recent advancements in catalytic dry reforming of methane: physicochemical properties, current challenges, and informetric insights
Carbon dioxide (CO 2) and methane (CH 4) are highly hazardous air pollutants that pose
significant threats to the environment and human health and contribute indirectly to global …
significant threats to the environment and human health and contribute indirectly to global …
Recent advances in promoting dry reforming of methane using nickel-based catalysts
H Zhu, H Chen, M Zhang, C Liang… - Catalysis Science & …, 2024 - pubs.rsc.org
Dry reforming of methane (DRM) is an efficient way for CO2 utilization to convert CH4 and
CO2 to syngas (H2 and CO), which is an ingredient to produce hydrogen and methanol and …
CO2 to syngas (H2 and CO), which is an ingredient to produce hydrogen and methanol and …
Dry reforming of methane over Ni/SiO2 catalysts: Role of support structure properties
Y Zhang, G Zhang, J Liu, T Li, Y Wang, Y Zhao, G Li… - Fuel, 2023 - Elsevier
Dry reforming of methane (DRM) can take advantage of greenhouse gases (CH 4 and CO 2)
to reduce their impact on the ecological environment. However, the biggest hurdle for the …
to reduce their impact on the ecological environment. However, the biggest hurdle for the …
The effect of oxygen mobility/vacancy on carbon gasification in nano catalytic dry reforming of methane: A review
Dry reforming of methane (DRM) remains challenging due to catalyst deactivation driven
primarily by carbon deposition and metal sintering. Nanocatalytic materials offer great …
primarily by carbon deposition and metal sintering. Nanocatalytic materials offer great …
Highly coke resistant Ni–Co/KCC-1 catalysts for dry reforming of methane
K Palanichamy, S Umasankar, S Ganesh… - International Journal of …, 2023 - Elsevier
Abstract Nanofibrous KCC-1 supported Ni–Co bimetallic catalysts were investigated for dry
reforming of methane for syngas generation. Monometallic catalysts such as Ni/KCC-1 and …
reforming of methane for syngas generation. Monometallic catalysts such as Ni/KCC-1 and …
Dry reforming of methane over silica zeolite-encapsulated Ni-based catalysts: Effect of preparation method, support structure and Ni content on catalytic performance
X **e, D Liang, M Chen, Y Wang, W Li, J Wang… - International Journal of …, 2023 - Elsevier
Dry reforming of methane (DRM) is a prospective technology for efficient utilization of CH 4
and CO 2, with the essential challenge being the design and synthesis of efficient catalysts …
and CO 2, with the essential challenge being the design and synthesis of efficient catalysts …
Unveiling the catalytic performance of unique core-fibrous shell silica-lanthanum oxide with different nickel loadings for dry reforming of methane
The dry reforming of methane (DRM) stands as a remarkable process for the conversion of
methane and carbon dioxide into syngas (H 2/CO). In this study, mesoporous fibrous silica …
methane and carbon dioxide into syngas (H 2/CO). In this study, mesoporous fibrous silica …
Reaction synergy of bimetallic catalysts on ZSM-5 support in tailoring plastic pyrolysis for hydrogen and value-added product production
Hydrogen, viz. a green energy carrier, is poised to considerably contribute to the
empowerment of a sustainable society. By valorizing plastics, catalytic pyrolysis was …
empowerment of a sustainable society. By valorizing plastics, catalytic pyrolysis was …