Impact ID |
Scientific Name
|
Impact Type
|
Study Type
|
Study Location
|
Impact Description
|
Geographic Location
|
Reference
|
7118
|
Myriophyllum aquaticum
|
Water Quality Benefit
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum could be used for nitrogen and phosphorus remediation (e.g., in a constructed wetland remediating nutrient runoff). However, other invasive macrophytes (Eichhornia crassipes and Pistia stratiotes) had equal or greater uptake efficiency levels relative to M. aquaticum.
|
|
32700
|
7119
|
Myriophyllum aquaticum
|
Water Quality Benefit
|
Anecdotal
|
N/A
|
Parrot feather could also be used for environmental remediation of soil and water contaminated with chlorinated solvents, trinitrotoluene (TNT), and other nitrogenated explosive/aromatic compounds.
|
|
32694
|
7120
|
Myriophyllum aquaticum
|
Water Quality Benefit
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum can contribute to the phyto-removal of trinitrotoluene from water.
|
|
32689
|
9581
|
Myriophyllum aquaticum
|
Water Quality Benefit
|
Experimental
|
Laboratory
|
By altering sediment chemical properties, Myriophyllum aquaticum can alter nitrifying and denitrifying bacteria communities
|
Jinjing Catchment, Changsha, Hunan Province, China
|
42944
|
9582
|
Myriophyllum aquaticum
|
Water Quality Benefit
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum highly effective in eliminating phosphorus from swine wastewater.
|
Changsha Research Station for Agricultural & Environmental Monitoring,Changsha, Hunan Province, China
|
42989
|