Progress toward a bicarbonate-based microalgae production system

C Zhu, S Chen, Y Ji, U Schwaneberg, Z Chi - Trends in Biotechnology, 2022 - cell.com
Commercial applications of microalgae for biochemicals and fuels are hampered by their
high production costs, and the use of conventional carbon supplies is a key reason …

Absorption-microalgae hybrid CO2 capture and biotransformation strategy—A review

C Song, Q Liu, Y Qi, G Chen, Y Song, Y Kansha… - International Journal of …, 2019 - Elsevier
CO 2 capture, storage and utilization (CCUS) is one of the dominant strategies to mitigate
climate change. Absorption, adsorption, membrane, cryogenic and microalgae are the …

Unlocking the potential of microalgae bio-factories for carbon dioxide mitigation: A comprehensive exploration of recent advances, key challenges, and energy …

YK Dasan, MK Lam, YH Chai, JW Lim, YC Ho… - Bioresource …, 2023 - Elsevier
Microalgae are promising alternatives to mitigate atmospheric CO 2 owing to their fast
growth rates, resilience in the face of adversity and ability to produce a wide range of …

A new hybrid photobioreactor design for microalgae culture

MC Deprá, LGR Mérida, CR de Menezes… - … Research and Design, 2019 - Elsevier
The objective of this study was to develop a new design of photobioreactor for microalgae
culture. Hydrodynamic characterization, growth kinetics, removal of carbon dioxide and …

Efficient CO2 capture from the air for high microalgal biomass production by a bicarbonate Pool

C Zhu, X Zhai, Y Xi, J Wang, F Kong, Y Zhao… - Journal of CO2 …, 2020 - Elsevier
Direct air capture (DAC) of CO 2 from ambient air based on alkaline sorbents has great
potential, but regenerating sorbents with physiochemical methods is energy-intensive. With …

Microalgae cultivation in offshore floating photobioreactor: State-of-the-art, opportunities and challenges

WH Khor, HS Kang, JW Lim, K Iwamoto… - Aquacultural …, 2022 - Elsevier
The wide application of microalgae in health foods, nutritional feeds, aquaculture,
pharmaceutical extracts, and biofuel production, has brought about the advancement of the …

Diatoms for carbon sequestration and bio-based manufacturing

D Sethi, TO Butler, F Shuhaili, S Vaidyanathan - Biology, 2020 - mdpi.com
Carbon dioxide (CO2) is a major greenhouse gas responsible for climate change. Diatoms,
a natural sink of atmospheric CO2, can be cultivated industrially in autotrophic and …

Protoplast Isolation and Shoot Regeneration from Protoplast-Derived Callus of Petunia hybrida Cv. Mirage Rose

HH Kang, AH Naing, CK Kim - Biology, 2020 - mdpi.com
Despite the increasing use of protoplasts in plant biotechnology research, shoot
regeneration from protoplasts remains challenging. In this study, we investigated the factors …

A review of paramylon processing routes from microalga biomass to non-derivatized and chemically modified products

F Feuzing, JP Mbakidi, L Marchal, S Bouquillon… - Carbohydrate …, 2022 - Elsevier
Paramylon is a linear β-1, 3-glucan, similar to curdlan, produced as intracellular granules by
the microalga Euglena gracilis, a highly versatile and robust strain, able to grow under …

Role of cultural variables in augmenting carbohydrate accumulation in the green microalga Scenedesmus acuminatus for bioethanol production

N Chandra, P Shukla, N Mallick - Biocatalysis and Agricultural …, 2020 - Elsevier
Microalgal biomass is regarded as quintessential feedstock for bioethanol production owing
to its rapid growth and high carbohydrate content. The present study investigates the effects …