Impact ID |
|
|
|
|
Impact Description
|
|
3433
|
Myriophyllum aquaticum
|
Water Quality
|
Anecdotal
|
N/A
|
Parrot Feather can form dense vegetation that can hinder water circulation (and displace native...
|
33980
|
3448
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Field
|
"Because of their rapid growth, they can form dense canopies which occupy a large amount of space...
|
32943
|
3454
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Field
|
"Quadrats where native plant species were dominant were similar to or had higher DO than areas with...
|
33983
|
7099
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Laboratory
|
Floating mats of Myriophyllum aquaticum have been measured at up to 26 kg of fresh weight...
|
32679
|
7100
|
Myriophyllum aquaticum
|
Water Quality
|
Observational
|
Field
|
In Germany, the infestation of Myriophyllum aquaticum mats created anoxic, shaded...
|
32654
|
7101
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Field
|
Myriophyllum aquaticum can alter the cycling of heavy metals in aquatic systems....
|
32110
|
7118
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum could be used for nitrogen and phosphorus remediation (e.g., in a...
|
32700
|
7119
|
Myriophyllum aquaticum
|
Water Quality
|
Anecdotal
|
N/A
|
Parrot feather could also be used for environmental remediation of soil and water contaminated with...
|
32694
|
7120
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum can contribute to the phyto-removal of trinitrotoluene from water.
|
32689
|
9581
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Laboratory
|
By altering sediment chemical properties, Myriophyllum aquaticum can alter nitrifying and...
|
42944
|
9582
|
Myriophyllum aquaticum
|
Water Quality
|
Experimental
|
Laboratory
|
Myriophyllum aquaticum highly effective in eliminating phosphorus from swine wastewater.
|
42989
|