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Office of Undergraduate Research Home » 2022 Undergraduate Research Symposium Schedules

Found 1 project

Virtual Lightning Talk Presentation 1

9:30 AM to 11:00 AM
Plankton Predence and Gradients along the Merge between Estuary and River Water
Presenter
  • Casandra Jade (Cassie) Laney, Sophomore, Marine Biology, Chemistry, Biology, Everett Community College
Mentors
  • Ardi Kveven, Ocean Research College Academy, Everett Community College
  • Josh Searle, Ocean Research College Academy, Everett Community College
  • Marina McLeod, Mathematics, Ocean Research College Academy, Ocean Research College Academy
  • Jennifer Olson, Ocean Research College Academy, Everett Community College
Session
    Session L-1A: Oceanography and Marine Biology
  • 9:30 AM to 11:00 AM

  • Other Chemistry major students (2)
  • Other Biology major students (5)
  • Other Ocean Research College Academy mentored projects (13)
  • Other students mentored by Ardi (Kole) Kveven (12)
  • Other students mentored by Josh Searle (12)
  • Other students mentored by Marina McLeod (12)
  • Other students mentored by Jennifer Olson (4)
Plankton Predence and Gradients along the Merge between Estuary and River Waterclose

Possession Sound, located in Everett, Washington, includes the second largest source of freshwater in Puget Sound from the Snohomish River. This salt-wedge estuary serves as a home to a wide selection of phytoplankton, which provide energy to a variety of organisms farther up the food chain. Water chemistry often determines where phytoplankton accumulate prior to their recycling as nutrients. Ocean Research College Academy students utilize water chemistry data (temperature, salinity, dissolved oxygen, pH, turbidity and chlorophyll concentration) from two sensors deployed in Possession Sound: One in the river and one two miles away at Mukilteo. While plankton samples are collected in the Sound, rarely are plankton collected in the river and compared to chlorophyll concentrations. This study will look at abundance and diversity of phytoplankton collected in the river at various tide stages and compare these to Mukilteo samples. I hypothesize that flood tide samples will be similar, while ebb tide phytoplankton and chlorophyll levels will decrease. The preliminary data revealed that chlorophyll and temperature levels did not vary significantly between the two sites despite the widely differing salinity levels. The next steps of the study are to determine the plankton density of phytoplankton species across the two most recent years of data. Results will enable us to explore further into plankton presence in relation to chemical variance in water systems. 


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