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Journal Article

A Low-Cost Carbon Dioxide Monitoring System for Coastal and Estuarine Sensor Networks

Philip Bresnahan; Elizabeth Farquhar; Daniel Portelli; Michael Tydings; Taylor Wirth; Todd Martz
Oceanography · 2023

Abstract

As the interest in marine or ocean-based carbon dioxide removal (mCDR) increases, so does the need for more spatially resolved measurement, reporting, and verification (MRV) of the CO2 sequestered (and for understanding the impacts of these environmental manipulation experiments). The mCDR/MRV community can borrow technology from the past decade’s exponential growth of interest in ocean acidification and monitoring. However, available sensors are insufficient to meet the growing demand for spatially resolved mCDR due to technological complexities, availability, and cost. For instance, in a recent review, there were few commercially available autonomous solutions for pH and pCO2 monitoring and none for total alkalinity or total dissolved inorganic carbon), and the majority of the pH and pCO2 sensors and analyzers cost well above $10,000. Proper MRV of mCDR requires high spatiotemporal resolution monitoring of the inorganic carbon system. Here we describe our efforts toward a low-cost CO2 flux or ∆pCO2 (the difference between air and water partial pressure of CO2) monitoring system intended for use in distributed sensor arrays in coastal, estuarine, and blue carbon research and in mCDR approaches.

Bibliographic Information

JournalOceanography
PublisherThe Oceanography Society
Publication Date2023-01-01
Publication Year2023
Document TypeJournal Article
Print ISSN1042-8275
eISSN2377-617X
DOI10.5670/oceanog.2023.s1.4
SubjectOceanography; marine science; synthesis; observing systems; ocean policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://tos.org/oceanography/
Publisher PageOpen Publisher Page
This article is openly available from the publisher.