Tackling Old Challenges in Microalgal Biotechnology: The Role of Photobioreactors to Advance the Technology Readiness Level DOI Open Access

Mariany Costa Deprá,

Rosângela Rodrigues Dias,

Leila Queiroz Zepka

и другие.

Processes, Год журнала: 2024, Номер 13(1), С. 51 - 51

Опубликована: Дек. 29, 2024

Microalgae biotechnology has taken the world by storm. However, despite its great potential promise, it still cannot be considered a fully consolidated technology due to crucial challenge: low rates of biomass productivity. To overcome this hurdle, photobioreactors have been developed as an innovative solution, promising increase efficiency microalgae cultures providing optimized conditions. results obtained with these systems do not always meet initial expectations, and their large-scale implementation faces complex technical challenges. In light this, present review addresses main aspects related design engineering photobioreactors, highlighting potentialities limitations in overcoming critical challenges microalgal biotechnology. Furthermore, we discuss current technological readiness level commercial index microalgae-based bioproducts from perspective industrial-scale production.

Язык: Английский

Catalytic strategies for algal-based carbon capture and renewable energy: A review on a sustainable approach DOI
Sudarshan Sahu,

Plash Kunj,

Anupreet Kaur

и другие.

Energy Conversion and Management, Год журнала: 2024, Номер 310, С. 118467 - 118467

Опубликована: Апрель 25, 2024

Язык: Английский

Процитировано

11

Microalga-Based Electricity Production: A Comprehensive Review DOI Creative Commons

Wid Alrashidi,

Safiah Alhazmi,

Fotoon Sayegh

и другие.

Energies, Год журнала: 2025, Номер 18(3), С. 536 - 536

Опубликована: Янв. 24, 2025

This review evaluates the feasibility of using microalgal culture for sustainable energy production, emphasizing microbial fuel cells (MFCs) and biophotovoltaics (BPVs). study’s uniqueness is rooted in its thorough examination recent developments (2014–present) strain selection, bioreactor design, electrode materials. Furthermore, this combines microalga cultivation with wastewater treatment, highlighting importance. Notably, it examines advanced methodologies, such as use genetic engineering to enhance traits, nanotechnology optimize efficacy, artificial intelligence (AI) bioelectrochemical systems. In addition, study identifies possible future research avenues by examining microalga–bacterium consortia cascaded biobattery Consequently, incorporation case studies illustrating biobatteries’ practical applications low-power devices treatment underscores technology’s promise. Similarly, significant problems enhancing farming methods, reconciling cost yield, integrating renewable sources grid, offering vital insights academics policymakers. Ultimately, emphasizes need economical waste stream utilization, scalable designs, thereby considerably advancing options.

Язык: Английский

Процитировано

1

Harnessing Chlorella vulgaris for the phycoremediation of azo dye: A comprehensive analysis of metabolic responses and antioxidant system DOI
Zahra Moradi, Maryam Madadkar Haghjou, Mahmoud Zarei

и другие.

Algal Research, Год журнала: 2024, Номер 82, С. 103660 - 103660

Опубликована: Авг. 1, 2024

Язык: Английский

Процитировано

7

Microalgae stress sensing through oxidative phosphorylation drives bioenergy potential: deciphering mechanisms and future opportunities DOI
Adamu Yunusa Ugya, Xiang Li, Hui Chen

и другие.

Journal of environmental chemical engineering, Год журнала: 2024, Номер 12(6), С. 114266 - 114266

Опубликована: Сен. 26, 2024

Язык: Английский

Процитировано

7

Phycoremediation of potentially toxic elements for agricultural and industrial wastewater treatment: Recent advances, challenges, and future prospects DOI Creative Commons
Rakesh Kumar,

Deepa Kundu,

Tapos Kormoker

и другие.

