#phytoextraction
Mit Hanf lassen sich sogar verunreinigte Böden reinigen. Er zieht die Schadstoffe raus und lagert diese in den Stängeln und Hanfblättern ab. Dazu die passende Studie:
#Hanf #Nutzhanf #Landwirtschaft #Wirtschaft #Umwelt #Klima #Naturschutz #politik #Agrar
pubs.rsc.org/en/content/a...
A comprehensive trial on PFAS remediation: hemp phytoextraction and PFAS degradation in harvested plants - Environmental Science: Advances (RSC Publishing) DOI:10.1039/D3VA00340J
pubs.rsc.org
January 31, 2026 at 8:28 PM
Hier eine Studie dazu das Cannabis sogar die PFAS belastung von Böden senken kann

pubs.rsc.org/en/content/a...
A comprehensive trial on PFAS remediation: hemp phytoextraction and PFAS degradation in harvested plants - Environmental Science: Advances (RSC Publishing) DOI:10.1039/D3VA00340J
pubs.rsc.org
January 31, 2026 at 5:50 PM
#Cannabis kann dazu eingesetzt werden #PFAS kontaminierte Böden zu reinigen
A comprehensive trial on PFAS remediation: hemp phytoextraction and PFAS degradation in harvested plants - Environmental Science: Advances (RSC Publishing) DOI:10.1039/D3VA00340J
pubs.rsc.org
November 22, 2024 at 12:06 PM
It’d also have been interesting to invest in work on furthering techniques to extract minerals (incl. rare metals) from tailings using bacteria, fungi, lichen, or plants, perhaps assisted by chelating agents or similar.

Phytoextraction/phytoremediation if you want a fancy label for it.
April 28, 2026 at 8:26 PM
It is a crazy simple wicking set up - a 'solar still'.
Have a look at figures 2 and 3.
Though it hasn't yet been anywhere near a field: all experiments were done in containers (see link in next post).

pubs.acs.org/doi/10.1021/...
A Water-Efficient Artificial Phytoextraction Technology for the Remediation of Cesium-Contaminated Soil Inspired by Plant Transpiration and the Hydrologic Cycle
Cesium ions (Cs+) are notable radioactive contaminants hazardous to humans and the environment. Among various remediation methods, adsorption is a practical way to remove Cs+ from water, and Prussian ...
pubs.acs.org
September 28, 2025 at 9:35 PM
Mathieu Pédrot du labo Géosciences Rennes est lauréat ANR pour son projet REMAPE qui porte sur l'assainissement des sols contaminés par des métaux avec une méthodologie pour faire progresser la phytoextraction. Partenariat avec ECOBIO
@rennesuniv.bsky.social
oseren.univ-rennes.fr/actualites/a...
July 9, 2025 at 9:38 AM
Establishment of an in vitro culture and regeneration protocol for the native Chilean grass Polypogon australis Brong
Native plant species that colonize metal-enriched soils, including abandoned mine tailings, often display specialized physiological and biochemical adaptations that enable survival under high concentrations of potentially toxic elements1,2. These facultative metallophytes hold considerable promise for phytotechnologies such as phytostabilization, phytoextraction, and phytomining, owing to their ability to accumulate, tolerate, or immobilize metals in a cost-effective and environmentally sustainable manner3. In addition to their applied relevance, these species serve as informative models for studying metal homeostasis and stress tolerance under extreme environmental conditions. The development of efficient and reproducible in vitro propagation systems is fundamental for advancing both basic and applied research in metallophytes. Tissue culture methodologies enable large-scale clonal propagation, provide homogeneous plant material for physiological and biochemical studies, and serve as platforms for downstream molecular and functional analyses4. However, many native grasses exhibit strong recalcitrance to in vitro culture, making the establishment of regeneration systems particularly challenging5,6. Despite these limitations, recent advances demonstrate that somatic embryogenesis can be achieved in several non-model Poaceae species when explant selection, auxin balance, and micronutrient availability are optimized. For instance, Cenchrus ciliaris now possesses robust embryogenic callus and regeneration systems derived from juvenile tissues7, while Chloris gayana has recently been regenerated and transformed...
www.nature.com
September 4, 2026 at 7:59 PM
#UltramaficEcology2025 #OpenAccess

Enhanced Nickel Uptake in Mixed Plant Communities of Hyperaccumulator and Non-Hyperaccumulator Species Under Nickel Stress

