Typha latifolia

Common Names: cattail, common cattail, broadleaf cattail

Ethnobotanical Studies

Studies

Metal accumulation in cattails cultured in soils flooded with artificial wastewater of varying pH and different levels of metals (Cr, Cd and Zn).

Gonnuri B and Guo L (2024).
Int J Phytoremediation.
PubMed:
39120440

Phytoremediation of metals in oil sands process affected water by native wetland species.

Zhao Y et al (2024).
Ecotoxicol Environ Saf.
PubMed:
39018733

Effect of monocultures and polycultures of Typha latifolia and Heliconia psittacorum on the treatment of river waters contaminated with landfill leachate/domestic wastewater in partially saturated vertical constructed wetlands.

Hernández-Castelán DA et al (2024).
Int J Phytoremediation.
PubMed:
38992938

Plastic and terrestrial organic matter degradation by the humic lake microbiome continues throughout the seasons.

Vesamäki JS et al (2024).
Environ Microbiol Rep.
PubMed:
38852938

Analysis of Ammonia-Nitrogen Removal Kinetics by Stage in Pilot Scale Vertical Flow Wetlands Treating Landfill Leachate in Series.

Lott DJ, Laux SJ and Townsend TG (2024).
Chemosphere.
PubMed:
38782135

Endophytic species of Nigrospora from grasses and shrubs of Shadegan International Wetland, with new species and records from Iran.

Safi A, Mehrabi-Koushki M and Arzanlou M (2024).
Antonie Van Leeuwenhoek.
PubMed:
38717550

Phytoremediation potential of Pistia stratiotes, Eichhornia crassipes, and Typha latifolia for chromium with stimulation of secondary metabolites.

Rizvi ZF et al (2024).
Heliyon.
PubMed:
38601583

Performance of vertical flow constructed wetland for the treatment of effluent from a brassware industry in city of Fez, Morocco: a laboratory scale study.

Zoufri I et al (2024).
Int J Phytoremediation.
PubMed:
38591171

Evaluation of electrode separators and the external resistance in electrochemically assisted constructed wetlands.

Salinas-Juárez MG et al (2024).
Int J Phytoremediation.
PubMed:
38563437

Field-based measurement tools to distinguish clonal Typha taxa and estimate biomass: a resource for conservation and restoration.

Ohsowski BM et al (2024).
Front Plant Sci.
PubMed:
38533400

Expression of Concern: Efficacy of Lemna minor and Typha latifolia for the treatment of textile industry wastewater in a constructed wetland under citric acid amendment: A lab scale study. (Chemosphere, Volume 283, November 2021, 131107).

(2024).
Chemosphere.
PubMed:
38528423

Expression of Concern: Accumulation potential and tolerance response of Typha latifolia L. under citric acid assisted phytoextraction of lead and mercury (Chemosphere, Vol. 257, October 2020, 127247).

(2024).
Chemosphere.
PubMed:
38528410

Chemical analysis of wetland plants to evaluate the bioaccumulation and metabolism of hexachlorocyclohexane (HCH).

Vrchovecká S et al (2024).
Sci Total Environ.
PubMed:
38387594

Analysis of Petrogenic Hydrocarbons in Plant Tissues: A Simple GC-MS-Based Protocol to Distinguish Biogenic Hydrocarbons from Diesel-Derived Compounds.

Collina E et al (2024).
Plants (Basel).
PubMed:
38276755

Determination of the Toxic Effects of Heavy Metals on the Morpho-Anatomical Responses of the Leaf of Typha latifolia as a Biomonitoring Tool.

Mamine N et al (2024).
Plants (Basel).
PubMed:
38256730

Comparative flooding tolerance of Typha latifolia and Phalaris arundinacea in wetland restoration: Insights from photosynthetic CO(2) response curves, photobiology and biomass allocation.

Jensen AB, Eller F and Sorrell BK (2023).
Heliyon.
PubMed:
38187246

Phytoremediation of an integrated poultry and aquaculture wastewater using sub-surface constructed wetland planted with Phragmites karka and Typha latifolia.

Akadiri SA et al (2023).
Int J Phytoremediation.
PubMed:
38140944

Performance evaluation and microbial profiling of integrated vertical flow constructed wetland (IVFCW) for simultaneous treatment of domestic and pulp and paper industry waste water.

Rasool T et al (2023).
Saudi J Biol Sci.
PubMed:
38020226

Establishing peat-forming plant communities: A comparison of wetland reclamation methods in Alberta's oil sands region.

Borkenhagen A et al (2023).
Ecol Appl.
PubMed:
37942503

Sediment-connected Potentially Toxic Element Contamination and Phytoremediation Potential of Native Aquatic Macrophytes along the Jajrood River, Tehran Province, Iran.

Dinaki FK et al (2023).
Bull Environ Contam Toxicol.
PubMed:
37904030

Distribution and migration of heavy metals in the sediment-plant system: Case study of a large-scale constructed wetland for sewage treatment.

Xiong R et al (2023).
J Environ Manage.
PubMed:
37890291

Melatonin treatment maintains the quality and delays senescence of postharvest cattails (Typha latifolia L.) during cold storage.

Fan A et al (2023).
Food Chem X.
PubMed:
37780310

Lanthanum nanoparticle (La(2)O(3))-loaded adsorbents for removal of hexavalent chromium: a kinetics, isotherm, and thermodynamic study.

Singh A et al (2023).
Environ Sci Pollut Res Int.
PubMed:
37715036

Maize pollen diet enhances malaria mosquito longevity and infectivity to Plasmodium parasites in Ethiopia.

