[HTML][HTML] Technologies and perspectives for achieving carbon neutrality

F Wang, JD Harindintwali, Z Yuan, M Wang, F Wang… - The Innovation, 2021 - cell.com
Global development has been heavily reliant on the overexploitation of natural resources
since the Industrial Revolution. With the extensive use of fossil fuels, deforestation, and other …

[HTML][HTML] Seaweed for climate mitigation, wastewater treatment, bioenergy, bioplastic, biochar, food, pharmaceuticals, and cosmetics: a review

M Farghali, IMA Mohamed, AI Osman… - Environmental Chemistry …, 2023 - Springer
The development and recycling of biomass production can partly solve issues of energy,
climate change, population growth, food and feed shortages, and environmental pollution …

[HTML][HTML] Materials, fuels, upgrading, economy, and life cycle assessment of the pyrolysis of algal and lignocellulosic biomass: a review

AI Osman, M Farghali, I Ihara, AM Elgarahy… - Environmental …, 2023 - Springer
Climate change issues are calling for advanced methods to produce materials and fuels in a
carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely …

Recent advancement of biomass-derived porous carbon based materials for energy and environmental remediation applications

R Chakraborty, K Vilya, M Pradhan… - Journal of Materials …, 2022 - pubs.rsc.org
In recent times, increasing environmental pollution alongside depletion of fossil fuel
reserves has led to a rejuvenated interest in utilizing biomass and waste materials …

[HTML][HTML] Chitin and chitosan derived from crustacean waste valorization streams can support food systems and the UN Sustainable Development Goals

H Amiri, M Aghbashlo, M Sharma, J Gaffey, L Manning… - Nature food, 2022 - nature.com
Crustacean waste, consisting of shells and other inedible fractions, represents an
underutilized source of chitin. Here, we explore developments in the field of crustacean …

[HTML][HTML] The current status, challenges and prospects of using biomass energy in Ethiopia

NE Benti, GS Gurmesa, T Argaw, AB Aneseyee… - Biotechnology for …, 2021 - Springer
Despite enormous challenges in accessing sustainable energy supplies and advanced
energy technologies, Ethiopia has one of the world's fastest growing economies. The …

[HTML][HTML] Variation of lignocellulosic biomass structure from torrefaction: A critical review

HC Ong, KL Yu, WH Chen, MK Pillejera, X Bi… - … and Sustainable Energy …, 2021 - Elsevier
In recent years, torrefaction, a kind of biomass thermal pretreatment technology, has
received a great deal of attention due to its effective upgrading performance of biomass …

[HTML][HTML] Modeling of thermochemical conversion of waste biomass–a comprehensive review

SMHD Perera, C Wickramasinghe… - Biofuel Research …, 2021 - biofueljournal.com
Thermochemical processes, which include pyrolysis, torrefaction, gasification, combustion,
and hydrothermal conversions, are perceived to be more efficient in converting waste …

[HTML][HTML] Potential use of industrial biomass waste as a sustainable energy source in the future

T Kalak - Energies, 2023 - mdpi.com
Aspects related to the growing pollution of the natural environment and depletion of
conventional fossil fuels have become the motive for searching for ecofriendly, renewable …

Techno-economic and environmental impact assessment of hydrogen production processes using bio-waste as renewable energy resource

A Hosseinzadeh, JL Zhou, X Li, M Afsari… - … and Sustainable Energy …, 2022 - Elsevier
There is a wide spectrum of biological wastes, from which H 2 production can generate
clean energy while minimizing environmental degradation. This study aims to conduct …