Panayiotis G. Dimitrakopoulos @pdimi2.bsky.social et al
▶️ doi.org/10.1111/1440...
August 2, 2026 at 7:31 AM
Mechanistic insights into enhanced rare earth element phytoextraction by Dicranopteris pedata in leached soils: Integrating rhizosphere DGT-LA-ICP-MS imaging and metabolomic profiling #SciTotEnviron #MassSpec www.sciencedirect.com/science/arti...
Mechanistic insights into enhanced rare earth element phytoextraction by Dicranopteris pedata in leached soils: Integrating rhizosphere DGT-LA-ICP-MS imaging and metabolomic profiling
Phytoextraction shows promise for decontaminating and recovering rare earth elements (REEs) from REEs tailings. In this study, soils from a leached (L…
www.sciencedirect.com
October 4, 2025 at 9:04 AM
CAS
Theoretical phytoextraction rates evaluating the application potential of two Cd accumulators from Crassulaceae for cleaning Cd-contaminated farmland.
Details: https://maxapress.com/article/doi/10.48130/cas-0024-0018
August 19, 2025 at 9:02 PM
#CAS

Theoretical phytoextraction rates #evaluating the application potential of two #Cd #accumulators from #Crassulaceae for cleaning Cd-contaminated #farmland.

Details: maxapress.com/article/doi/...
January 16, 2025 at 10:38 AM
## Hyper-Specific Sub-Field Selection: Gold Accumulation Dynamics in *Salix alba* Root Exudates Under Salinity Stress Optimization using Bayesian Optimization of Reactive Transport Simulations

**Abstract:** This research investigates the enhanced gold phytoextraction potential of *Salix alba*…
## Hyper-Specific Sub-Field Selection: Gold Accumulation Dynamics in *Salix alba* Root Exudates Under Salinity Stress Optimization using Bayesian Optimization of Reactive Transport Simulations
**Abstract:** This research investigates the enhanced gold phytoextraction potential of *Salix alba* (white willow) by manipulating root exudate composition under elevated salinity conditions, utilizing Bayesian optimization to calibrate and refine reactive transport simulations. Current phytoextraction methods often suffer from low gold recovery rates and sensitivity to environmental fluctuations. This study proposes a novel approach to optimize gold accumulation in root exudates, a largely unexplored pathway for increasing gold bioavailability and subsequent plant uptake.
freederia.com
January 16, 2026 at 11:34 PM
September 28, 2025 at 9:35 PM
🌱Location-specific hyperaccumulator plants for rare earth elements that require no deliberate planting, or intensive management can maximize phytoextraction, while converting enriched biomass into products improves commercial viability.

👉Read here: www.nature.com/articles/s43...
Phytomining of rare earth elements from soils using plants - Communications Earth & Environment
Location-specific hyperaccumulator plants for rare earth elements that require no deliberate planting, or intensive management can maximize phytoextraction, while converting enriched biomass into prod...
www.nature.com
May 13, 2026 at 4:31 PM
ICYMI: The Ability of Brassica Napus L. To Remove Lead (Pb) from the Soil at different Irrigation Levels and Pb Concentrations
The Ability of Brassica Napus L. To Remove Lead (Pb) from the Soil at different Irrigation Levels and Pb Concentrations
Limited numbers of studies have been performed to date on the removal of heavy metals from the soil through phytoextraction. The number of plants species used in such studies is also restricted. One of the plants used for phytoremediation i...
eurekamag.com
March 25, 2026 at 7:21 AM
The Ability of Brassica Napus L. To Remove Lead (Pb) from the Soil at different Irrigation Levels and Pb Concentrations
The Ability of Brassica Napus L. To Remove Lead (Pb) from the Soil at different Irrigation Levels and Pb Concentrations
Limited numbers of studies have been performed to date on the removal of heavy metals from the soil through phytoextraction. The number of plants species used in such studies is also restricted. One of the plants used for phytoremediation i...
eurekamag.com
March 24, 2026 at 7:20 AM
Sunflowers are excellent hyperaccumulators, and they have an excellent tolerance to heavy metals and radioactive isotopes. Sunflower biomass is located in the leaves and stems, and their excellent phytoextraction is due to their rapid growth.
March 1, 2025 at 12:38 AM
Phytoextraction specifically removes heavy metals and organic pollutants from the soil by accumulating them in the biomass of plants, and sunflowers are capable of Phytoextraction.
March 1, 2025 at 12:38 AM
Phytoextraction, phytodegradation, rhizofiltration, phytostabilization and phytovolatilization, are various forms of phytoremediation.
March 1, 2025 at 12:37 AM
Sunflowers were used in experiments at Chernobyl, Ukraine, and at Fukushima, Japan. Researchers tested the phytoextraction of sunflowers by planting them in irradiated areas.
March 1, 2025 at 12:35 AM