Cornell University
Library
Cornell UniversityLibrary

eCommons

Help
Log In(current)
  1. Home
  2. Cornell University Graduate School
  3. Cornell Theses and Dissertations
  4. THE IMPACT OF LIGHT INTENSITY ON THE GROWTH OF ALGAL CELLS AND PROPOSED CONTROL METHODS FOR HARMFUL ALGAL BLOOMS

THE IMPACT OF LIGHT INTENSITY ON THE GROWTH OF ALGAL CELLS AND PROPOSED CONTROL METHODS FOR HARMFUL ALGAL BLOOMS

File(s)
Gaul_cornell_0058O_11753.pdf (1.75 MB)
Permanent Link(s)
https://doi.org/10.7298/6dgn-x980
https://hdl.handle.net/1813/113887
Collections
Cornell Theses and Dissertations
Author
Gaul, Larissa
Abstract

Harmful algal blooms (HABs), or the explosive growth of harmful algae, are increasing in severity and frequency in water bodies worldwide due to human activities and climate change. HABs’ ecological dominance, high biomass, and release of toxins disrupt ecosystems and deplete water resources. HABs are influenced by abiotic and biotic factors, including light, temperature, nutrients, and grazing pressure. Extensive work has revealed the roles of nutrients such as nitrogen and phosphorous in algal growth. However, mechanistic understanding of other physical factors’ impact on algal cells is limited. Here, we developed a platform that provides well-defined physical and chemical conditions to photosynthetic cells, with real-time imaging capabilities at the single-cell level. Our work revealed that algal cells’ growth response to light intensity can be described by the Monod or van Oorschot model. While furthering a mechanistic understanding of algal growth response to light, I have also started investigating applied approaches for controlling HABs. Here, I propose both a hardware and software approach to HABs control: ultrasonic treatment to disrupt and prevent HABs and an application to make HABs management more accessible to communities.

Date Issued
2023-05
Keywords
HABs
•
harmful algae
•
light
•
microfluidics
•
microscope
Committee Chair
Wu, Mingming
Committee Member
Hay, Anthony
Richardson, Ruth
Degree Discipline
Biological and Environmental Engineering
Degree Name
M.S., Biological and Environmental Engineering
Degree Level
Master of Science
Type
dissertation or thesis
Link(s) to Catalog Record
https://newcatalog.library.cornell.edu/catalog/16176467

Site Statistics | Help

About eCommons | Policies | Terms of use | Contact Us

copyright © 2002-2026 Cornell University Library | Privacy | Web Accessibility Assistance