Skip to main content
U.S. flag

An official website of the United States government

Factors Affecting Water Quality

As the States implement practices to reduce nutrient and sediment to improve water quality, they want to understand the success of their efforts. The USGS conducts studies on the relation among land change, management practices, and changes in nutrients and sediment. The findings are used to help assess progress toward the Chesapeake Bay Program (CBP) water-quality goal and make needed adjustments

Filter Total Items: 77

USGS leads STAC report on water clarity changes over the past 30 years in Chesapeake Bay

Water clarity is widely recognized as an important indicator of the health and trophic state of aquatic ecosystems and is a key management target given the limit it imposes on the growth of submerged aquatic vegetation (SAV).
USGS leads STAC report on water clarity changes over the past 30 years in Chesapeake Bay

USGS leads STAC report on water clarity changes over the past 30 years in Chesapeake Bay

Water clarity is widely recognized as an important indicator of the health and trophic state of aquatic ecosystems and is a key management target given the limit it imposes on the growth of submerged aquatic vegetation (SAV).
Learn More

Targeted management of a small number of catchments may help reduce nitrogen loading to Chesapeake Bay

Largest projected reductions associated with decreasing agricultural fertilizer application
Targeted management of a small number of catchments may help reduce nitrogen loading to Chesapeake Bay

Targeted management of a small number of catchments may help reduce nitrogen loading to Chesapeake Bay

Largest projected reductions associated with decreasing agricultural fertilizer application
Learn More

New Insights on using Green Stormwater Infrastructure to Reduce Suburban Runoff

The Issue with Runoff Across the United States, suburban development is replacing agricultural and forested lands. In urban and suburban areas, large amounts of stormwater runoff are generated from rooftops and roadways during rain events. Runoff is quickly piped to streams and rivers, leading to flash flooding, stream bank erosion, and damages to stream health. Reducing nutrients, sediment, and...
New Insights on using Green Stormwater Infrastructure to Reduce Suburban Runoff

New Insights on using Green Stormwater Infrastructure to Reduce Suburban Runoff

The Issue with Runoff Across the United States, suburban development is replacing agricultural and forested lands. In urban and suburban areas, large amounts of stormwater runoff are generated from rooftops and roadways during rain events. Runoff is quickly piped to streams and rivers, leading to flash flooding, stream bank erosion, and damages to stream health. Reducing nutrients, sediment, and...
Learn More

Improving Our Understanding and Helping with Water Quality Improvements

Understanding trends in stream chemistry is critical to watershed management and often complicated by multiple contaminant sources and landscape conditions changing over varying time scales.
Improving Our Understanding and Helping with Water Quality Improvements

Improving Our Understanding and Helping with Water Quality Improvements

Understanding trends in stream chemistry is critical to watershed management and often complicated by multiple contaminant sources and landscape conditions changing over varying time scales.
Learn More
“Who Done it”? Environmental DNA (eDNA) for Determining Fecal Contamination Source

“Who Done it”? Environmental DNA (eDNA) for Determining Fecal Contamination Source

By Kay Briggs and Vivian Nolan
Learn More
USGS science informs revised water-quality restoration plans for the Chesapeake Bay and its watershed

USGS science informs revised water-quality restoration plans for the Chesapeake Bay and its watershed

Science Summary
Learn More

Conowingo Dam

Chesapeake Bay Program video on the Conowingo Dam
Conowingo Dam

Conowingo Dam

Chesapeake Bay Program video on the Conowingo Dam
Learn More

USGS and Partner Efforts to Monitor High River Flow During Summer, 2018 and Potential Effects of Hurricane Florence on the Chesapeake Bay Watershed

Prepared by Scott Phillips and Peter Tango, USGS and Chesapeake Scientific, Technical Analysis, and Reporting (STAR) team, September 12, 2018
USGS and Partner Efforts to Monitor High River Flow During Summer, 2018 and Potential Effects of Hurricane Florence on the Chesapeake Bay Watershed

USGS and Partner Efforts to Monitor High River Flow During Summer, 2018 and Potential Effects of Hurricane Florence on the Chesapeake Bay Watershed

Prepared by Scott Phillips and Peter Tango, USGS and Chesapeake Scientific, Technical Analysis, and Reporting (STAR) team, September 12, 2018
Learn More

Videos Highlighting USGS Chesapeake Bay Activities

A list of Chesapeake Bay Program videos highlighting USGS Chesapeake Bay Activities.
Videos Highlighting USGS Chesapeake Bay Activities

Videos Highlighting USGS Chesapeake Bay Activities

A list of Chesapeake Bay Program videos highlighting USGS Chesapeake Bay Activities.
Learn More

The Role of Storms on Bank Erosion Rates and Sediment Transport in Urban Areas

Sediment is a major pollutant degrading aquatic ecosystems in the Chesapeake Bay watershed. The USGS is conducting studies to determine the relative importance of streambank erosion to other sediment sources, such as upland erosion, in both agricultural and urban areas. The information is necessary so resource managers can focus on the types, and locations, of practices that will be most effective...
The Role of Storms on Bank Erosion Rates and Sediment Transport in Urban Areas

The Role of Storms on Bank Erosion Rates and Sediment Transport in Urban Areas

Sediment is a major pollutant degrading aquatic ecosystems in the Chesapeake Bay watershed. The USGS is conducting studies to determine the relative importance of streambank erosion to other sediment sources, such as upland erosion, in both agricultural and urban areas. The information is necessary so resource managers can focus on the types, and locations, of practices that will be most effective...
Learn More

Conowingo Dam Above 90 Percent Capacity For Sediment Storage

The Conowingo Dam on the Susquehanna River is at about 92 percent capacity for sediment storage according to new U.S. Geological Survey research.
Conowingo Dam Above 90 Percent Capacity For Sediment Storage

Conowingo Dam Above 90 Percent Capacity For Sediment Storage

The Conowingo Dam on the Susquehanna River is at about 92 percent capacity for sediment storage according to new U.S. Geological Survey research.
Learn More

Chesapeake Bay ‘dead zone’ to vary from average to slightly smaller

Hypoxic zone size affected by low river flow and nutrient loading Scientists expect that this year’s mid-summer Chesapeake Bay hypoxic low-oxygen zone or “dead zone” – an area of low to no oxygen that can kill fish and aquatic life – will be approximately 1.58 cubic miles, about the volume of 2.3 million Olympic-size swimming pools. This is close to the long-term average as measured since 1950.
Chesapeake Bay ‘dead zone’ to vary from average to slightly smaller

Chesapeake Bay ‘dead zone’ to vary from average to slightly smaller

Hypoxic zone size affected by low river flow and nutrient loading Scientists expect that this year’s mid-summer Chesapeake Bay hypoxic low-oxygen zone or “dead zone” – an area of low to no oxygen that can kill fish and aquatic life – will be approximately 1.58 cubic miles, about the volume of 2.3 million Olympic-size swimming pools. This is close to the long-term average as measured since 1950.
Learn More
Was this page helpful?