Diatom mediated heavy metal remediation: A review

TK Marella, A Saxena, A Tiwari - Bioresource Technology, 2020 - Elsevier
Exposure to heavy metals is a major threat to aquatic bodies and is a global concern to our
four main spheres of the earth viz. atmosphere, biosphere, hydrosphere, and lithosphere …

Wealth from waste: Diatoms as tools for phycoremediation of wastewater and for obtaining value from the biomass

TK Marella, IY López-Pacheco, R Parra-Saldívar… - Science of the Total …, 2020 - Elsevier
Diatoms are a type of microalgae with diverse capabilities which make them useful for
multiple applications. The abundance of diatoms in water bodies facilitates the removal of …

Microalgal potential for sustainable aquaculture applications: bioremediation, biocontrol, aquafeed

B Mishra, A Tiwari, AED Mahmoud - Clean Technologies and …, 2022 - Springer
Aquaculture has an important role in the global food market and aquatic organisms are a
great reservoir of wholesome nourishment concomitantly addressing the issues of …

Current advances in microalgae-based treatment of high-strength wastewaters: challenges and opportunities to enhance wastewater treatment performance

A Torres-Franco, F Passos, C Figueredo… - … Science and Bio …, 2021 - Springer
Microalgae-based technologies, usually configured as high rate algal ponds (HRAP), are
efficient, sustainable, and cost-effective alternatives for wastewater treatment due to their …

Microalgae-mediated bioremediation: current trends and opportunities-a review

SS Ali, LHS Hassan, M El-Sheekh - Archives of Microbiology, 2024 - Springer
Environmental pollution poses a critical global challenge, and traditional wastewater
treatment methods often prove inadequate in addressing the complexity and scale of this …

Diatom‐assisted aquaculture: Paving the way towards sustainable economy

R Bhattacharjya, TK Marella, M Kumar… - Reviews in …, 2024 - Wiley Online Library
With decreasing world oceans fish stock there is rapid increase in aquaculture production.
To meet this demand, there is an urgent need to improve existing aquaculture technologies …

Extremely acidic eukaryotic (Micro) organisms: life in acid mine drainage polluted environments—mini-review

AT Luís, F Córdoba, C Antunes, R Loayza-Muro… - International Journal of …, 2021 - mdpi.com
Acid Mine Drainage (AMD) results from sulfide oxidation, which incorporates hydrogen ions,
sulfate, and metals/metalloids into the aquatic environment, allowing fixation …

Phycoremediation of heavy metals and production of biofuel from generated algal biomass: a review

M Hazaimeh - Environmental Science and Pollution Research, 2023 - Springer
Due to human activity and natural processes, heavy metal contamination frequently affects
the earth's water resources. The pollution can be categorized as resistant and persistent …

[HTML][HTML] Comparative study on phycoremediation performance of three native microalgae for primary-treated municipal wastewater

G Sisman-Aydin - Environmental Technology & Innovation, 2022 - Elsevier
The current study was aimed to investigate the performance of three native microalgae in
primary-treated municipal wastewater with regard to their nutrient removal, water quality …

Structural identification of metalloproteomes in marine diatoms, an efficient algae model in toxic metals bioremediation

CT Chasapis, M Peana, V Bekiari - Molecules, 2022 - mdpi.com
The biosorption of pollutants using microbial organisms has received growing interest in the
last decades. Diatoms, the most dominant group of phytoplankton in oceans, are (i) pollution …