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Original Articles

New Approaches for Bioaugmentation as a Remediation Technology

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Pages 447-494 | Published online: 10 Aug 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (14)

Muhammad Usman Ghani, Hafiz Naeem Asghar, Abdullah Niaz, Zahir Ahmad Zahir, Muhammad Farrakh Nawaz & Max M. Häggblom. (2022) Efficacy of rhizobacteria for degradation of profenofos and improvement in tomato growth. International Journal of Phytoremediation 24:5, pages 463-473.
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Michael Dare Asemoloye, Segun Gbolagade Jonathan & Rafiq Ahmad. (2019) Synergistic plant-microbes interactions in the rhizosphere: a potential headway for the remediation of hydrocarbon polluted soils. International Journal of Phytoremediation 21:2, pages 71-83.
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Amechi S. Nwankwegu & Chukwudi O. Onwosi. (2017) Microbial cell immobilization: a renaissance to bioaugmentation inadequacies. A review. Environmental Technology Reviews 6:1, pages 186-198.
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Sergio Collado, Irene Rosas, Cristina González & Mario Diaz. (2016) Biodegradation of p-hydroxybenzoic acid by Pseudomonas putida. Desalination and Water Treatment 57:32, pages 15230-15240.
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Nancy J. Pino, Luisa M. Muñera & Gustavo A. Peñuela. (2016) Bioaugmentation with Immobilized Microorganisms to Enhance Phytoremediation of PCB-Contaminated Soil. Soil and Sediment Contamination: An International Journal 25:4, pages 419-430.
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Claudia Popa, Lidia Favier, Rodica Dinica, Samer Semrany, Hayet Djelal, Abdeltif Amrane & Gabriela Bahrim. (2014) Potential of newly isolated wild Streptomyces strains as agents for the biodegradation of a recalcitrant pharmaceutical, carbamazepine. Environmental Technology 35:24, pages 3082-3091.
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Arif Tasleem Jan, Mudsser Azam, Arif Ali & Qazi Mohd. Rizwanul Haq. (2014) Prospects for Exploiting Bacteria for Bioremediation of Metal Pollution. Critical Reviews in Environmental Science and Technology 44:5, pages 519-560.
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Robert Michael William Ferguson, Raffaella Villa & Frédéric Coulon. (2014) Bioengineering options and strategies for the optimization of anaerobic digestion processes. Environmental Technology Reviews 3:1, pages 1-14.
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Tomislav Ivankovic, Jasna Hrenovic & Renata Matonickin-Kepcija. (2013) Resistance of bioparticles formed of phosphate-accumulating bacteria and zeolite to harsh environmental conditions. Biofouling 29:6, pages 641-649.
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M. Concetta Tomei & AndrewJ. Daugulis. (2013) Ex Situ Bioremediation of Contaminated Soils: An Overview of Conventional and Innovative Technologies. Critical Reviews in Environmental Science and Technology 43:20, pages 2107-2139.
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Sumana Siripattanakul-Ratpukdi. (2012) Entrapped cell system for decentralized hospital wastewater treatment: inhibitory effect of disinfectants. Environmental Technology 33:20, pages 2319-2328.
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Nadine Loick, PhilJ. Hobbs, MikeD. C. Hale & DaveyL. Jones. (2009) Bioremediation of Poly-Aromatic Hydrocarbon (PAH)-Contaminated Soil by Composting. Critical Reviews in Environmental Science and Technology 39:4, pages 271-332.
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Meltem Urgun-Demirtas, Benjamin Stark & Krishna Pagilla. (2006) Use of Genetically Engineered Microorganisms (GEMs) for the Bioremediation of Contaminants. Critical Reviews in Biotechnology 26:3, pages 145-164.
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