Production of biofuels from biomass: Predicting the energy employing artificial intelligence modelling

M Meena, S Shubham, K Paritosh, N Pareek… - Bioresource …, 2021 - Elsevier
Bioenergy may be a major replacement of fossil fuels which can make the path easier for
sustainable development and decrease the dependency on conventional sources of energy …

Green and sustainable biomass supply chain for environmental, social and economic benefits

M Hiloidhari, MA Sharno, DC Baruah… - Biomass and …, 2023 - Elsevier
Bioenergy is a clean and renewable source of energy that can reduce global depency on
fossil fuel, and it is a sustainable, economically viable, and socially acceptable. Bioenergy …

Biofuel supply chain management in the circular economy transition: An inclusive knowledge map of the field

M Ranjbari, ZS Esfandabadi, A Ferraris, F Quatraro… - Chemosphere, 2022 - Elsevier
Investment in biofuels, as sustainable alternatives for fossil fuels, has gained momentum
over the last decade due to the global environmental and health concerns regarding fossil …

[HTML][HTML] Interdisciplinary challenges in bio-energy carbon capture utilization & storage deployment: A review

FD Yeung, S Sammarchi, E Wang, Q Gao… - Carbon Capture Science & …, 2024 - Elsevier
Abstract Bioenergy with Carbon Capture, Utilization, and Storage (BECCUS) is an
innovative technology that has the potential to contribute significantly to global climate …

Cross-sectoral perspectives (chapter 12)

M Babiker, G Berndes, K Blok, B Cohen, A Cowie… - 2022 - pure.iiasa.ac.at
The total emission mitigation potential achievable by the year 2030, calculated based on
sectoral assessments, is sufficient to reduce global greenhouse gas emissions to half of the …

[HTML][HTML] Bioenergy with carbon capture and storage (BECSS): Life cycle environmental and economic assessment of electricity generated from palm oil wastes

DM Saharudin, HK Jeswani, A Azapagic - Applied Energy, 2023 - Elsevier
Rapid deployment of negative emissions technologies (NETs) will be needed to help
mitigate climate change. Among various NETs, bioenergy with carbon capture and storage …

[HTML][HTML] Environmental impacts of carbon capture, transport, and storage supply chains: Status and the way forward

J Burger, J Nöhl, J Seiler, P Gabrielli, P Oeuvray… - International Journal of …, 2024 - Elsevier
Carbon capture, transport, and storage (CCTS) enables the decarbonization of industrial
emitters. CCTS is regarded as crucial in reaching net-zero emission targets but currently …

Life cycle optimization for hydrogen supply chain network design

L Li, L Feng, H Manier, MA Manier - International Journal of Hydrogen …, 2024 - Elsevier
Hydrogen is central to meeting the challenge of climate change. The lack of infrastructure to
produce, store, and deliver hydrogen is a significant obstacle to transitioning toward a …

[HTML][HTML] Energy systems modeling and optimization for absolute environmental sustainability: current landscape and opportunities

T Weidner, Á Galán-Martín, MW Ryberg… - Computers & Chemical …, 2022 - Elsevier
Energy systems analysis supports in designing and operating reliable and cost-effective
energy solutions to a range of sectors, including power, heating, mobility, and industry …

Contributions of countries without a carbon neutrality target to limit global warming

J Zhou, W Li, P Ciais, T Gasser, J Wang, Z Li… - Nature …, 2025 - nature.com
Bioenergy with carbon capture and storage (BECCS) is a key negative emission technology
for climate mitigation. Some countries have made no commitment to carbon neutrality but …