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Rhizospere redox cycling and implications for rhizosphere biotransformation of selected polychlorinated biphenyl (PCB) congeners
Journal article   Open access   Peer reviewed

Rhizospere redox cycling and implications for rhizosphere biotransformation of selected polychlorinated biphenyl (PCB) congeners

Richard E Meggo and Jerald L Schnoor
Ecological engineering, Vol.57, pp.285-292
08/2013
DOI: 10.1016/j.ecoleng.2013.04.052
PMCID: PMC4028954
PMID: 24860241

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Abstract

•Soil artficially contaminated with PCBs were planted with switchgrass and poplar.•Planted PCB contaminated soil had sequential cycling of high and low moisture content to create redox cycles in the root zone.•Redox cycled treatments had higher decrease in parent PCB compound than uncycled treatment after 32 weeks. Theoretically, sequential cycles of dechlorination followed by aerobic bio-oxidation are desirable to achieve complete degradation of a mixture of higher and lower chlorinated PCBs. In this research, soil was artificially contaminated with polychlorinated biphenyls (PCBs) in mixture and as single congeners, aged, and planted with two different plant species. Alternating redox cycles were created in the root zone of plants by flooding and draining the soil. Over 32 weeks, switchgrass (Panicum virgatum) and poplar (Populus deltoids × nigra DN34) planted systems that were exposed to alternate cycles of flooding performed better in reducing parent PCBs than planted systems that were not cycled (p<0.05). The cycled systems also had a higher mass of PCB transformation products than the uncycled systems. Multiple cycles were necessary to achieve significant differences between the cycled and uncycled treatments.
Redox Poplar Rhizosphere Moisture content cycling PCB Switchgrass

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