Applications of bioremediation and phytoremediation in contaminated soils and waters: CREST publications during 2018-2022

Created 03 Feb 2023| Updated 20 Jun 2023 | 25 articles

Biological remediation including bioremediation and phytoremediation has been used to remediate contaminated sites due to their cost-effectiveness, energy conservation, and environmental friendliness. There are 24 articles in Critical Reviews in Environmental Science and Technology (CREST) from 2018 to 2022 focusing on this topic. Bioremediation employs microorganisms to modify and/or degrade contaminants, while phytoremediation uses plants to remove, contain, and/or change contaminants. They cover different contaminants including traditional (nutrients, petroleum hydrocarbons, organo-pesticides, plastics, and heavy metals such as Cd, Cr, Pb and U) and emerging contaminants (pharmaceutical and personal care products, and perfluoroalkyl and polyfluoroalkyl substances). However, these remediation technologies have limitations in applications including lengthy periods, environmental sensitivity, nutrient deficiency and contaminant toxicity. Therefore, improvement strategies including immobilization of microbial/microalgal cells, construction of microbial/microalgal consortia, and use of amendments have been employed to overcome its drawbacks. Further studies should focus on cost-effective strategies to enhance the efficiency of biological remediation and their environmental adaptability, especially under extreme environments and with emerging contaminants. Microbes, microalgae and plants with good contaminant removal capability should be coupled with engineering practices based on their interactive mechanisms among bio-association and contaminants at molecular levels.

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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 48, Number: 1 (02 Jan 2018)

Published online: 09 Mar 2018
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Review

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 53, Number: 3 (01 Feb 2023)

Published online: 20 Mar 2022
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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 49, Number: 5 (04 Mar 2019)

Published online: 27 Dec 2018
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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 48, Number: 10-12 (18 Jun 2018)

Published online: 15 Nov 2018
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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 49, Number: 9 (03 May 2019)

Published online: 17 Jan 2019
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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 51, Number: 9 (03 May 2021)

Published online: 14 Mar 2020
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Article

Originally published in Critical Reviews in Environmental Science and Technology, Volume: 49, Number: 13 (03 Jul 2019)

Published online: 29 Jan 2019
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Originally published in Critical Reviews in Environmental Science and Technology, Volume: 51, Number: 12 (18 Jun 2021)

Published online: 04 May 2020
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Originally published in Critical Reviews in Environmental Science and Technology, Volume: 51, Number: 23 (02 Dec 2021)

Published online: 24 Aug 2020
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