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Updated: May 16, 2026

Optimized Method for Cultivation and Microbial Bioaugmentation of Typha latifolia (Cattail)
Published on: July 25, 2025
Lead accumulation and association with Fe on Typha latifolia root from an urban brownfield site
Huan Feng1, Yu Qian, Frank J Gallagher
1Department of Earth and Environmental Studies, Montclair State University, Montclair, NJ 07043, USA. fengh@mail.montclair.edu
Abstract:
Synchrotron X-ray microfluorescence and X-ray absorption near-edge microstructure spectroscopy techniques were applied to Typha latifolia (cattail) root sections and rhizosphere soils collected from a brownfield site in New Jersey to investigate lead (Pb) accumulation in T. latifolia roots and the role of iron (Fe) plaque in controlling Pb uptake. We found that Pb and Fe spatial distribution patterns in the root tissues are similar with both metals present at high concentrations mainly in the epidermis and at low concentrations in the vascular tissue (xylem and phloem), and the major Pb and Fe species in T. latifolia root are Pb(II) and Fe(III) regardless of concentration levels. The sequestration of Pb by T. latifolia roots suggests a potential low-cost remediation method (phytostabilization) to manage Pb-contaminated sediments for brownfield remediation while performing wetland rehabilitation.
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