Desalination and Water Treatment, Год журнала: 2024, Номер unknown, С. 100505 - 100505

Опубликована: Июнь 1, 2024

Phycoremediation is an eco-friendly and low operational-cost technique. It promotes green technology for biofuel production, high nutrient recovery, wastewater treatment through microalgae. This review encompasses a set of algal-based remediation methods potentially toxic elements (PTEs) from agricultural discharges industrial wastewater. Large-scale algae production approaches, such as suspended cultures in open ponds or closed reactors immobilized cultures, include biofilm matrix-immobilized systems biomass the removal nutrients, well PTEs. Fundamentals PTEs using microalgae are biosorption bioaccumulation, thus, this summarizes how beneficial treatment. Further, describes recent technologies, i.e., bioreactors, high-rate algal ponds, commercial sorption, etc., used their specifications contaminants effluent. Wastewater process utilizes macro-algae both conventional facultative advanced with photo-bioreactors. also covers advancement bioremediation nutrients PTE Lastly, concluded various limitations, challenges, prospects on implications wastewater, considering carbon neutrality circular economy.

Язык: Английский

Процитировано

6

Microalgal bioengineering: a futuristic tool for carbon capture DOI Creative Commons
Adamu Yunusa Ugya, Yangyang Sheng, Hui Chen

и другие.

Results in Engineering, Год журнала: 2024, Номер unknown, С. 102990 - 102990

Опубликована: Сен. 1, 2024

Процитировано

6

The Microalgae Chlamydomonas for Bioremediation and Bioproduct Production DOI Creative Commons
Carmen M. Bellido-Pedraza, María J. Torres, Ángel Llamas

и другие.

Cells, Год журнала: 2024, Номер 13(13), С. 1137 - 1137

Опубликована: Июль 2, 2024

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 range biotechnological applications. These characteristics allow microalgae to address crucial needs in the agricultural, medical, industrial sectors. Microalgae are proving be valuable various fields, including remediation diverse wastewater types, production biofuels biofertilizers, extraction products from biomass. For decades, microalga

Язык: Английский

Процитировано

5

Aquatic phytoresources: An environmentally sustainable alternative biomaterial for bioenergy production DOI
Adamu Yunusa Ugya, Jaafaru Sani Mohammed, Yangyang Sheng

и другие.

Renewable and Sustainable Energy Reviews, Год журнала: 2024, Номер 205, С. 114877 - 114877

Опубликована: Авг. 27, 2024

Язык: Английский

Процитировано

4

Engineering the Novel Extremophile Alga Chlamydomonas pacifica for High Lipid and High Starch Production as a Path to Developing Commercially Relevant Strains DOI Creative Commons
Abhishek Gupta, João Vitor Dutra Molino,

Kathryn M. J. Wnuk-Fink

и другие.

ACS ES&T Engineering, Год журнала: 2024, Номер 5(1), С. 36 - 49

Опубликована: Ноя. 25, 2024

Microalgae offer a compelling platform for the production of commodity products, due to their superior photosynthetic efficiency, adaptability nonarable lands and nonpotable water, capacity produce versatile array bioproducts, including biofuels biomaterials. However, scalability microalgae as bioresource has been hindered by challenges such costly biomass related vulnerability pond crashes during large-scale cultivation. This study presents pipeline genetic engineering pilot-scale biodiesel thermoplastic polyurethane precursors in extremophile species Chlamydomonas pacifica. microalga exhibits exceptional resilience high pH (>11.5), salinity (up 2% NaCl), elevated temperatures 42 °C). Initially, we evolved this strain also have tolerance light intensity (>2000 μE/m2/s) through mutagenesis, breeding, selection. We subsequently genetically engineered C. pacifica significantly enhance lipid 28% starch accumulation 27%, all without affecting its growth rate. demonstrated these strains cultivating them raceway ponds converting resulting into polyurethanes. showcases complete cycle transforming newly discovered commercially relevant strain. research underscores potential algae, pacifica, key burgeoning sustainable bioeconomy, offering viable path forward mitigating environmental supporting global bioproduct demands.

Язык: Английский

Процитировано

3

Exploring algal diversity for enhanced nutrition: Implications for human health and sustainability DOI

M. Maghimaa,

Suresh Sagadevan, Is Fatimah

и другие.

Algal Research, Год журнала: 2025, Номер 86, С. 103907 - 103907

Опубликована: Янв. 10, 2025

Язык: Английский

Процитировано

0