Phytoremediation Potential of Plants Growing on the Pb-Contaminated Soil at the Song Tho Pb Mine, Thailand
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- Type
- article
- Published
- 2017-05-19
- Cited by
- 17
- References
- 52
- OpenAlex
- https://openalex.org/W2738415703
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:135158543
Keywords
Phytoremediation, Contamination, Environmental science, Soil contamination, Environmental chemistry
References
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- Soil Analysis: An Interpretation Manual
- Plants to harvest rhenium: scientific and economic viability
- Effects of saline and alkaline stresses on growth and physiological changes in oat (Avena sativa L.) seedlings.
- Effect of lead on root growth
- Phytoremedial assessment of flora tolerant to heavy metals in the contaminated soils of an abandoned Pb mine in Central Portugal.
- Heavy metal distribution in mine-soils and plants growing in a Pb/Zn-mining area in NW Spain
- A field-scale study of cadmium phytoremediation in a contaminated agricultural soil at Mae Sot District, Tak Province, Thailand: (1) Determination of Cd-hyperaccumulating plants.
- Sedum alfredii H: A new Zn hyperaccumulating plant first found in China
- Evaluation of Pb Phytoremediation Potential in Buddleja asiatica and B. paniculata
- Hyperaccumulators of metal and metalloid trace elements: Facts and fiction
- Facultative hyperaccumulation of heavy metals and metalloids.
- Determination of 25 Trace Element Concentrations in Biological Reference Materials by ICP-MS following Different Microwave-Assisted Acid Digestion Methods Based on Scaling Masses of Digested Samples
- LEAD TOLERANCE AND ACCUMULATION IN PTERIS VITTATA AND PITYROGRAMMA CALOMELANOS, AND THEIR POTENTIAL FOR PHYTOREMEDIATION OF LEAD-CONTAMINATED SOIL
- Uptake of lead and zinc by wild plants growing on contaminated soils
- Uptake and accumulation of lead by plants from the Bo Ngam lead mine area in Thailand.
- Phytoremediation of heavy metals--concepts and applications.
- Using soil bacteria to facilitate phytoremediation.
- A Review on Heavy Metals (As, Pb, and Hg) Uptake by Plants through Phytoremediation
- Phytomining of gold: A review
Cited by
- Role of Burkholderia cepacia CS8 in Cd-stress alleviation and phytoremediation by Catharanthus roseus
- Isolation and characterization of Pb-resistant plant growth promoting endophytic bacteria and their role in Pb accumulation by fast-growing trees
- The combined effect of phytostabilization and different amendments on remediation of soils from post-military areas.
- Microbiological interventions at soil plant interface to induce lead mobility and its remediation
- Characterization of Pb-tolerant Plant-growth-promoting Endophytic Bacteria for Biosorption Potential, Isolated from Roots of Pb Excluders Grown in Different Habitats
- Effects of sophorolipids augmentation on the plant growth and phytoremediation of heavy metal contaminated soil
- Pb tolerance and accumulation capabilities of Bidens pilosa L. growing in polluted soils depend on the history of exposure.
- The impact of tantalite mining on the flora diversity in Nasarawa state, Nigeria
- Removal of some plant toxic heavy metals from soil using Mimosa pigra L. plant and effect of methanolic extract of Acacia nilotica L. on removing efficacy
- A Comprehensive Review of the Ethnotraditional Uses and Biological and Pharmacological Potential of the Genus Mimosa
- Phytoremediation ability of H. strobilaceum and S. herbacea around an industrial town
- Biomonitoring and Phytoremediation of Cr (VI) Contaminated Water: Study on Bioaccumulation and Morphological Responses in Eichhornia crassipes
- Metal accumulation in cattails cultured in soils flooded with artificial wastewater of varying pH and different levels of metals (Cr, Cd and Zn)
- Optimizing Heavy Metal Uptake in Carpobrotus aequilaterus Through Electrokinetic Treatment: A Comprehensive Study on Phytoremediation from Mine Tailings
- Environmental impacts of mine tailings and phytoremediation as a sustainable management strategy: A review
- In Situ Phytoremediation of Metals
- Vernonia polyanthes EXPOSED TO LEAD NITRATE AND ARBUSCULAR MYCORRHIZAL FUNGI
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