Remediation of heavy metals in polluted water by immobilized algae: current applications and future perspectives

Z Chen, AI Osman, DW Rooney, WD Oh, PS Yap - Sustainability, 2023 - mdpi.com
The progression of urban industrialization releases large quantities of heavy metals into
water, resulting in the severe heavy metal contamination of the aquatic environment …

Non-suspended microalgae cultivation for wastewater refinery and biomass production

LL Zhuang, M Li, HH Ngo - Bioresource technology, 2020 - Elsevier
Non-suspended microalgae cultivation technology coupled with wastewater purification has
received more scientific attention in recent decades. Since the non-suspended microalgae …

An overview of microalgae for Cd2+ and Pb2+ biosorption from wastewater

O Nateras-Ramírez, MR Martínez-Macias… - Bioresource Technology …, 2022 - Elsevier
Abstract Lead (Pb 2+) and cadmium (Cd 2+) are the most toxic heavy metals that have been
discharged into the environment. There is interest in new adsorbents capable of removing …

[PDF][PDF] The adsorption of heavy metals from industrial wastewater using sargassum crassifolium

LSE Putri, E Syafiqa - GEOMATE Journal, 2019 - geomatejournal.com
Sargassum crassifolium is the origin strains of macroalgae from Indonesia which was the
most effectively adsorb heavy metals from liquid solution and it was investigated the …

Adsorption of Heavy Metals from Low Concentration Solutions onto Dried Chlamydomonas reinhardtii.

MG Genduso, M Guagliano… - Applied Sciences …, 2024 - search.ebscohost.com
Heavy metals, such as Pb (II), Cr (III), and Cd (II), are frequently discharged into the
environment, resulting in a threat for the health of living organisms. Microalgae represent an …

[PDF][PDF] Biosorption of cu (II) by Scenedesmus Obliquus: Optimization in Phovasoli Haemotococcus medium

A Rinanti, MF Fachrul, R Hadisoebroto… - GEOMATE …, 2018 - geomatejournal.com
Biosorption of copper (Cu2+) in electroplating wastewater by biosorbent using
Scenedesmus obliquus green algae has been investigated in the artificial medium of …

The kinetics of Fe2+ heavy metal adsorption by microalgae Desmodesmus sp. beads

DA Widyaningrum, A Rinanti… - IOP Conference Series …, 2021 - iopscience.iop.org
Industrial waste that contains high concentration of iron heavy metal (Fe 2+) needs to be
reduced into a safer limit for water ecosystem using an environmental-friendly, sustainable …

Fe and Mn Removal from Acid Mine Drainage by Utilizing Chlorella sorokiniana and Monoraphidium neglectum as Biosorbent

C Adlyn, A Rinanti, MF Fachrul, A Minarti… - Environmental …, 2024 - erem.ktu.lt
The mining industry generates acid mine drainage (AMD) characterized with a low pH value
and high dissolved metal concentration that leads to the negative impacts on the …

[PDF][PDF] Bioremediation of soil polluted with copper (Cu2+) by mixed culture bacteria Thiobacillus sp. and Clostridium sp

B Vernans, B Iswanto, A Rinanti - International Journal of Scientific …, 2019 - academia.edu
This research was conducted to reduce the presence of heavy metals such as Cu2+ on
polluted lands using mix culture Thiobacillus sp. and bacteria Clostridium sp. as …

Immobilized Microalgae‐Based Processes: Is It a Viable Pathway for Wastewater Treatment?

IA Severo, OGA Azevedo… - Algae Mediated …, 2024 - Wiley Online Library
Microalgae can remove polluting compounds from wastewater. However, the economic
harvest of microalgae cells is one of the main bottlenecks that make the use of biomass …