Ayele S et al (2023).
Sci Rep.
PubMed:
37660195

Influence of exposure time, physicochemical properties, and plant transpiration on the uptake dynamics and translocation of pharmaceutical and personal care products in the aquatic macrophyte Typha latifolia.

Pérez DJ, Lombardero LR and Doucette WJ (2023).
Sci Total Environ.
PubMed:
37364828

The unexpected long period of elevated CH(4) emissions from an inundated fen meadow ended only with the occurrence of cattail (Typha latifolia).

Antonijević D et al (2023).
Glob Chang Biol.
PubMed:
37029755

Assessment of native plants for their potential to remove trace metals around Legadembi tailings dam, Southern Ethiopia.

Mengistu GT et al (2023).
Environ Sci Pollut Res Int.
PubMed:
36897449

Behavior of Per- and polyfluoroalkyl substances (PFAS) in Pilot-Scale vertical flow constructed wetlands treating landfill leachate.

Lott DJ et al (2023).
Waste Manag.
PubMed:
36893712

Phytomitigation potential and adaptive responses of helophyte Typha latifolia L. to copper smelter-influenced heavily multi-metal contamination.

Shiryaev G et al (2023).
Environ Sci Pollut Res Int.
PubMed:
36862298

Characterization of Endophytic Bacteria Isolated from Typha latifolia and Their Effect in Plants Exposed to Either Pb or Cd.

Rubio-Santiago J et al (2023).
Plants (Basel).
PubMed:
36771585

Phytoremediation capability of Typha latifolia L. to uptake sediment toxic elements in the largest coastal wetland of the Persian Gulf.

Haghnazar H et al (2023).
Mar Pollut Bull.
PubMed:
36764150

Ecological health risk assessment of microplastics and heavy metals in sediments, water, hydrophytes (Alternanthera philoxeroides, Typha latifolia, and Ipomoea carnea), and fish (Labeo rohita) in Marala wetlands in Sialkot, Pakistan.

Arshad K et al (2023).
Environ Sci Pollut Res Int.
PubMed:
36630039

Combining phytoremediation with bioenergy production: developing a multi-criteria decision matrix for plant species selection.

Amabogha ON et al (2023).
Environ Sci Pollut Res Int.
PubMed:
36622584

Vegetated urban streams have sufficient purification ability but high internal nutrient loadings: Microbial communities and nutrient release dynamics.

Kumwimba MN et al (2023).
Sci Total Environ.
PubMed:
36535486

Pesticide sorption and mitigation efficiency of a detention pond in a Champagne vineyard catchment.

Marin B et al (2022).
Heliyon.
PubMed:
36406734

Assessment of heavy metal accumulation potential of aquatic plants for bioindication and bioremediation of aquatic environment.

Petrov DS et al (2022).
Environ Monit Assess.
PubMed:
36400901

Resistance evaluation of Canna indica, Cyperus papyrus, Iris sibirica, and Typha latifolia to phytotoxic characteristics of diluted tequila vinasses in wetland microcosms.

Tejeda A, Valencia-Botín AJ and Zurita F (2022).
Int J Phytoremediation.
PubMed:
36382673

Utility of constructed wetlands for treatment of hospital effluent and antibiotic resistant bacteria in resource limited settings: A case study in Ujjain, India.

Parashar V et al (2022).
Water Environ Res.
PubMed:
36073662

Evidence of hybrid breakdown among invasive hybrid cattails (Typha × glauca).

Bhargav VV, Freeland JR and Dorken ME (2022).
Heredity (Edinb).
PubMed:
35933492

Copper hydrophytoremediation by wetland macrophytes in semi-hydroponic and hydroponic mesocosms.

Rimal S et al (2023).
Int J Phytoremediation.
PubMed:
35917556

Enhanced Cd-Accumulation in Typha latifolia by Interaction with Pseudomonas rhodesiae GRC140 under Axenic Hydroponic Conditions.

Rolón-Cárdenas GA et al (2022).
Plants (Basel).
PubMed:
35684220

Phytoremediation of heavy metals and total petroleum hydrocarbon and nutrients enhancement of Typha latifolia in petroleum secondary effluent for biomass growth.

Ahmad A et al (2022).
Environ Sci Pollut Res Int.
PubMed:
34431049

Internalisation of Salmonella spp. by Typha latifolia and Cyperus papyrus in vitro and implications for pathogen removal in Constructed Wetlands.

Alufasi R et al (2022).
Environ Technol.
PubMed:
32795219

Accumulation potential and tolerance response of Typha latifolia L. under citric acid assisted phytoextraction of lead and mercury.

Amir W et al (2020).
Chemosphere.
PubMed:
32534296

Typha latifolia and Thelypteris palustris behavior in a pilot system for the refinement of livestock wastewaters: A case of study.

Stroppa N et al (2020).
Chemosphere.
PubMed:
31563105

Comparative analysis of element concentrations and translocation in three wetland congener plants: Typha domingensis, Typha latifolia and Typha angustifolia.

Bonanno G and Cirelli GL (2017).
Ecotoxicol Environ Saf.
PubMed:
28525817

Long-term competitive displacement of Typha latifolia by Typha angustifolia in a eutrophic lake.

Weiner SE et al (1993).
Oecologia.
PubMed:
28313685

Typha latifolia as potential phytoremediator of 2,4-dichlorophenol: Analysis of tolerance, uptake and possible transformation processes.

Rodriguez-Hernandez MC et al (2017).
Chemosphere.
PubMed:
28110008

High Pb concentration stress on Typha latifolia growth and Pb removal in microcosm wetlands.

Han J et al (2015).
Water Sci Technol.
PubMed:
26038940