Phytoextraction of Lead: Its Feasibility, Constraints and Concerns
Asian Soil Research Journal · pp. 1–9 · Published 28 Oct 2021
10.9734/asrj/2021/v5i430113Abstract
Aims: With lead being one of the most common soil contaminants and phytoextraction has been reported as a prospective method for remediation of lead-contaminated soil, this review aims to examine the feasibility of lead phytoextraction as well as its constraints and concerns. Study Design: This is a literature review. Methodology: Peer-reviewed papers were sourced from scholarly databases. The papers included in the review were mainly those about phytoextraction of lead, particularly with the shoot, soil and root concentrations of lead mentioned as well as the bioconcentration and translocation factors stated. Besides, papers discussing the limits, for instance, the duration of lead phytoextraction, and concerns of the approach were also included. Results: This review found only 11 plants have been reported to accumulate lead in shoots at nominal threshold of near or above 1,000 mg Pb/kg dry weight and in certain cases, soil amendment was required to achieve this. Only two of the plants had bioconcentration factor > 1 and another two had translocation factor > 1. None of the plants fulfilled all three criteria of a successful hyperaccumulator, indicating the constraints and a lack of feasibility of lead phytoextraction. Besides, lead phytoextraction has been predicted to require significant amount of time, hence increasing the risk of exposure to lead. Conclusion: This review highlights that lead phytoextraction may not be feasible for the remediation of lead-contaminated soil. It recommends phytostabilization as a more viable alternative to immobilize lead in rhizosphere and reduce lead exposure.
Cited by 7
Kuok Ho Daniel Tang, Zhu Hang Goh · Tropical Aquatic and Soil Pollution · 2022
Kuok Ho Daniel Tang · Biocatalysis and Agricultural Biotechnology · 2023
Bahareh Karimi Douna, Hossein Yousefi · Asian Pacific Journal of Environment and Cancer · 2023
Kuok Ho Daniel Tang · Tropical Environment, Biology, and Technology · 2024
Kuok Ho Daniel Tang, Risky Ayu Kristanti · Bioprocess and Biosystems Engineering · 2022
Kuok Ho Daniel Tang · Environmental and Toxicology Management · 2023
Hadeer Saleh, Washington Braida, Zhiming Zhang · Frontiers in Chemistry · 2026
Related research
- Serum Lead and Micronutrients Levels in Public Transport Drivers in Osogbo, Nigeria — shares topic coverage
- Therapeutic Potential of Ginger-supplemented Diet in Reversing Lead-induced Nephrotoxicity — shares topic coverage
- Heavy Metal Toxicity and Contamination of Fishes in Port Harcourt Creeks: A Systematic Review of Evidence Integration of Lead, Chromium, and Cadmium Exposure, Impact, and Health Risks — shares topic coverage
- Biosorption of Heavy Metals by Oscillatoria Species — shares topic coverage
- Analysis of Arsenic, Cadmium, Chromium and Lead Residue in Commercial Eggs in Damaturu Local Government, Yobe State, Nigeria — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
7
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.