A review on optimistic biorefinery products: Biofuel and bioproducts from algae biomass

X Wang, Y Zhang, C Xia, A Alqahtani, A Sharma… - Fuel, 2023 - Elsevier
The algae biorefinery ideas have getting lot of attention recently. The newly emerging algae
mediated bioeconomy takes precedence to characterizing and tackling significant …

Understanding the risks of diffusion of cyanobacteria toxins in rivers, lakes, and potable water

AM Thawabteh, HA Naseef, D Karaman, SA Bufo… - Toxins, 2023 - mdpi.com
Blue-green algae, or cyanobacteria, may be prevalent in our rivers and tap water. These
minuscule bacteria can grow swiftly and form blooms in warm, nutrient-rich water. Toxins …

Microalgal-based bioenergy: strategies, prospects, and sustainability

S Choudhary, S Tripathi, KM Poluri - Energy & Fuels, 2022 - ACS Publications
The fuel crisis with the slumping reserves of fossil fuels and the exponential increase in the
demand of energy necessitate a paradigm shift to a more sustainable and eco-friendly …

Microalgal and nitrogen-fixing bacterial consortia: from interaction to biotechnological potential

A Llamas, E Leon-Miranda, M Tejada-Jimenez - Plants, 2023 - mdpi.com
Microalgae are used in various biotechnological processes, such as biofuel production due
to their high biomass yields, agriculture as biofertilizers, production of high-value-added …

Chlamydomonas reinhardtii, a Reference Organism to Study Algal–Microbial Interactions: Why Can't They Be Friends?

V Calatrava, M Tejada-Jimenez, E Sanz-Luque… - Plants, 2023 - mdpi.com
The stability and harmony of ecological niches rely on intricate interactions between their
members. During evolution, organisms have developed the ability to thrive in different …

Life cycle assessment of deep-eutectic-solvent-assisted hydrothermal disintegration of microalgae for biodiesel and biogas co-production

W Song, Y He, R Huang, J Li, Y Yu, P Xia - Applied Energy, 2023 - Elsevier
A life-cycle assessment was carried out to evaluate the industrial feasibility of deep eutectic
solvents (DES) for microalgae pretreatment. The effects of DES on hydrothermal …

Microalgal Carbon Dioxide (CO2) Capture and Utilization from the European Union Perspective

M Zieliński, M Dębowski, J Kazimierowicz, I Świca - Energies, 2023 - mdpi.com
The increasing concentration of anthropogenic CO2 in the atmosphere is causing a global
environmental crisis, forcing significant reductions in emissions. Among the existing CO2 …

Advancements in microalgal biorefinery technologies and their economic analysis and positioning in energy resource market

I Chanana, P Kaur, L Kumar, P Kumar, S Kulshreshtha - Fermentation, 2023 - mdpi.com
In the energy sector, bioenergy has been utilized as a replacement for non-renewable
resources. Due to the depletion of resources, mankind may face adversities in the future. To …

[HTML][HTML] The Microalgae Chlamydomonas for Bioremediation and Bioproduct Production

CM Bellido-Pedraza, MJ Torres, A Llamas - Cells, 2024 - mdpi.com
The extensive metabolic diversity of microalgae, coupled with their rapid growth rates and
cost-effective production, position these organisms as highly promising resources for a wide …

Biohydrogen production for sustainable energy transition: A bibliometric and systematic review of the reaction mechanisms, challenges, knowledge gaps and …

C Umunnawuike, SQA Mahat, PI Nwaichi… - Biomass and …, 2024 - Elsevier
Biological hydrogen production is seen as one of the solutions to achieve a sustainable
energy transition and net-zero emission by 2050. The underlying mechanisms of biological …