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    Microalgal bioremediation of brackish aquaculture wastewater 

    Kashem, Abdurahman Hafez Mohammed; Das, Probir; AbdulQuadir, Mohammad; Khan, Shoyeb; Thaher, Mahmoud Ibrahim; Alghasal, Ghamza; Hawari, Alaa H.; Al-Jabri, Hareb... more authors ... less authors ( Elsevier , 2023 , Article)
    Rapid aquaculture industry development contributed to a major increase in aquaculture wastewater generation. In the context of a circular economy, aquaculture wastewater treatment should simultaneously recover nutrients ...

    Utilization of nitrogen-rich agricultural waste streams by microalgae for the production of protein and value-added compounds 

    Khan, Shoyeb; Das, Probir; Thaher, Mahmoud Ibrahim; AbdulQuadir, Mohammed; Mahata, Chandan; Al Jabri, Hareb... more authors ... less authors ( Elsevier B.V. , 2023 , Article)
    Current food and feed production practices via agricultural processes generate waste streams often rich in nitrogen. Conversion of the nitrogen in agricultural waste into valuable products would prevent environmental ...
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    Microalgal-based desalination brine remediation: Achievements, challenges, and future research trends 

    Gilani, Isra E.; Hosseini, Hoda; Al-Ghouti, Mohammad A.; Saadaoui, Imen; Sayadi, Sami ( Elsevier B.V. , 2024 , Book Review)
    Desalination brine discharge has several negative impacts on the marine environment, such as increase in salinity levels, effects on marine biodiversity, and alteration of the physical and chemical characteristics of water. ...
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    Gene expression analysis reveals genes related to heavy metals and produced water exposure in Synechococcus elongatus 

    Hassanien, Alaa; Ahmed, Nisar; Misfud, Borbala; Al-Jabri, Hareb M.; Al-Marri, Sara; Dalgamouni, Tasneem; Al-Merekhi, Maryam; Schipper, Kira; Saadaoui, Imen; Saeed, Suhur; Aouida, Mustapha... more authors ... less authors ( Springer Nature , 2025 , Article)
    Produced water (PW), a major by-product of the petrochemical industry, contains a complex mixture of contaminants that limit its reuse and pose environmental risks if discharged untreated. Numerous treatment technologies ...
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    Biodegradation of hydrocarbons and biosurfactants production by a newly halotolerant Pseudomonas sp. strain isolated from contaminated seawater 

    Hentati, Dorra; Chebbi, Alif; Mahmoudi, Asma; Hadrich, Fatma; Cheffi, Meriam; Frikha, Ilhem; Sayadi, Sami; Chamkha, Mohamed... more authors ... less authors ( Elsevier , 2021 , Article)
    A strain NAPH6 of Pseudomonas aeruginosa, isolated from contaminated seawater taken from the fishing harbor of Sfax, Tunisia, was able to degrade almost completly the naphthalene (200 mg/l) and the aliphatic hydrocarbons ...
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    Microalgal bioremediation of petroleum-derived low salinity and low pH produced water 

    Das P.; AbdulQuadir M.; Thaher M.; Khan S.; Chaudhary A.K.; Alghasal G.; Al-Jabri H.M.S.J.... more authors ... less authors ( Springer Netherlands , 2019 , Article)
    Due to the presence of toxic organic compounds and heavy metals, it is essential to treat the produced water before reuse or discharge to the environment. In this study, produced water sample was collected from a local ...
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    Trends in microalgal-based systems as a promising concept for emerging contaminants and mineral salt recovery from municipal wastewater 

    Ines, Zribi; Zili, Fatma; Ben Ali, Rihab; Masmoudi, Mohamed Ali; Karray, Fatma; Sayadi, Sami; Ben Ouada, Hatem; Chamkha, Mohamed... more authors ... less authors ( Elsevier , 2023 , Article Review)
    In the context of climate change leading to water scarcity for many people in the world, the treatment of municipal wastewater becomes a necessity. However, the reuse of this water requires secondary and tertiary treatment ...

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    Author
      Sayadi, Sami (3) Chamkha, Mohamed (2) Das, Probir (2) Khan, Shoyeb (2) ... View More
    Type
      Article (5) Article Review (1) Book Review (1)
    Subject
    • Bioremediation (7)
    • Microalgae (4) Produced water (2) Aquaculture wastewater (1) ... View More
    Publication Date
      2023 (3) 2019 (1) 2021 (1) 2024 (1) 2025 (1)
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